Showing posts with label Germany. Show all posts
Showing posts with label Germany. Show all posts

Centre for Culture and Community - Adaptable Modular Building Prototype

For a complex research project - the prototyping of a Centre for Culture and Community - noa* questions what form modular flexibility takes and how nature can be embedded in the project.






About noa*


ProjectCentre for Culture and Community
Architectsnoa*
Year2021





CeCuCo, Centre for Culture and Community, is a research project with an ambitious task: the design of a cultural centre without a fixed context, capable of transforming itself to adapt to anyone and anywhere. This is noa*'s vision of a multifunctional space, translated into a sustainable model which is versatile for all situations. Among the infinite design possibilities, it was clear from the very beginning which direction to take: to design an architecture that is not indifferent to what happens inside it, a flexible space in which the community can decide, act and makes her moves.

Learning from tangram

The geometry of the project is based on an elementary form, the triangle, repeated modularly in both plan and elevation. In the first case, the triangular module is inscribed in a 3x3 m square, in the second in 3x1.5 m. Working with geometries easy to assemble allows the cultural centre to expand or contract according to the needs of the context. In addition, on an urban planning level, the triangles can combine in many types of shapes, resulting in different space typologies like the slab, the courtyard or the punctiform village.

Using the module in the facade opens up to a variety of configurations, creating a kind of facade metamorphosis. noa* imagines the elevations as a chessboard: some elements can be moved, with certain rules and in certain directions, which it is then up to the people who experience the architecture to control. Doors can be moved, fanned out, turned on their hinges, lowered, raised, ajar... and the same goes for windows. A wide range of possibilities for an intuitive and playful architecture, made up of moves and countermoves, where the game of action and reaction between community and building gives life to the most diverse scenarios.

Players on playground

When defining the functional programme, noa* first investigated the needs of a cultural and community centre as well as the ways to create an architecture as inclusive as possible. How do you design a space that works in the same way for children who meet to play, adults to watch an exhibition, teenagers to listen to a concert? What are the characteristics of a meeting space that is open all year round, that is not for consumption and that represents the public counterbalance to the private domestic dimension?

The natural answer to these questions was the decision to define different spaces capable of satisfying multiple needs, rather than specifying a fixed list of functions. Through 6 types of floor plans, ranging from 8 to 115 m2, all the possible activities of the centre are accommodated. For example, the small module houses the artist's atelier, the newspaper stall, the storeroom, the management office, the staircase, and the changing rooms. In the extra small module, you can find a ticket office. In the medium module, the toilets, a library room, and the open-air bleachers, since not all modules stand for covered spaces. As the floor plans change to the larger size, the possibilities vary, culminating in the large space, with 115 m2 available, designed for theatre and cinema.

Think local, be sustainable

noa* wanted an architecture that is social in its final purpose, and sustainable in all the aspects of the design, including the choice of materials and construction techniques. For this prototype were chosen natural materials and an exposed construction system, easy to assemble and dismantle. In the “standard package”, the facade is made up of an exposed wooden structural system and a wall of clay bricks, alternating with transparent parts, which have also been modulated on the geometry of the triangle. The sustainable approach must be central in the design: therefore, the final choice of materials must be verified with the project environment, to check their actual availability on-site, their thermal conductivity in relation to the climatic conditions, the energy consumption in their processing and the presence of the necessary know-how skills. Similarly, a careful design of the installations can have a positive impact on the ecological footprint of the building. The cultural centre includes the use of green roofs and pergolas, photovoltaic systems, rainwater collecting systems, cross-ventilation systems as well as ponds and wooded areas for a temperate microclimate.

With this project, noa* envisages a flexible architecture, capable of reacting to changes in context and at the same time of working on different scales, from the macro-project to the street furniture. This cultural centre could be located on a beach on a volcanic island, in the Scandinavian forests, on an abandoned lot in Detroit or on the roofs of socialist housing in Berlin. It is an architecture able to mould itself to the morphological and climatic requirements of the context while maintaining intact the concept of sociality and interaction between the building and those who live in it.

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VoloPort Concept - Modular eVTOL Vertiport - Departure and Arrival Facility for Air Taxis and Drones








About Graft


ProjectVoloPort
ArchitectsGraft
Project partnersGeorg Schmidthals, Lars Krückeberg, Wolfram Putz, Thomas Willemeit
Project leadSebastian Massmann
Design leadMarta Piaseczynska
Project teamJulia Korpacka, Tatiana Lebedeva
Year2021: Commission for VoloPort together with Arup and Bayards Aluminium Constructies
2019: First prototype built in Singapore by GRAFT Brandlab
2018: Competition, 1st prize, together with GRAFT Brandlab and Arup


Description by designers

The German eVTOL design company Volocopter is a pioneer of Urban Air Mobility and develops fully electric vertical take-off aircraft as a mobility solution for use in urban areas. As a hub for the Volocopter aircraft, the VoloPort vertiport was devised by GRAFT in collaboration with Volocopter, Arup and Bayards Aluminium Constructies.

The VoloPort is part of the Volocopter modular urban air mobility infrastructure network and acts as a gateway within the public realm. Suited to the constraints of densely populated areas, its compact, modular and expandable design can be employed in a variety of inner-city locations – either on the ground, on the roof of a high-rise building or on a floating, water-based platform.

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Emergency Modular Hospitals - Projects for COVID-19 Pandemic

Alternative healthcare facilities: architects mobilize to fight COVID-19







As healthcare infrastructure is overwhelming and hospitals around the world are reaching their capabilities, alternative possibilities emerge. In response to the shortage of beds and the saturation of facilities, architects around the world are taking action in the ongoing fight against the coronavirus. Focusing their knowledge to find fast and efficient design solutions that can be implemented anywhere, they propose flexible, quickly assembled, mobile and simple structures. With a tight schedule, some projects are already implemented and in service, while others remain on a conceptual level, waiting to be adopted.


Although overall, the planning guidelines for new hospitals dictate that 15-20% of spaces should be dedicated to communicable diseases, most facilities worldwide could not have anticipated a pandemic of this scale. As a result, Carlo Ratti has converted shipping containers into intensive care units, consisting of fast-mounting, easy-to-move and safe units. CURA, a secure isolation room, containing all the necessary medical equipment, has its first prototype ready. In the Philippines, the WTA established 60 emergency quarantine facilities. Temporary structures made of wood and plastic can be replicated anywhere to increase the capacity of hospitals. Other more conceptual approaches include mobile units designed by startup JUPE HEALTH, rapidly deployed rest and recovery units, as well as mobile ICUs. At "1/30 the cost of a hospital room," they're designed and built for doctors by doctors, and can be shipped anywhere.




On the other hand, in New York, officials, who anticipate the need for 10 times the existing rooms, seek to generate useful spaces for patients by altering the capacity of existing structures or converting buildings with a different program, such as office spaces, stadiums, convention centers, etc., which already have the basic required amenities, such as HVAC and adequate treatment infrastructure. Additionally, to help identify suitable alternative sites for patient care, the American Institute of Architects has released a new design guide from its COVID-19 Task Force, a quick assessment to recognize compatible buildings that can support care operations. In line with this logic, Opposite Office has proposed to transform the New Berlin airport, under construction since 2006, into a "super hospital" for patients with coronavirus. The adaptive reuse alternative can be implemented at any airport in the world, since traffic is limited and restricted.

In addition, specialized architecture companies such as MASS published guidelines to limit contagion in the Tents COVID-19. In founding his research on past epidemics, MASS explains that the risk of cross contamination is high when people are in tight places. To limit disease transmission, 3 main ideas should be adopted: limit the spread of drops between people, designing distances between people of 6 or more to avoid direct contact with respiratory drops; mitigate contagion through surfaces, identifying, cleaning and disinfecting high contact surfaces; and control of airborne infections by preventing, diluting, and removing contaminated air.

To highlight different design approaches, inspire creative solutions and encourage quick responses, we have brought together 10 architectural platform initiatives that address current issues, each presenting a novelty and introducing a different concept. A space protocol, an urban quarantine camp, emergency medical shelters, fast-building hospitals made from recycled shipping containers and inflatable fabrics, low-cost mobile facilities, hospital ships, and personal protective spaces for doctors, among others.


Solar House - Solar Power Off-the-Grid Prefab Home

Winner of Solar Decathlon 2007







Plan
Interior
Exterior
Project participants
Innovative materials manufacturers

Design: Students of the TU Darmstadt, Department of Design and Energy Efficient Construction, Prof. Manfred Hegger (Project Management)
Project: Solar House
Location: El-Lissitzky-Straße 3, 64287 Darmstadt, Hesse
Year: 2007
Client: TU Darmstadt (+ operator + user)
Gross floor area: 72 m²
Heated net floor area: 50 m²
Gross volume: 182 m³
Heating requirement (EnEV): 12,00 kWh / m²a
Usable area (according to EnEV): 58 m²
A / V ratio: 1.15 m-1
Architecture and engineering systems: thermal insulation, façade systems, glazing + windows, daylight planning, ventilation + heat recovery, active cooling, regenerative + passive cooling,
thermally activated component systems, heat pump, heat / cold storage, control engineering, plant management, building automation, solar thermal energy, photovoltaics, biomass utilization, building materials ecology




The solar power off-the-grid prefab home "Solar House" designed by students of the TU Darmstadt has won the international competition "Solar Decathlon 2007" for the most attractive and energy-efficient solar house. The energy self-sufficient prefab home was built on the campus of the TU Darmstadt and transported to the USA after completion.

The house is a wooden lightweight construction with low heat storage mass compared to massive new buildings. In order to combine maximum living comfort with the lowest energy consumption, a compact and highly insulated building envelope was chosen. During the hot summer days, the shading of the windows help to avoid overheating the interiors. The shading elements consist of the southern roof overhang and the lamellar shell of oak, which opens and closes when needed.

Plasterboard with integrated phase change material (PCM) compensate for heat peaks. They store the heat energy generated during the day and release it at night. Per volume unit, the material can store six times as much heat as concrete and thus acts as a latent heat storage. Once the wax contained in the PCM has completely melted, no further heat can be absorbed. Cooling can be achieved by cross-ventilation between the north and south sides during the night or by passive cooling system of the PV modules on the roof. For this purpose, a built-in double soil water reservoir is used, which is connected to a heat exchanger. On the opposite side of the heat exchanger is the cooling circuit, which consists of capillary tube mats in the ceiling. These absorb the heat of the phase change material and transport it into the water tank. This allows the PCM to actively cool constantly.

B10 Prefab House + Garage for Electric Car + Sustainable Energy

In addition to housing in the architectural sense, the house of the future will also be a decentralized energy producer and 'provider' for emission-free electromobility. As an intelligent component in the energy system of the future, it is grid-connected and supplies neighboring buildings and electric cars with energy from renewable sources. A new construction technology enables 100% recyclable buildings with high design quality, which are affordable thanks to prefab series production and modular system construction.






Rendering
Floor plans
Construction
About Werner Sobek
About E-Lab Projekt GmbH
About AlphaEOS AG and B10 Future Living Lab
Project participants


ArchitectureWerner Sobek, E-Lab Projekt GmbH
BuilderE-Lab Projekt GmbH
Energy conceptWSGreenTechnologies
ElectromobilityDaimler AGKonstruktion: SchwörerHaus
ManufacturersSky-Frame, CLIPSO, Leicht
Testing and researchAlphaEOS AG and B10 Future Living Lab
LocationStuttgart, Germany
Year2014
PhotographyZooey Braun


Vision

At the beginning of the project was the vision of an innovative and sustainable prefab house, which not only generates all the energy needed in-house from sustainable sources and that can be 100% recycled into the material cycle. The building should also create a link between the built environment and electromobility - and show ways of optimally coordinating energy generation and energy consumption at the local level through a smart grid.

Context

The prefab house is located at Bruckmannweg 10, in the heart of the famous Weissenhofsiedlung in Stuttgart. Built in 1927 within a few months, this settlement on the Killesberg was like a revolution in construction. The designs of various world-famous architects showed how we can build and live in the future. Parts of the Weissenhofsiedlung were destroyed and rebuilt after the war - except for the property in the Bruckmannweg, which lay fallow since 1945. Here, for a period of three years, appears B10, a new forward-looking building that shows how innovative materials, designs and technologies can sustainably improve our design environment.





Project

The research project - named "B10" after its location in Bruckmannweg 10 - is an active house. Thanks to a sophisticated energy concept and self-learning building control, it generates twice as much energy itself - from sustainable sources. With the surplus gained, two electric cars and the listed building of the architect Le Corbusier (since 2006 the home of the Weissenhof Museum) have been supplied. Upon completion of the research project, the prefab house will be completely dismantled, rebuilt elsewhere or 100% recycled. The property is then returned to the city of Stuttgart in its original condition.

In an initial phase of use, interested visitors can find out more about the energy concept and the applied construction technology in B10 prefab house. In the second phase of use, the building will be inhabited free of charge by two students. During the entire project period, energy generation and energy consumption as well as a large number of other highly relevant data for building research are continuously measured and scientifically evaluated at the University of Stuttgart.

Builder

The developer of the project is E-Lab Projekt GmbH, a project company of the non-profit Stuttgart Institute of Sustainability Foundation e.V. (SIS). SIS is a non-profit association. It supports and develops methods and technologies for sustainable construction. SIS combines science with industry and crafts. The association was founded in 2011 and has its headquarters in Stuttgart. Further information can be found at http://www.sis-stiftung.de/verein.php

Modular Construction in Perfection - Modular Homes, Multi-Storey Apartment Buildings and Offices by Variahome, Germany

Modular Construction in Perfection






Variahome stands for sophisticated, architecturally high-quality, turnkey buildings in modular solid wood construction. The future-oriented design of Variahome provides the clients with a wealth of advantages.

Made in the tradition of alpine wood craftsmanship Variahome combines tradition with modernity.

Industrially prefabricated Variahome room modular systems are guarantors for short construction time, highest quality, a particularly aesthetic appearance and offer attractive purchase, financing, rental and leasing models for the commercial and municipal sector.


About Variahome

Modular Construction - Sustainable, Flexible, Turnkey

Shared living of young and old. More space for young families, singles, students, pensioners and the construction of low-cost apartments, this is multi-storey modular housing construction with Variahome.

Affordable housing has become an existential issue for millions of people in Germany. Young families no longer find affordable housing in many major cities. Retirees are forced out of their homes and neighborhoods where they have lived for decades. Who in a big city, for example nurse or bus driver is, who can afford in the city center no more housing. The market demands new flexible living concepts and Variahome has them.





If residential space is to be created quickly, Variahome offers a real alternative to conventional building with ecological, sustainable modular solutions with a prefabrication rate of 98% in the factory.

Benefits

Valuable, sustainable ecological architecture:

Good architecture is permanently valuable. The sooner we get involved in the planning, the more economical and precise the result.

Turnkey delivery and construction with fixed price and term guarantee. Variahome carries out the planning in partnership with client in dialogue in order to best capture client's requirements. So Variahome can implement your room and equipment program precisely.

Of course, Variahome meets all the requirements for fire protection, sound insulation and building physics. All legal standards, regulations and specifications are of course complied with. Even highest energy standards such as Passive or Plus energy modular buildings are possible.

Economical: The short construction time, the high flexibility in use and the adaptability to future requirements make the Variahome modular construction particularly economical. No matter whether you are planning barrier-free living space or are using subsidies for social housing or particularly efficient construction methods. Variahome with its experienced architects adapts the planning 100% to client's needs.

Flexible modular design freedom. With Variahome clients achieve the same freedom of design as they are used to from other building systems. Plaster, wood or brick facades are exactly the same as modern HPL facades. With this freedom in design, Variahome integrates their modular buildings into every urban environment.

Flexible and sustainable: you remain flexible even after installation. Adjustments to changing requirements are not a problem with modular design, as the inner walls are not static bearing and can therefore be moved or removed.

Healthy living with well-being guarantee: By using solid wood, which has a favorable effect on the room humidity and room temperature, Variahome creates a comfortable living atmosphere.

Feel-good apartments: In the interior, modular housing allows for a high degree of flexibility in layouts, since Variahome removes all static loads via the exterior walls. Variahome does not know the limitation of "load-bearing interior walls". So Variahome can realize flexible room concepts. When choosing the ceilings and wall surfaces as well as the floor coverings client has free choice. Variahome realizes living rooms, kitchens and bathrooms in the highest quality and execution.

Modern German Modular Buildings - Prefab Homes and Offices





The 14 x 10.50 m building consists of five modules. Walls and ceilings were made with wooden surfaces and additionally covered with HPL panels in the wet area. The façade consists of HPL panels. As insulating material wood fiber insulation materials were used. Advantage of the solid wood construction: With the same thermal insulation, the walls can be constructed 6 cm thinner.

Modular Homes
Modular Offices
About Russ Holzbau und Technik

In a time of constant change, the creation of modular building units is becoming increasingly important. Modules from Russ Holzbau und Technik offer growing space as an optimal solution for changing needs. The modular building surfaces are adapted to the respective needs by extending or reducing additional modules.

Regardless of where you are, you can also stay flexible: whether it's a living module, office module, parterre module or back-up module, you can work and live wherever you want. And if you change your location or place of residence, then take your module with you.





Further you will find individual building solutions for offices, residential buildings and sales rooms of Russ Holzbau & Technik.


Airport Lounge Modular Construction at Berlin Tegel Airport






Passengers at Terminal C of the airport Berlin-Tegel have access to a new lounge. The special feature: the three-storey modular building was built from steel modules by Cramo Adapteo in just six weeks of night installation. The fronts of the modules are glazed over a large area, underlining the cuboidal structure of the serial elements, while the lounges offer generous views.


About Cramo Adapteo

Manufacturer: Cramo Adapteo
Product: Steel modules
Building: Airport Lounge
Location: Berlin Tegel Airport
Year: 2017

The new lounge at Terminal C of Berlin's Tegel Airport, which is close to the city center, proves that modular construction is suitable for functional and fast building projects, yet not neglecting design and comfort. Cramo Adapteo, part of the Finnish Cramo Group, placed its prefabricated modules on the apron of the terminal in just six weeks. Since the erection had to take place during the running of the airport, the assembly could only take place at night. To the outside, the building retains a functional character that matches the context, to which the modular design is clearly assigned. The steel construction of each element is visible on the façade, because the individual structures optionally frame large-area glazing and the rooms behind, or outdoor spaces and access area.

From the inside, the glass fronts allow for sweeping views. The lounge areas themselves are designed to meet comfort and service requirements for stays between flights. On the ground floor of the three-storey terminal building there is a reception area and a dining area. In addition to dining tables and chairs, work tables are also available, each equipped with sockets. On the second level comfortable seats were placed directly in front of the panoramic glazing, so that the handling of the aircraft can be observed in the first row. On the third floor is a smoking lounge with ventilation system. The exit to a roof terrace is also possible here, from where takeoffs and landings of the aircraft can be experienced in a more exposed position.





In addition to the transparent interface, which can be shaded by centrally controlled blinds, a generous sense of space is generated with a clear ceiling height of 2.75 m and partially half-height interior walls. Circumferential LED strips at the connection to the ceiling contour and stage the volume. The designed as heating and cooling ceiling space closure ensures the appropriate air conditioning, the supply takes over an air-water pump with MSR technology. Part of the security concept is an escape staircase, fire protection measures, emergency lighting and door monitoring.

Modular Multi-Storey Apartment Building in Bochum, Germany






About Koschany + Zimmer Architects KZA
About ALHO

Client: VonoviaSE
Architects: Koschany + Zimmer Architects KZA
Year: 2018

The close cooperation of a modular construction company, a housing association and an architectural firm is due to the construction of several residential modular multi-storey apartment buildings on the modular principle and in steel modular construction. In a relaxed urban planning arrangement on a newly developed, inner-city plot in Bochum, for example, three Point houses were created, which want to contradict the uniform appearance and repetitive, shapeless image of serial construction.

The Essen-based office Koschany + Zimmer Architekten KZA dealt with the modular construction at an early stage. After a first project in Dortmund, which the architects developed together with the system construction company Alho from Friesenhagen, the cooperation was continued in Bochum. On behalf of the housing company Vonovia, three 4-storey Point houses in the midst of generously designed open spaces were realized. The participants regard the applied modular principle as advantageous for the housing industry as well as for architects and planners.





Planning from the inside out

The Modular Housing Kit developed by KZA and Alho consists of individual module types. These include, for example, a living room and a kitchen, a bedroom with a hallway or a nursery plus a bathroom. From this matrix - a canon of different modules - the apartments are custom-made for the respective location and according to the desired apartment key. Afterwards, the house is created out of this individual mix of apartments. "Normally, architects tend to work in the opposite direction - from outside to inside: there is an urban planning situation from which the building is conceived in its cubature and fitted with floor plans developed from it," explains architect Axel Koschany. "Modular construction is the other way around. It starts with elaborate floor plans - in the end the most important thing for the future residents. Even the most similar apartment types are almost never forced into one and the same cubature due to the different local specifications."

Diversity in modular design and layout

For example, three modular houses, each with 14 residential units, were built in Kaulbachstraße in Bochum in the course of an inner-city rehabilitation measure. As an urban development reaction to the adjacent to the north side 2- and 3-storey neighboring buildings was staggered in coordination with the city. The mezzanine floor jumps back 3 meters on the 4th floor and creates spacious roof terraces. The return could be agreed with the modular design, since this only one module had to be omitted. The systematics of the modular structure remained otherwise unchanged.

The modules are on 17 x 19 m base and 12.5 m high, with 7 one-room, 3 two-room, 2 three-room and 2 four-room apartments, user requirements are covered. The apartments are designed throughout to be barrier-free and wheelchair-friendly. The buildings are centrally accessed via a single-flight staircase and lift system. All apartments on the 1st and 2nd floor have prefabricated balconies, and the apartments on the 3rd floor have rooftop terraces. Arrangement of freestanding Point Houses ensures a varied appearance. The funnel-shaped outer space zones leave room for differently designed open spaces. Green tenants' gardens, playgrounds and other dwellings are planned here.

Profitability factor of prefabrication

Each building consists of 43 room modules. These were manufactured at Alho plant for seven weeks and under ongoing quality controls. At the construction site, the modules were ultimately assembled in seven days per house. The entire construction period of the three modular buildings was - after the ground was prepared - 20 weeks.

"The modular construction can always exploit its advantages if the structural units that are as constant as possible are repeated. That's why we talk about serial modular construction. So that these module types are not built into uniform houses, we work together with architects like KZA. They bring creative input by playing with the building blocks and exploiting their potential in terms of design," explains Michael Lauer, architect at the multi-storey building competence center at Alho.

The projects in Dortmund and Bochum are the first of a series of residential construction projects that will be completed with the developed modular system later this year. The project partners are planning to further optimize the system and to expand new components, such as new module units.

Diversity in modular construction

In Bochum, an exemplary modular construction project proves that series and individuality are not mutually exclusive. On a newly developed, inner-city plot, three modular Point Houses have been created with a loose, urban arrangement and a staggered cubature.

As one of the first manufacturers of prefab modular buildings in steel module construction, ALHO offers sophisticated solutions in multi-storey housing construction. For the housing company VONOVIA, the company is currently (2018) realizing a series of residential buildings based on a modular system. The concept was developed together with Koschany + Zimmer Architekten KZA from Essen. Instead of developing the building out of the urban situation, the process of serial construction begins with the smallest scalable serial element, the module. Depending on the room requirement, these individual elements are put together individually. This is how well-designed floor plans and a large range of cubatures are created with modular prefab units.

The ensemble of the three Point Houses is already the second housing project that was realized together with KZA. It was created in the course of an urban development densification in Bochum. The buildings are four-storeyed and offer space for 14 continuously accessible housing units of different sizes. There is no basement, but all apartments have a sufficiently large storage room and on each ground floor a technology module is arranged. Overall, the Point Houses are made up of 43 room modules. They were manufactured in the factory within seven weeks under strict quality controls at ALHO and installed at the construction site per house within seven days. The total construction time of the three buildings was just under 20 weeks after the ground was prepared with the floor slab.

Contrary to popular belief that modular buildings are boring, the architects were able to make the three residential buildings in Bochum exciting: With the fourth floor projecting back, the design responds to the two- and three-storey neighboring buildings adjoining the north side. At the same time, the staggering of the building cubatures visually revives the facades. In terms of urban planning, the arrangement of the Point Houses, which is rotated towards each other, creates a sense of relaxation: funnel-shaped interspaces that provide space for differently designed recreational areas - from green tenants' gardens to varied playgrounds.


"Woodie" Student Dormitory - Timber Prefab Modular Building in Hamburg, Germany






Interior
Construction
About dormitory
About architect

Project: Woodie
Client: Third PRIMUS Projekt GmbH - a joint venture of Primus and Senectus
Architect: Sauerbruch Hutton, Berlin
Location: Dratelnstrasse 32, 21109 Hamburg (DE)
Construction: 12/2016 - 09/2017
Project cost: 37.000.000 EUR
Photos: Thomas Ebert, Gotz Wrage

The prefabricated cross laminated timber modules of this student dormitory in Hamburg were developed in close cooperation between the architects of Sauerbruch Hutton, the client and the module manufacturer Kaufmann Bausysteme. A manageable number of design details and the restriction to two module types have made this an efficient as well as inexpensive building possible.

For the time- and cost-efficient realization of the "Woodie" dormitory in the Wilhelmsburg district of Hamburg, the client's decision was made to involve a wood module manufacturer directly after the architectural competition. Following the direct commissioning, Kaufmann Bausysteme, together with the architects and structural engineers at Merz Kley, set about optimizing the area of the apartments.





The definition of the performance limits was essential, which ultimately led to the module builders being responsible not only for module production but also for the directly adjacent trades: the construction of prefabricated concrete floor structures, the production and assembly of all larch wood facades and roof waterproofing. The resulting benefits include fewer and more precise interfaces as well as subcontractor workflows that are clearly tailored to the modular design, ultimately resulting in more quality, fewer defects, shorter construction time, and therefore cost-effective solutions.

All modules were prefabricated complete with interior fittings, finished bathrooms, windows and doors, stored temporarily, packed in a watertight package, delivered to Hamburg just in time, and immediately lifted to the correct position with a crane. An intermediate storage on the construction site was not provided, not least for reasons of space. A maximum of four modules could be produced per day.

The serial production of the modules on a kind of production line brought numerous advantages in terms of accelerated assembly time and a short construction time. Added to this is the fact that assembly processes in workshop conditions and on the ground are generally cheaper and faster feasible than on site. Even more important, however, is the higher quality and precision achievable thereby, without which a modular construction of this type would not have been feasible.

Efficient sound control for timber-constructed prefab modular student residence

On six floors, 100 metres in length and made of solid wood, 371 student flats are strung out in the district of Wilhelmsburg in Hamburg. This makes "UDQ" the biggest timber student residence in Europe and the tallest timber building in Hamburg.

Inspired by the stacked containers in the Port of Hamburg, “UDQ” is made up of prefabricated timber modules that are stacked on top of and next to one other. The whole construction sits on a base of reinforced concrete. Each of the 20 m2 apartments is fully furnished – with bed, bathroom, built-in wardrobe, kitchenette and folding table. Where necessary, single modules can also be combined to create larger apartments.

Effective sound insulation is essential on a project such as this. That is why Getzner was brought on board as experts by contractor Kaufmann Bausysteme GmbH.

THE SOLUTION

To prevent sound transmission between the apartments, the individual modules were bedded on Sylodyn® from Getzner. Timber was chosen as a building material due to its ecological properties and the warm interior ambience it creates. The modules were pre-fitted with Sylodyn® linear supports at the factory for reliable soundproofing.

"Sound mainly propagates through the flanking of the modules. Using elastic bearings, means we have been able to almost completely eliminate sound transmission between the individual modules", explains Hendrik Reichelt, Project Manager at Getzner.

Additional Information:

Timber construction modules: Kaufmann Bausysteme GmbH, Reuthe (AT)
Structural Design Modules: Merz Kley Partner, A-Dornbirn
Structural Design Concrete Construction / Building Physics: Wetzel & von Seht, Hamburg
Landscape Architecture: Sinai Gesellschaft von Landschaftsarchitekten mbH

Luxury and Cheap Modular Homes - Family Friendly Homes





Modular home for young families - home that grows with you. As number of children increases, modular home grows larger - and later smaller again.


Floorplans
Construction Video
About SchwörerHaus

Living as flexible as life would have to be: a house that grows with increasing numbers of children and shrinks again when family members move out. Modular houses are a modern trend in the field of prefabricated construction.

A family changes over the years. First, two people move into a house, then a third, maybe even a fourth person is added. More space is needed. Years later, a few residents gradually move out again. In the end, maybe only one will stay behind - and less space is needed again. Homes that take part in all these situations would be nice - and they already exist: Thanks to their modular design, buildings can grow or shrink.





The individual configuration of products is becoming increasingly important in many areas - and the trend is rising. Horst Wildemann, a professor at the Technical University of Munich, is an expert in serial construction and prophesies: "What has long been the norm when buying a car will also prevail in the home market." But that goes far beyond the individual planning on the computer according to the wishes of the clients - it goes all the way to future with modular extensions.


"Individual modules made from lightweight components are industrially prefabricated in line with the model of the automobile industry and then put together on the construction site," says Prof. Wildemann, explaining the production of a modular building. Quasi-finished house areas are brought as a whole on the construction sites.

4 Bedroom, 2 Floor Prefab House, Germany






About Daniel Libeskind

ProjectThe Villa
DesignDaniel Libeskind
Area515 sq.m (Building Footprint: 26m x 22m, max height 11m)
LocationDatteln, Germany
Year2009
PhotographyLibeskind, Frank Marburger


Features of this 4 bedroom, 2 floor prefab house are seamless transitions between spaces, strong geometries and drastic angles. That prefab house can be delivered anywhere in the world and assembled in a few weeks. The structure meets the highest standards in sustainability, craftsmanship and design. That prefab house is classified as a low-energy building as it successfully complies with the German energy-saving standards, which indicates less than 40 kWh/m²a heat consumption.

Description from architects

This four bedroom, two-floor prefab house while completed in Germany can be constructed and shipped to almost any location in the world within months and assembled by a team of experts within weeks.





Made of wood from renewable sources, zinc, and aluminum, the 5,000 square foot, German-made structure meets the highest standards of design and craftsmanship and complies with the highest energy-saving standards in the world.

The prefabricated structure is composed of three interlocking ribbons with striking angles, creating an asymmetrical, double height, and dynamic interior.  The Villa fills a niche in the residential market between the one-off custom home and the mass productions; the structure is customizable, made to order and delivered to the site in a fraction of the time of a ground-up construction.  Details include the elaborate metalwork of the balcony off the master bedroom, light wells directing daylight into a sauna and recessed wardrobes.