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Engineering Building, Lancaster

Engineering Building, Lancaster

Technal

The award-winning and BREEAM Outstanding Engineering Building at the internationally renowned Lancaster University features a complete range of architectural aluminium glazing systems from Technal. Located on the Lancaster University campus in the North West of England, the new engineering facility was awarded Winner of the RIBA National Award for 2015 and was highly commended by the Royal Institution of Chartered Surveyors in the Design through Innovation category at the 2016 RICS North West Awards. Purpose-built to a world-class standard, the scheme comprises of 4,701 sqm of workshop, laboratory and office space in two concrete framed blocks either side of a dramatic four-storey atrium. Using passive techniques to achieve the environmental performance measure of BREEAM 'outstanding' in the design assessment, which is in-line with Lancaster University's sustainability and carbon reduction targets. With this in mind, aluminium doors and curtain walling were chosen for this project. The Facade is featured throughout the building, and was specified for its contemporary aesthetics. The system also includes concealed vents to allow natural ventilation without compromising the architectural integrity of the facade. With natural light being a key part of the specification, Technal aluminium curtain walling allowed larger and heavier glazing units to be installed thanks to its superior load distribution, permitting more natural light to flow through the building's rooms.
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Hethel Engineering Centre

Hethel Engineering Centre

Bauder Ltd

Hethel Engineering CentreBauder Thermoplan FPO single ply system with Bauder solar PV systemSynopsisHethel Engineering Centre supports high performance engineering companies located throughout Norfolk. The original building at the centre had been operating at maximum capacity and they urgently required a new building to satisfy increasing levels of demand. The client wanted the new facility to meet a high level of sustainability, achieving a BREEAM excellent rating and using key renewable technologies, such as photovoltaics (PV) to minimise its environmental impact.Bauder Building BoardProject:Hethel Engineering CentreLocation:Hethel, NorfolkProject type:New buildRoof size:2,500m²Specifier:NPS GroupApproved contractor:Voland AsphalteThe specificationBauder’s Thermoplan single ply membrane was specified for the new building’s 2,500m2 roof due to its longevity. Roof areas totalling 500m² were fitted with 160 PV Modules, enabling the centre to generate at least 44.23 mWh of solar power each year and annual CO² savings of 23.40 tonnes. The PV system was installed without any penetration of the waterproofing or roof deck, ensuring the integrity of the roof is completely upheld. The simplicity of the installation also meant that approved contractor, Voland Asphalte, could install the entire PV array in just one day.Products appliedBauder solar PV system160 solar photovoltaic modules were installed with an expected energy generation of 44.23 megawatt-hours and a kilowatt peak of 47.20 along with Bauder's Thermoplan single ply membrane.  Project challengesThe centre remained operational throughout the works, which caused logistical challenges, however all deliveries were timed as not to conflict with vehicles moving in and out of the facility. The work at HEC was completed on time and to budget, providing the client with an innovative roof that boasts extraordinary environmental credentials.System installedThermoplan Single Ply System 1 Bauder Thermoplan FPO FPO membrane with laminated fleece for adhered installations; pre-coated cross weave polyester reinforcement for high levels of tear resistance.2 BauderPIR M 60An efficient PIR flatboard insulation with aluminium foil facing on both sides and rebated edges to remove a thermal bridge.3 BauderTEC KSDA technically advanced self-adhesive elastomeric bitumen air and vapour control layer with an aluminium foil facing for vapour impermeability.AdvocacyKarl Manning at NPS Group: “Hethel Engineering Centre is a perfect example of a project where outstanding workmanship and top quality products can harmoniously come together to deliver an exceptional, sustainable roofing solution. The Voland team in collaboration with Bauder provided the highest degree of technical support throughout the project, helping us overcome any issues we encountered promptly and efficiently.”
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Manchester Engineering Campus Development (M.E.C.D)

Manchester Engineering Campus Development (M.E.C.D)

Sika Limited

The Manchester Engineering Campus Development at a cost of around 400 Million GBP, is a seven-year project that will deliver a new home for engineering at The University of Manchester.As one of the largest construction projects undertaken by an institution in the UK, at over 76,000m², including a basement structure in excess of 13,000m² MECD is designed to provide the engineering community with a new campus in the heart of Manchester in 2021
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UWE Engineering Building

UWE Engineering Building

Lusso Systems Ltd

The new Engineering Building for The University of the West of England (UWE) is located at the main Frenchay Campus. Designed by multi award-winning architects, AHR, the iconic building will enable the university to deliver its vision for 21st Century engineering and inspire engineers of the future. It has been designed and operated to BIM Level two and aims to achieve a BREEAM Excellent rating. The building will accommodate up to 1,600 students as well as 100 academic and technical staff. The design brief was to create a space which would encourage multi-disciplinary collaborative learning. The outcome is an ideal environment for students to explore, create, and test ideas to change the world for the better.A large central atrium provides a generous space across multiple stepping floor plates which leads to social learning spaces, manufacturing workshops, wind tunnels, laboratories, computer rooms, and computer-aided design (CAD) suites. At the heart of the building there is also a hub for group study which will encourage students and academics to meet and exchange ideas.Lusso atria glazing was installed within the space to allow natural light into the core of the building and visual connection between different areas .  A combination of Lusso 105 framed glazed partitioning and Lusso 25 frameless glazed partitioning has been used for different specification requirements within the space and combine well with the wood and black coated steel beams to achieve an industrial look. 
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Mechanical Engineering R&D

Mechanical Engineering R&D

Catax (Innovation Funding)

This company developed an aircraft engine cleaning machine.
Sponsored
SS400 Installation below Engineered Wood Flooring    (Soundsure 400 | 20mm Engineered Wood Flooring)

SS400 Installation below Engineered Wood Flooring (Soundsure 400 | 20mm Engineered Wood Flooring)

Interfloor Ltd

High performing acoustic underlay was selectedfor use below a 20mm engineered wood flooras part of a flooring refurbishment project in aprivate home. The SS400 was loose laid to the subfloor with the 20mmengineered wood flooring floated above. The tongue andgroove joints were bonded with PVA adhesive.Other points to include:• SS400 manufactured using recycled rubber crumb, so extremely environmentally friendly.• Durable - provides long lasting performance and will not deteriorate or collapse over time.• SS400 is a high performing acoustic underlay, ideally suited for use with wood flooring and laminates, providing excellent impact performance in excess of the UK buildingregulations.• Hygienic – naturally antimicrobial, anti-allergy and resistant to decay with low VOCs.Benefits of Soundsure 400• Exceeds the performance standards required in the UK Building Regulations for sound insulation• Suitable for use with underfloor heating systems• Manufactured using recycled materials and fully recyclable• Recycled rubber crumb ensures long-lasting acoustic performance• Cushioned underlay to provide underfoot comfort• Rubber crumb provides superb stability, performance and durability• Will not deteriorate or collapse over time.• Reduces subfloor preparation times as screed or smoothing compounds are not required• Green Label Plus accredited
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NBS Chorus for Building Services Engineering

NBS Chorus for Building Services Engineering

NBS

Hydrock is an award-winning, multidisciplinary engineering design consultancy working with clients across the UK. With 16 offices and over 500 staff, their work covers various sectors, including acoustics, nuclear, fire, civil + structural and building performance engineering. Director of Building Performance Engineering, Anuran Wickramasinghe, caught up with us to tell us more about the work Hydrock does for its clients and why the business uses NBS Chorus on its projects.WORKING COLLABORATIVELYAs a multidisciplinary consultancy, Hydrock work on a wide range of exciting projects, from concept to detailed construction drawings to post-occupancy evaluations. Recent projects have included the new facilities for the English National Ballet, UWE's engineering faculty and Bristol’s inland surfing destination, The Wave. According to Anuran, the ability to work on projects in the cloud has been one of the most useful features of NBS Chorus. As a cloud-based specification platform, Chorus allows multiple users to work on a specification remotely and on a range of devices, which has been extremely useful for Hydrock given the distance between their offices - and around 90% of their technical staff are currently working from home. “We’re dispersed all around the country and are working from home so having an online version of the spec is very helpful,” he said. "Having an online platform makes things much easier for us while working from home because now the engineers can access the specification and share information without overloading our servers"IMPROVING CONSISTENCYBefore adopting NBS Chorus, Hydrock used desktop product NBS Create, which is due be retired. Anuran highlighted the consistency and standardisation benefits that NBS Chorus’ stylesheets feature provides as one of the significant benefits the business has seen since making the switch. “One of my main tasks last year was to standardise our specifications and projects, and that is why we decided to use NBS Chorus. NBS's automatic updates to the standards and guidance take away a big slice of our work because we cannot dedicate a team to continually update our standard template. We’re pushing hard on our branding and thanks to the Stylesheets feature; we’ve now got the front page of our documents looking standardised which is great progress.” “Shortly, we want to utilise the Masters' feature and have one standardised template that we can work on to create our specifications and projects.” In terms of helping Hydrock create more robust specifications, Anuran says that the prompts and guidance notes provided within Chorus have helped improve decision-making during the specification process. The ability to start specifying early describing system performance before developing a fuller specification defining products and execution requirements is also of benefit. “The prompts on whether to park or specify something have helped us to progressively develop a robust specification because we can always revisit the specification and make sure that we haven't missed something that could lead to an omission on a project which could be extremely detrimental."SUMMARYIn summary, NBS Chorus is not only helping Hydrock to create more robust and more effective specifications, but it’s also helping to improve collaboration across the business’ different locations and disciplines. "Having up-to-date information and the template there help us to produce the documents much more efficiently. I don’t like the ‘copy and paste’ style of doing things because you could be working on a residential project and accidentally insert a clause from a healthcare project which happened to be the last specification the engineer worked on. The efficiency comes from being able to use the template as a starting point and not having to write a specification completely from scratch," Anuran said. “The collaboration aspect of NBS Chorus is the key because it means that the different disciplines can access and work together on the document at the same time."
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UCLan Engineering Innovation Centre, Lancashire

UCLan Engineering Innovation Centre, Lancashire

Technal

As a key part of the University of Lancaster's Preston Campus, the £32 million Engineering Innovation Centre provided the university and Lancashire based manufacturers with state-of-the-art teaching and research facilities. This helps to train an extra 500 graduates, including an increasing number of female students, gaining degrees in subjects such as mechanical, energy technologies and aerospace engineering. Throughout the entire project, there were a number of technical challenges that needed to be met. These include the building's proximity to a very busy roundabout, the floor to floor heights, physical security, the expected levels of solar gain as well as design detailing requirements. Having a total glazed area of 3,100m2, the aluminium curtain wall carries over 40 different types of IG units, along with high density foam inserts utilised alongside decoupling joints in the mullion section - achieving 50 Dnfw flanking sound reduction, as well as 37 dB sound reduction for noise outside the building. In addition to achieving high levels of thermal insulation, being fabricated from aluminium, the curtain walling frame elements can be recycled, helping to achieve the BREEAM rating of Excellent.
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Quality engineered products for a new engineering department

Quality engineered products for a new engineering department

Selectaglaze Ltd

In 2016 Imperial College London acquired the neighbouring disused Royal Mail Post Sorting Office. Architects Pascall+Watson specified secondary glazing to improve their performance. Over seven different types were installed to match the varying styles; large sweeping curved headed casements were treated with matching sightline Series 41 side hung casements, tall traditional box sash windows were treated with Series 20 and 25 vertical sliding units. Obscurity glass was specified, to prevent distractions for the researchers and staff. The windows overlooking the busy thoroughfares of Exhibition Road and Imperial College Road were fitted with a cavity to provide added acoustic insulation.
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Wright Engineering Mountsorrel Quarry

Wright Engineering Mountsorrel Quarry

Lionweld Kennedy Group

Located in the East Midlands, Mountsorrel Quarry supplies the construction industry with large volumes of essential materials, which are used for construction projects throughout the UK.Due to an industrial fire which left a screen house beyond repair, a complete rebuild was required which included the design, supply and installation of safe, compliant access solutions.RequirementWright Engineering Group required four floors of open mesh flooring, handrail, stanchions and treads to re-build an industrial building at Mountsorrel Quarry that burnt down in November 2022, for the site to be back to full working capacity.SolutionLionweld Kennedy Group designed, manufactured and installed four floors of steel and GRP access solutions to the Mountsorrel site, enabling the building to be rebuilt safely. LK 20mm ball proof Safegrid flooring was required due to the height of the building and permanent access needed under each floor.Customer FeedbackLionweld Kennedy Group were by far the standout choice of all of the suppliers we contacted. From the beginning theservice was second-to-none, all items arrived on their project critical specified delivery dates, and the quality of the products were of a very high standard.Lionweld Kennedy Group remain a preferred supplier within the Wright Engineering Group due to the high quality of products and the excellent customer service always received.Luke Fagan, Construction Manager, Wright Engineering Group
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Engineering the future with Vandersanden bricks

Engineering the future with Vandersanden bricks

Vandersanden Brick

Unrivalled in scale in the UK as a hub of engineering and material science expertise, the new Manchester Engineering Campus Development (MECD) embraces the refurbished, Grade II listed Oddfellows Hall, the MEC Hall and buildings on Upper Brook Street and York Street. Brick played a crucial role in creating the campus and, to find the perfect products to fulfil their aesthetic vision, the architects turned to Vandersanden.The new campus is one of the largest construction projects undertaken by any higher education institution in the UK. It will allow 1,300 staff and 7,000 students to work and study in spaces that enable connection, collaboration and concentration across the faculty.Working with Mecanoo, Penoyre & Prasad and Balfour Beatty Construction, BDP provided detailed design consultation services for the entire MECD project. The collaborative team completed the sensitive renovation and extension of Oddfellows Hall to accommodate a suite of conference rooms, academic workspaces and a restaurant.Originally built in 1857 and rebuilt in 1916, Oddfellows Hall anchors the new MECD to its formative past. Set back on the north side from the listed building, the modern extension presents a neat facade where Vandersanden’s Berit water-struck facing brick, which is white with a light texture, is coupled with areas of glazing and tile. “The approach to the scheme has been to add a twenty-first-century building of its time but in continuity with the existing language, using materials such as brick and glass,” explains Paul Owen, architect associate at BDP.Configured horizontally, the elements wrap around the façade of the extension to create a strong connection to both the north and south facades of the older building. The aesthetic is enhanced further by a combination of narrow brick piers and vertically proportioned windows. A defined brick plinth at ground floor level achieves additional visual interconnection between the old and the new.On the roof, the plant enclosure uses the same Vandersanden Berit brick as the façade, but the structure is set back from the parapet line. A hit and miss pattern allows for ventilation of the mechanical and electrical equipment inside as an elegant alternative to standard ventilation grilles.On Upper Brook Street and York Street, the new buildings are of solid brick that includes feature brick vertical and horizontal elements to articulate the façade and frame the window openings. Again, the brick is from Vandersanden; in this case, the company's Herning water struck brick with a dark brown-purple-blue multi-coloured appearance.“The technical advice the team at Vandersanden gave was incredibly helpful while the bricks offer great visual appeal. In the long term, they will age gracefully in combination with the existing material of Oddfellows Hall, ensuring the new extension sits well in its context,” says Paul Owen.For more information on the development go to https://www.mub.eps.manchester.ac.uk/science-engineering. For details on BDP visit, www.bdp.com and to find out more on Berit, Herning and the wide range of high-quality bricks available from Vandersanden, visit Together we build greatness | Vandersanden
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Istanbul Airport

Istanbul Airport

BEMO Project Engineering UK Ltd

Over 420,000m² N65/500 profile was produced on site in what is, to-date, one of the largest aluminium roofs in the world. PVDF coated aluminium was used, and some areas of the roof incorporated continuous roll-formed tapers. Detailed and designed by the BEMO engineering team, complex thermal movement of aluminium panels had to be accommodated around many rooflights and penetrations
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Tedd Engineering Choose a MezzLight to Give Their Business a Lift

Tedd Engineering Choose a MezzLight to Give Their Business a Lift

Penny Hydraulics Ltd

Engineering firm Tedd Engineering recently expanded into a new unit due to the sustained success of its bespoke advanced control units. Penny Hydraulics were approached to design, manufacture and install a lifting solution to move components between floor level and their mezzanine where many of the products are made. A MezzLight was specified as the ideal solution for Tedd Engineering’s moving and handling problem. With a safe working load of 250kg providing more than enough lifting capacity for the task at hand, its interlocked door system and hold-to-run operation the MezzLight was a safe and efficient solution.
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The Project – New Engineering Building, Manchester.

The Project – New Engineering Building, Manchester.

Bathgate Flooring Ltd

The building features 11,660 m2 of PSA Steel Encapsulated raised floor panels. There are additional areas of BGH which are our Heavy grade panels and BEM Edge Banded panels. These are all manufactured by Bathgate Flooring in our UK manufacturing facility.The project is one of the single largest construction projects undertaken by any higher educational institution in the UK.The completed building will provide an environment for the brightest engineers to innovate and offer real benefits to industry and society. The facilities help to put the University at the forefront of engineering globally.Products UsedThe panels were specified to PSA Standards. The BGM600 Steel Encapsulated panel is medium grade PSA panel which suits most applications. This was used extensively in the installation. In addition there were installations of BEM600 edge banded and Vinyl Bonded panels in appropriate areas.Testimonial“It was a pleasure to work with you and your teams at MECD – a prestigious job that has gone extremely well due to the efforts of your teams in delivering your scope safely.It has been a pleasure working with you and the Bathgate teams. You have always been professional in every way and your site team have always delivered the works safely.”Rajeewa de Fonseka – Project ManagerBalfour Beatty
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Wimbledon No. 1 Court, London

Wimbledon No. 1 Court, London

BEMO Project Engineering UK Ltd

BEMO Flex mass-customised sub-structure with N65/Tapered standing seam panels in PVDF2 RAL6007 and BEMO Deck profile. BEMO provided full engineering support including 3D surveys to eliminate construction tolerances.
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Hygiene Solutions for UK Distribution

Hygiene Solutions for UK Distribution

ASPEN by Canal Engineering Limited

The largest automated warehouse for online groceries in the world and renowned for its high-level distribution required robust drainage systems for their new facility. Aspen worked closely with the architect to design, manufacture and install stainless steel solutions to support the hygienic performance of the entire environment. Aspen provided engineering drawings, samples and prototypes to ensure a seamless manufacturing process and delivery of the project from day one. The kerbing was also specifically fitted and mounted onto the wall of the warehouse to offer maximum protection and to maximise cleaning efficiency of the facility.
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Science, Engineering & Environment Building, Salford

Science, Engineering & Environment Building, Salford

Sotech Ltd

5500m2 of Optima TFC+ has been used in the completion of the brand new Science, Engineering and Environment building on Salford University’s Peel Park campus.As you can see from the photos, a striking colour palette has been used in the modified window interface details. Interpon’s D2525 Ostuni Y2211I, 3030 High Gloss & 7022 High Gloss in 3.0mm Aluminium 3103 Grade PPC were selected.The unique overhang window details were created using the 20mm overlapping joint that is standard in Optima TFC+. A bespoke sharp edge detail was added to window interface locations for dramatic effect, creating a stunning visual contrast between the bright red window pods against the white vertical cladding as per the architect’s original design intent.Sotech assembled a full-size sample rig in the factory for the client, architect, main contractor and installer to view a full scale mock-up of the final proposed solution. This ensured that any design details or install sequences were scrutinised and fully understood before the project began onsite. Sotech then created a full 3D model of the project alongside their long-term partners Metclad Contracts. This allowed both parties to identify and avoid potential issues at the design stage before panels were fabricated and delivered to site.The SEE Building is Salford University’s brand new £65 million hub for discovery and innovation. Consisting of four stories over 15,500 sq meters, the department will house the university’s departments of Built Environment, Computer Science and Networking, Mechanical Engineering and Human & Natural Science, in addition to the university’s Morson Maker Space – an additive manufacturing and digital fabrication facilityTESTIMONIALS:Jamie Brown of Sotech said: “This is yet another example how close collaboration from day one, involving the full supply chain, ensures projects can be delivered on time and on budget. The very clever and intricate window interface details showcases just how versatile rainscreen cladding can be, whilst staying within the boundaries of a fully CWCT tested and accredited system.”Naveen Sandhu at Akzo Nobel said: “Great to see this installation following an increasing trend of injecting vibrant tones into the elevation. One of a plethora of schemes in Salford and Manchester adopting our enhanced D2525 PPC technology across the envelope. Pleasure to work with the team at Sheppard Robson and delivering yet another outstanding higher education facility with Sotech.”
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Cambridge University, Department of Civil Engineering

Cambridge University, Department of Civil Engineering

Bauder Ltd

Cambridge University, Department of Civil EngineeringBauderBLUE STORMcell with BauderSOLAR G LightSynopsisThis new build project in the centre of Cambridge combines a Sustainable urban Drainage Solution (SuDS) with vegetation and renewable energy in a warm roof construction.The client for the Department of Civil Engineering at Cambridge University, R H Partnership, identified sustainability as being a key driver in the design of the roof, but also sought a single source supplier that could provide a guarantee for both workmanship and products. Bauder’s systems range encompasses products to meet all the sustainability objectives, and with our network of approved contractors carrying out the installation, we could offer the comprehensive guarantee that was required.Bauder Building BoardProject:Cambridge University Department of Engineering​Location:CambridgeRoof Area:1610m²Client:University of CambridgeSpecifier:RH Partnership ArchitectsMain Contractor:SDC LimitedApproved Contractor:Voland LimitedThe specificationTo meet the sustainability criteria set out by the client, the Bauder technical team designed a roof system combining an extensive blue roof, a green roof and a solar PV array. The first and most fundamental element of the roof system though is the waterproofing. Bauder Total Green Roof System (BTGRS) was selected as it provides robust and durable waterproofing with a life span in excess of 35 years, as validated by BBA Certificate 10/4744. The Plant E cap sheet has also been tested by the FLL to ensure long term root-resistance, making it ideal for use in conjunction with the BauderSOLAR G LIGHT system. The BauderSOLAR G LIGHT system is a unique way to combine rooftop vegetation with renewable solar energy. The PV panel mounting boards are held in position using the growing medium as ballast, meaning the waterproofing is not penetrated and therefore compromised. The mounting boards incorporate a water retention feature which allows a small amount of excess rainwater to be stored for short periods of time for the various plant species to feed from. The BauderSOLAR G LIGHT system’s unique mounting system lifts the panels above the vegetation allowing the plant life to grow freely and therefore qualify a greater area of the roof as biodiverse.In addition to the BauderSOLAR G LIGHT system, a blue roof was added to the build-up. Blue roofs are sustainable drainage solutions designed to manage stormwater on a flat roof to reduce water runoff rates and ease flash flooding and standing water in built up areas. The BauderBLUE Roof System attenuates water from a flat roof over a 24-hour period via a restrictive flow outlet. Calculations are carried out to determine the rate at which the water should egress the rooftop. This is determined by the local planning authority and is often set as low as 5-8 litres per second per hectare. With these calculations, Bauder can design each flow restrictorto meet the necessary runoff rate. For the Department of Civil Engineering, the main roof area of 1455.5m² required two flow restrictors, each with flow control holes to ensure the specified discharge rate of 0.77 litres per second was achieved. The maximum depth of water the roof is designed for is the H-max. When the water level reaches H-max, it will drain via the emergency overflow pipe. These overflow pipes are set at the same height as the H-max level. On this project the H-max was calculated to be 99mm. Although an unlikely scenario, this provision for a ‘once-in-a-hundred-years’ storm event will ensure that the structural integrity of the building is always preserved.Project challengesThe roof deck was constructed using a pretensioned concrete plank roof structure. Due to the large span of these planks, the dead load weight to the roof would be restricted. This being a blue roof with green landscaping and PV (a reasonably heavy build up), presented the issue of balancing the need of the roof design and the weight restriction of the supporting structure. To add to this challenging scenario, the pretensioned deck did not provide a completely flat finish. When installing a blue roof, a flat deck with no positive or negative falls is essential, as detailed in the 2018 update of BS 6229 – Flat roofs with continuously supported flexible waterproof coverings. To overcome this onsite challenge,the final deflection of the fully loaded roof was calculated and the concrete deck was screeded to give a flat finish.The resultBauder believes this project to be one of the first of its type in the UK to bring together so many rooftop systems in one space. Project management and clear communication was paramount in order to ensure a smooth installation. The Bauder project team consisted of green roof and solar PV product managers, area technical manager, technical design team, site technicians and approved installers for the waterproofing.With all the different elements being installed, green roof and solar PV product managers worked with our technical team to design the best possible PV array configuration for optimum energy generation whilst also qualifying for the maximum biodiverse area.Bauder site technicians worked closely with Bauder approved contractors, Voland Asphalte Ltd, to ensure works were kept to schedule and that a high quality of workmanship was maintained throughout.To ensure the landscaping is maintained, irrigation was installed by Access Irrigation Ltd. The system, Permadrip Pro, is a drip line irrigation system with anti-syphon design to resist clogging and pressure regulation. Due to the specialist nature of the irrigation system, Access Irrigation Ltd provided a bespoke design service.The result of this network of expertise was a multi-faceted support service for the client, specifier, main contractor and roofing and PV installers. System installedBauder Total Green Roof System (BTGRS)1 BauderPLANT E 42Green, 5mm torch-on root-resistant capping sheet.2 BauderTEC KSA DUOA self-adhesive, elastomeric, bitumen underlayer. This underlayer was used to ensure thorough sealing of lap joints in low temperatures when the roof was installed.3 BauderPIR FA-TETissue-faced flatboard insulation faced on both sides with aluminium foil to provide efficient thermal output.4 Bauder Super AL-ETorch-on air & vapour control layer. Once installed on the concrete pretensioned plank deck, it can act as a temporary waterproofing layer, allowing internal works to be carried out immediately which was a huge advantage on this new build project.BauderSOLAR G LIGHTThis BauderSOLAR G LIGHT system was a key factor in the specification of the project to meet the sustainability criteria specified by the client. 40 PV units were installed on the main roof area on the Departmentof Engineering. The forecasted energy generated for this arrayin its first year is 9.91MWh with a CO2 saving of 5.242 tonnes/a. BauderBLUE SR-B flow restrictorThe BauderBLUE SR-B flow restrictor is designed to be used in conjunction with a standard Bauder bitumen blue roof vertical outlet DN70. The flow restrictor is comprised of four parts; baseplate, overflow pipe, baseplate inner and baseplate outer seal. The polyamide baseplate fits within the 70mm vertical outlet, with the EPDM outer seal creating a watertight fit. The HDPE Overflow slots into the central hole of the baseplate with an inner EPDM seal preventing any leaks. The baseplate has a number (1-12) of 10mm restrictive flow holes bespoke to the project. The flow restrictor has no moving parts, hugely reducing the need for maintenance or risk of failure.
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Manchester Airport Terminal 2, England

Manchester Airport Terminal 2, England

BEMO Project Engineering UK Ltd

Over 20,000m² N65/400 stucco embossed aluminium site-rolled to minimise transport requirements. Engineered structural deck to single span 9 metres
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Engineer’s quest for efficiency and comfort proves a real game-change

Engineer’s quest for efficiency and comfort proves a real game-change

Daikin Ltd

Former RAF aircraft engineer David Rose and his wife Sadie have lived in their four-bedroom house in Downham Market for five years. They aim to make the house as energy efficient, green and comfortable as possible – without spending too much money in the process.
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Engine Manufacturing Facility for Jaguar Land Rover

Engine Manufacturing Facility for Jaguar Land Rover

Norwood Group Limited

PROJECT OVERVIEW Jaguar planned a £500m investment for their first in-house engine manufacturing facility. Opened by Her Majesty, it currently produces 400,000 Ingenium petrol and diesel engines a year. Norwood worked with Interserve to deliver this ground-breaking project to the highest standards. The overall project won the Regeneration award at the RICS Awards Grand Final.OUR SCOPE OF WORKThe main challenge was to provide a 120Min fire-rated demountable compartment wall at 11 meters high. Norwood teamed up with Interserve, developing our 200mm Mediline system, which was subjected to excessive laboratory testing to achieve the 120Min Fire Rated certification. In addition to solid partitions, Norwood supplied a 90Min fire-rated 9-meter high glazed partition wall which provided a viewing gallery from the grand reception onto the manufacturing floor.In addition to the fire-rated compartment walls, Norwood provided a self-supporting machine and QC enclosures. The enclosures had to give a clean environment to a GMP standard; therefore, they had their own mechanical equipment, which was all supported by the Norwood enclosure. This was delivered by designing and installing a bespoke PodSolve system which consisted of a hidden ceiling joist system that provided the structural support for the mechanical equipment.Norwood often returns to Jaguar Land Rover providing modifications without business interruption to the build as their product cycle changes.
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Street CraneXpress: Rescue Plan for Service Engineers

Street CraneXpress: Rescue Plan for Service Engineers

MSA Safety (Latchways) – Fall Protection

Monarch Aircraft Engineering (MAEL) is part of the Monarch Group, the UK’s leading independent travel group, with core activities concerning scheduled airline operations, tour operations and aircraft engineering. MAEL maintains its own fleet of aircraft, as well as those of other airlines and the UK military. Due to business growth, in 2013 MAEL opened a new maintenance hangar in Birmingham. Hangars have traditionally had fixed docking solutions, where the aircraft must be positioned in place under overhead safety rails or lifelines. However, MAEL’s new hangar was built to offer far fewer restrictions as to working location.
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Aeronautical Engineering Training Centre, Ayr College Eye-catching colour pattern

Aeronautical Engineering Training Centre, Ayr College Eye-catching colour pattern

Tobermore

The Aeronautical Engineering Training Centre in Ayr College was designed with a modern edge and this style was reflected in the hard landscape which was created with an eye-catching Sienna mixed colour pattern.
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Coal Drops Yard, Kings Cross, London

Coal Drops Yard, Kings Cross, London

BEMO Project Engineering UK Ltd

BEMO supplied over 1200m² N65/400 profile to this hugely presitigious project in London. The standing seam system supported a bespoke rainscreen system fully engineered by the BEMO team, taking advantage of the BEMO-Top non-penetrative support system
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Revolutionising healthcare water hygiene: proven, effective, and sustainable

Revolutionising healthcare water hygiene: proven, effective, and sustainable

Horne Engineering Ltd

James Donagain's pioneering efforts, backed by Horne Engineering's innovative In-Line Thermal Disinfection Unit (ILTDU), are revolutionizing water safety in healthcare. Trials at Kings College Hospital and other NHS trusts have comprehensively demonstrated the ILTDU's efficacy in reducing Pseudomonas Aeruginosa (PA) counts at the inherently vulnerable water system periphery, allowing substantial cost savings to be realised and patient safety dramatically improved. Thermal disinfection not only significantly outperforms traditional chemical treatments but also promotes environmental sustainability. 
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Perfectly crafted drainage and flooring solutions

Perfectly crafted drainage and flooring solutions

ASPEN by Canal Engineering Limited

A popular brewery brand recently expanded its headquarters to support the increase in demand of its craft beer range. John Lord Flooring were approached to specify the resin flooring and Aspen Stainless steel products were utilised for the drainage system. The Uragard-HT62W antimicrobial resin flooring was an ideal solution for the project due to its durability, chemical resistance and anti-slip properties. The floors and drains worked hand in hand to distribute waste water into the central drainage channel within the processing area.Aspen Stainless Davos Plus drain channels were installed to cope with the high level of waste demand within the brewery. The channel profile was carefully designed to provide an easy to clean surface with a self-draining slope feature. The strictest level of hygiene standards are required within food and drink facilities due to the build-up of bacteria and possible cross contamination of liquids.   It's essential the drainage is perfectly compatible with the flooring to ensure a seamless connection and high performance. This partnership with John Lord supports optimum performance compatibility by preventing the elevation of floor plates that can compromise hygienic performance.The drain channels are designed in compliance with EHEDG (European Hygienic Engineering & Design Group) to support safe hygienic engineering in food manufacture. The EHEDG states ‘product contact surfaces must be easy to clean, non-absorbent and not present a toxicological hazard by leaching of substances and foodstuffs’ the cleanability of the drainage is also an important hygiene requirement as stated in the EHEDG ‘Improperly or insufficiently cleaned equipment cannot be effectively disinfected’ A perfectly fitted drainage system will have a positive impact on boosting the hygienic performance of the entire facility. This includes employee health & safety, operational costs as well as consumer safety. The dedicated project managers worked closely with the contractor during the installation process to ensure the highest standards for drainage and protection were achieved. If you have any questions regarding our drainage solutions, please email aspen@canalengineering.co.uk or visit our site and speak to one of our technical advisors for more information. 
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Cladding Stairs in Engineered Herringbone Parquet Flooring

Cladding Stairs in Engineered Herringbone Parquet Flooring

The Solid Wood Flooring Company

Few people realise that it is possible to clad old stairs with our engineered herringbone parquet floors. It is a specialist skill and you should only employ trusted professionals who have the specialist equipment. The parquet blocks used here are unfinished so that you get perfect square edges. They are then oiled after all other works are completed so that you get your perfect floor. There is no separate stair nose piece as the top layer of solid Oak is a good 4mm thick and this allows the fitters to create an accurate mitre join.
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Performance Drainage For Britvic Recycling Facility

Performance Drainage For Britvic Recycling Facility

ASPEN by Canal Engineering Limited

The global drinks manufacturer Britvic have recently completed the expansion of its manufacturing site in Rugby. This particular investment involved installing a fourth canning line, growing the site capacity by 18%.This new, state of the art canning line was designed to boost Britvic’s Rugby facility, which continues to produce recyclable cans for popular drinks brands such as Tango & Pepsi. The additional capacity will also be used as a platform to drive further innovation and expansion within the business.Aspen Stainless Davos Plus drain channels with ladder covers were installed to cope with the high level of waste demand on site. The channel profile was carefully designed to provide an easy to clean surface with a self-draining slope feature. The strictest level of hygiene standards are required within food manufacturing facilities due to the build-up of bacteria and possible cross contamination of liquids. The new drainage channels were designed to match the existing flow and volume capacity of their existing drains and included bespoke outlets, tied into the building’s underground drainage systems.Banff outlets were also installed with a hinged trap, the removable trash baskets were designed to efficiently dispose of the non-liquid waste, which has built up within the outlet. It’s essential the drainage is perfectly aligned to ensure a seamless connection across the entire site to boost performance standards.The drainage channels are designed in compliance with EHEDG (European Hygienic Engineering & Design Group) to support safe hygienic engineering in food manufacture. The EHEDG states ‘product contact surfaces must be easy to clean, non-absorbent and not present a toxicological hazard by leaching of substances and foodstuffs’ the cleanability of the drainage is also an important hygiene requirement as stated in the EHEDG ‘Improperly or insufficiently cleaned equipment cannot be effectively disinfected’The perfectly fitted drainage system boosted the overall hygienic performance of the new drinks recycling facility. This included employee health & safety, operational costs as well as consumer safety. The dedicated project managers worked closely with the contractor during the entire installation process to ensure the highest standards for drainage and protection were achieved.If you have any questions regarding our drainage solutions, please email aspen@canalengineering.co.uk or visit our website and speak to one of our technical advisors for more information.
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A Home Transformed

A Home Transformed

Grant Engineering (UK) Ltd

In 2020, a large renovation project commenced at a family home in Chippenham, Wiltshire. The semi-detached property, which initially had three bedrooms, underwent a large extension and much of the interior was also updated, transforming the house into the dream four-bedroom home that the homeowners wanted. A core part of this project, included the removal of the old heating system and upgrading it to a greener, more efficient alternative.
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Manchester Airport Fire Engine Workshop Floor uses FasTop TG69

Manchester Airport Fire Engine Workshop Floor uses FasTop TG69

Sherwin-Williams

​​This project at Manchester Airport has now been completed by Monarch Resin Floors. The previous floor was a twenty year old tile and resin cementitious screed which was decaying and water damaged. Due to the level of decay and disrepair, the floor was dug out by a third party and re-concreted ready for the resin. Monarch installed 9mm thick FasTop TG69  polyurethane screed in 3 different colours to help the fire engines to see the tyre lines when they were reversing. White line marking was also installed.The total area was about 600m2 and included six bays and six fire tenders.
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Steel Windows by Martec

Steel Windows by Martec

Martec Engineering Group Ltd

Steel slimline windows and doors, steel heritage windows, steel secondary glazing, steel curtain walling, fire rated steel screens, fire rated steel doors
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Premier Vision Door

Premier Vision Door

Martec Engineering Group Ltd

Premier Vision Communal Entrance Doors
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Cranswick Country Foods

Cranswick Country Foods

ASPEN by Canal Engineering Limited

Aspen Stainless supplied bespoke stainless-steel solutions to the UK’s leading food producer Cranswick. Aspen worked closely with Trundley Design to design effective hygienic plant equipment for a number of food processing plants across the UK.The drainage system was installed to support the cleaning regime and water flow around the factory. This blended perfectly with the John Lord flooring design and allowed for waste to drain effectively into the surrounding channels and gullies; creating a seamless connection between the systems and prevented any standing waste and bacteria from building up.
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Hygienic stainless steel

Hygienic stainless steel

ASPEN by Canal Engineering Limited

In dairy industries it's vital that hygiene standards are kept to a high standard. Drainage and kerbing are important products that need consideration. To reduce costs, many may opt for concrete, however over time concrete dries out and is prone to cracking. This can jeopardise a hygienic environment as unwanted bacteria will harbour in the cracks Alternatively, drainage and wall kerbing. Stainless steel is resistant to caustic cleaning materials and lactic acid, which are common elements in a dairy. This resistance ensures that the ss surface does not corrode or weaken making it an excellent long term solution.
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ICR Sutton

ICR Sutton

BEMO Project Engineering UK Ltd

The BEMO N50 perforated profile was chosen to clad the plantroom at the Institute of Cancer Research. Thanks to BEMO's expertise in curving, the tight radius could be achieved as a smooth curve to ensure that the desired appearance was achieved without the need for facetted or crimped sections.
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Clamart, France

Clamart, France

BEMO Project Engineering UK Ltd

Complex geometry and a combination of roof and wall cladding, without welded joints, required BEMO's MONRO freeform standing seam panels on this prestigious project. Produced in stucco embossed aluminium, the panels were manufactured on site, and designed by the BEMO in-house technical team

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