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The project employs the idea of a semantic fingerprint that, like human fingerprints, describe the key characteristics of a project. This approach in combination with a graph-theory-based representation and search method makes it possible to retrieve relevant examples of similar designs or buildings.
Architektur ist Konstruktion und setzt das Wissen um Baustoffe und ihre Fertigung voraus. Umgekehrt wirken diese auf die architektonische Form ein.
Die Schwerpunkte des Lehrstuhls liegen bei der Vermittlung funktional-technischer Gestaltungsprinzipien innerhalb des Architekturstudienganges und deren Thematisierung in Forschungsprojekten.
Im Pflichtmodul 3. Im Masterprogramm stehen Teilsysteme des industriellen Bauens und Baustoffentwicklungen im Vordergrund des Interesses.
Sie werden in Angeboten zum modularen Bauen und zu neuen Werkstoffen thematisiert und in spezifischen Entwurfsthemen in ihrer Anwendung erprobt.
Die Forschungsarbeit des Lehrstuhls konzentriert sich auf zeitspezifische Fragestellungen. Mit Industriepartnern, Spezialisten aus der Hochschule und Forschungsinstituten werden zukunftsweisende Kombinationen im konstruktiv-technischen Bereich erarbeitet.
Architecture is about construction and requires knowledge of building materials and their production. These in turn influence the form that buildings can take.
The focus of teaching at the Chair lies in communicating these functional and technical design principles within architectural studies and in exploring key aspects of these in research project.
In the required elective on Building Construction, Building Materials and Design in the third semester, students are taught the fundamental principles of building technology by means of a didactic presentation method.
Theoretical courses and their practical application in group work helps students develop teamwork skills, and the integral teaching concept communicates the potential of working together with consulting engineers.
Research at the Chair concentrates on issues of current importance. Together with partners from industry, specialists from other parts of the university and research institutes, the Chair researches and develops forward-looking ways of combining construction solutions with technology.
Florian Musso Sekretariat Office Management Elke Kabitzsch Wiss. Mitarbeiter Technical Staff Johann Weber. Protohaus Studierende des 3.
Semesters entwarfen in den Pflichtmodulen Entwerfen, Baukonstruktion und Baustoffkunde des Bachelorstudienganges ein prototypisches Haus.
Die Projekte wurden in Gruppen von je vier Studenten erarbeitet. The building is a small dwelling for four persons of straightforward technical, functional and spatial complexity and serves as a vehicle for learning the fundamental principles and interdependencies of building construction and material science.
In cooperation with the Chairs of Structural Design and Climate Responsive Design, students also examined the structural principle and building services in detail.
Each project was worked on in groups of four students. By presenting details in the sequence of their construction, complex details are broken down into an easy to follow form and made easier to comprehend.
Through the ongoing production of these details and their presentation on a freely accessible online platform, students help develop a growing resource for other students.
The course is about both teaching and learning and provides students with an intuitive compendium as well as a forum for knowledge production www.
Im Jahre ist er durch einen Brand vernichtet worden und wurde durch das heute noch vorhandene Park-Cafe ersetzt. It served as a showcase of the constructional and technical capabilities of Bavaria at the time and was used for exhibitions and events.
In this special design project, the author explored the contemporary potential of a freely usable inner-city space in a central location in the city and developed a corresponding design for its construction.
Working together with the Chairs of Structural Design and Climate Responsive Design, the author developed a detailed proposal for the structure and building services.
As in , the building is situated in the Old Botanic Gardens. Streifenfundament Stahlbeton Querschnitt 1x2m Fallrohr, innenliegend Rinne, Blech Abdeckung Rinne, Flachstahl.
Projektleitung Director Christian Bodensteiner Projektpartner Project Partners Fraunhofer ISE Fa. The weak point in wall systems is now the junction between the window frame and the wall and insulation.
This research project at the Chair investigates how a range of related requirements can be incorporated into a multi-functional window element.
Optimizing Double Wall Precast Concrete Elements This research project examines the optimization of the external envelope of reinforced concrete structures with facing concrete external surfaces.
The aim is to develop and evaluating new construction methods that reflect modern-day concerns such as the need for good insulation, the sustainable use of resources, the reduction of wall thicknesses and minimal consumption of resources, as well as the ability to quickly erect buildings in inner-city locations with accordingly high land costs.
The research project focused in particular on optimizing insulation thickness and achieving good facing concrete surfaces.
The Chair of Building Realization and Robotics extends the traditional core competences of design and building, broadening the spectrum of activities of future graduates and professionals, and creating new employment opportunities.
Located at TUM and embedded in the Bavarian high-tech cluster, the Chair functions as an incubator for the development of socio-technically integrated construction and building technologies.
Teaching and research cooperations between the TUM and leading universities around the world as well as industry collaborations show that our core competencies in construction automation and robotics are highly regarded.
The steady increase in research activity on assistive technologies for an ageing society as part of the Human-Ambient-Technologies Laboratory shows that TUM is able to create and identify future research directions.
Tokio Thomas Bock Sekretariat Office Management Rebekka Schlenker Wiss. Mitarbeier Research Associates Bogdan Georgescu, Dr. Thomas Linner, Alexander Liu Cheng, Wen Pan Tech.
Mitarbeiter Technical Assistant Andreas Bittner. The students, academics, and researchers were actively involved in the publication and discussion during the workshop session.
Teilnehmende Dozenten und Forscher Participating Lecturers and Researchers Thomas Bock, Kazuyoshi Endo, Christos Georgoulas, Soonwook Kwon, Seong Ki Lee, Thomas Linner, Isaac Shabtai.
International Cooperation In cooperation with the Chair, Professor Kazuyoshi Endo from the Kogakuin University conducted valuable research on advanced construction management economics.
The research project also addressed the problem of how to establish an automated on-site assembly system. Professor Isaac Shabtai from the Ben Gurion University of Negev carried out research with the Chair on the topic of graph theory for industrialized reconstruction sponsored by the German Israeli Fund GIF.
The Chair has also cooperated with teaching and research on the topic of construction robotics at Oulu University and the ETH Zurich, and conducted research on Ambient Assisted Living AAL and aging society research projects together with the EPFL, TUE, DTU under the EuroTec Alliance.
In China the Chair teaches the Advanced Construction Management course at Qing Hua University, and in Japan, the Chair has been involved in the research project on design innovation for community robotics life style at Osaka Institute of Technology.
The Chair has also collaborated with the Russian Academy of Architecture and Construction Sciences and engaged in projects tackling the increasingly important issues of demographic change and refurbishment of existing building stock in Russia.
On 29 May , Professor Bock was awarded an honorary doctorate degree from the Southwest State University in Kursk, Russia.
Cambridge Handbooks on Construction Robotic Series In , the Chair was commissioned by the Cambridge University Press to publish a series of handbooks that focus especially on the field of implementation of automation and robot technology for the future construction industry.
Volumes 1 and 4 will be published by December Joint research projects, scientific publications and Prof T. Bock receiving his new honorary doctorate degree from Southwest State University in Kursk, Russia.
The Master of Science in Advanced Construction and Building Technology ACBT was established in and has been devised to offer solutions to the aforementioned challenges.
The future construction sector will expand into new business fields by absorbing advanced technologies from various disciplines.
Its success will depend on its innovation capability across the complete value chain of construction engineering and the built environment by embedding ICT, automation, robotics and services.
This approach will create new markets, qualifications, skills and professions. It responds to a fundamental shift in the professional mainstream away from the traditional core competences of design and building.
Civil engineers, economists, lawyers, and other professions are increasingly taking over areas that architects were formerly the responsibility of architects.
New technologies are effecting a paradigm shift towards new job profiles, in turn creating new employment opportunities. Conventional competences transform into border competences such as life support systems, mechatronics, ICT and microsystem technology, embedded ambience environments , sustainable energy design and engineering, real time controlling, innovation management, facility transformation management, etc.
To achieve this, the course expands into disciplines such as economics, management, mechanical and electrical engineering, computer science, sociology, and medicine by incorporating aspects of these fields into innovative ambient and construction technology.
Future graduates will be trained for cross-disciplinary thinking and action and will therefore be able to adjust flexibly to changing professional environments.
Students engage in a variety of projects that are conceived according to a systemic procedure and lead them through the course contents.
ACBT, Student project example: Process and assembly design for automated robotic on-site construction. Human Ambient Technologies The Chair of Building Realization and Robotics research,has been conducting research together with numerous industrial partners for over 6 years on solutions that strengthen the independence, efficiency and productivity of older people through the integration of assistive systems for living environments.
In the LISA research project Living Independently in South Tyrol Alto-Adige, funded by the Province of Bolzano, , intelligent walls were designed that assist older people in everyday life by seamlessly integrating mechatronic systems.
The PASSAge project Personalized Assistance and Service Systems in an Aging Society, funded by the Federal Ministry of Science and Research, also focused on the topic of AAL.
Such projects provide a valuable opportunity for researchers to develop concepts for robotic systems that are discreetly incorporated into home environments and help elderly people to independently perform their Activities of Daily Living ADL.
In , the Chair focused extensively on the USA2 project funded by the Federal Ministry of Science and Research.
As the project initiator, the Chair assembles the project partners and organizes project consortiums. The Chair also conducted a series of studies on different scenarios of technology accessibility and feasibility for the elderly target groups.
Mainzer and Prof Maasen from the MCTS drew up a compatible business and society model focusing on the usability, medical and gerontological aspects of the user and service provider.
In addition, the project also involves the robotic system JACO and the company ERGOSURG. Currently the Chair is working closely with potential target groups to evaluate and optimize the usability of Human Ambient Technologies in real case studies with the first test subjects in the Construction Robotics Laboratory.
Field study and implementation of the cloud manufacturing workspace of the USA2 project in the Construction Robotics Laboratory.
Energieeffizientes und nachhaltiges Planen und Bauen Energy Efficient and Sustainable Design and Building. Im Zusammenhang mit dem weltweiten Ressourcenverbrauch kommt dem Bauwesen eine tragende Rolle zu.
Hinzu kommt der Energieaufwand bzw. Ein fundamentales Umdenken im Hinblick auf den Einsatz von Ressourcen, wie Energie, Material, Wasser u. The solution to the problems that entail lies in recognizing the boundaries of the ecological capacity of our planet and developing strategies for action that ensure the sustainable use of the resources at our disposal.
Other serious issues likewise need addressing, including the reduction of environmental pollution, climate change, health hazards and the rapid decline in biodiversity.
Building construction plays an important role in the global consumption of resources. The supply of energy to buildings alone accounts for a third of global carbon dioxide emissions.
In addition, the construction, maintenance and later demolition of buildings also requires energy and results in carbon emissions.
It is therefore urgently necessary to fundamentally reconsider the use of resources such as energy, materials and water for the construction, operation and demolition, disassembly of buildings in order to create a sustainable basis for living on earth.
The aim of the work conducted at the Chair is to develop new solutions and approaches that can contribute to bringing about these changes in our built environment.
Werner Lang Gastprofessuren Visiting Professorships Dr. Michael Braungart Cradle to Cradle C2C Sekretariat Office Management Jutta Bergmann, Jeanette Kralisch Wiss.
Mitarbeiter Research Associates Christina Dotzler, Michael Huith, Andreas Kacinari, Daniel Kierdorf, Simone Linke, Simone Salfner, Patricia Schneider, Katja Schwering, Jochen Stopper, Mark Windeknecht.
Juli - September betrieben. From July to September it provides food and simple accommodation for up to 70 people, usually climbers and mountaineers.
Over time water infiltration and melting permafrost has damaged the existing hut to such an extent that it is no longer structurally sound.
The design studio seeks to find new concepts for a somewhat smaller replacement building in the immediate vicinity of the existing building that is more tailored to current needs.
The particular challenges of the project are the exposed location, the restricted access to the building by a footpath only , the sometimes extreme climatic conditions and the short construction period.
New concepts must therefore be appropriate to the location and its conditions and require as little energy and material resources as possible while still providing a degree of comfort for the guests.
The design studio operated as an integrated design course together with students from the engineering department. Students worked in teams on developing architectonic and spatial concepts on the one hand and energy and sustainability concepts on the other to achieve a positive ecobalance.
All of the participants developed integrated concepts that took into account the environmental impact of the construction, the operation of the building and its eventual demolition.
This process formed the basis for the development of architectural designs for a new hut. In this manner, building services, energy concepts and sustainability concerns are integrated into ambitious and interesting architecture.
Hakuna Matata The innovative Cradle to Cradle design concept has the potential to create buildings that provide living space in combination with a net positive contribution to the environment, rather than being an environmental burden that will need to be disposed of responsibly.
The positive aims of Cradle to Cradle are also compatible with those of Hakuna Matata Deutschland e.
One of the main objectives of the project is to improve educational opportunities and medical care provision by non-religious organizations. To this end, a site of approximately 1.
The goal of the semester was to develop a holistic design for a school and a clinic to be realized in pending funding and, in addition, to develop innovative, exemplary buildings and structures, which have a positive energy and water balance.
The specific challenge of the design project is the need to work in comparatively extreme climatic conditions droughts and rainy season and the complex constraints resulting from the need to use only locally available building materials and building techniques, while working within the financial constraints of a small nonprofit organisation.
The project design must reflect the many aspects of energy-efficiency and sustainable building design and be based on cradle-to-cradle principles.
Following on from these criteria as well as functional and structural considerations, an architecturally sound and realizable solution should be developed.
Am Wettbewerb nehmen 20 Teams teil, davon sind vier international. Innerhalb des Wettbewerbs wird das komplette Design nach einem strukturierten Punktesystem bewertet.
Solar Decathlon The Solar Decathlon, initiated by the US Department of Energy, is a competition where students focus on architecture, sustainability and energy efficiency factors.
The objective of the competition is to design a self-sufficient building that fulfills the standards of habitation in The primary requirement is that all electrical power has to come from self-produced solar electricity.
Twenty teams compete in the Decathlon, four of which are international. Along with prestige universities like Yale and Stanford, the TUM was invited to participate in close cooperation with the University of Texas at Austin.
The competition is graded using a points system where the teams are evaluated for the entire design. Besides the aesthetics of the design, affordability, comfort zone and e-moblity are critical aspects of the competition.
Jurysitzung Advisory Group Werner Lang, TUM Hermann Kaufmann, TUM Michael Braungart, EPEA Hamburg Stefan Winter, TUM Mohamad Araji, U Manitoba Petra Liedl, UT Austin Michael Garrison, UT Austin Honza Zemlicka, TU Prague Adam Pyrek, UT Austin Jennifer Night Thomas Auer, TUM Michael Gatto, ACDDC Manfred Hegger, TU Darmstadt Julia Schauer, Bartenbach von links nach rechts from left to right Foto: Astrid Eckert.
The Professorship cooperates actively with industry and associations such as the DGNB German Sustainable Building Council so that students have the opportunity to learn and acquire skills from real-world situations, for example in order to objectively assess the sustainability of their design proposals.
In the field of research, the Professorship works at different scales and in different contexts. At the other end of the scale, we work on building envelopes that respond autonomously and dynamically to changing environmental conditions.
Tina Wolf Gastdozent Visiting Lecturer Philipp Eversmann TUM Agenda Lehre Gastdozent Sekretariat Office Management Rebekka Schlenker Wiss.
Mitarbeiter Research Associates Johannes Ingrisch, Philipp Molter, Moritz Mungenast, Hans-Christian Wilhelm.
Baukonstruktiv entwickelt der Entwurfsverfasser basierend auf bestehenden Vorbildern von Schalenkonstuktionen aus Beton eine Synergie mit der Integration von haustechnischen Komponenten.
A food area should also be incorporated that can provide space for small restaurants and for passing the time. The site can be accessed from all sides and is bounded by three major traffic arteries.
These are all good prerequisites for urban vibrancy. The design project builds on the historical model of a market hall divided into three aisles.
A design concept was then developed that defined the precise requirements of the units for the different functions, including an exhibition area, a market hall and restaurant areas.
The different ways these can be used and the different requirements that the space can serve at different times of day, days of the week and seasons, were then woven into a coherent spatial configuration.
A new urban volume results that occupies a prominent position within its immediate built environment. For the construction, the designer likewise followed historical precedence, creating a shell structure made of concrete that works in unison with the components of the building services.
For example, the air-conditioning is incorporated into the shell structure and uses the mass of the build to precondition the indoor air supply.
Transparent protective enclosures The aim of the project was to develop, trial and evaluate a construction system using transparent membranes that can be used to enclose cultural artifacts during the winter months.
The enclosure should be as transparent as possible so that the artifact can be fully appreciated and at the same time create an internal climate that preserves its material substance.
The development focused on a modular and scalable construction to keep costs down for the later serial production of the elements.
For external exhibits such as statues and sculptures, the main damaging effects are hygrothermic strain, alternating frost-thaw cycles and chemical solubility resulting from airborne pollution.
The first two mechanisms are most pronounced when the temperature and humidity fluctuates within or around the object.
The concept for the transparent enclosure aims to provide an optimal interior climate conducive to preserving the object by reducing the level of moisture and frost-thaw susceptibility.
Maximum transparency to ensure the object can be fully appreciated coupled with an optimal thermal climate to preserve the substance of the object.
When designing in a rural context, one can often draw on existing regional and historical timber building traditions for inspiration, but in an urban context one has to consider what kind of timber architecture is appropriate for the city.
Aside from soundproofing and fire safety aspects, this extends ultimately to the appearance of the building as an expression of its timber construction.
The Kindergarten in Orangefarm in South Africa, built in , marked the beginning of a series of projects built in Africa.
Since then we have undertaken a project in Africa every year. All of these buildings are designed by students and subsequently built on site together with local workers.
Projects of this kind, and the extreme conditions under which they are built, call for unconventional design solutions and make students aware of the need to design constructions that are simple to build.
Hermann Kaufmann Gastdozent Visiting Lecturer Philipp Eversmann TUM Agenda Lehre Gastdozent Sekretariat Office Management Cornelia Lutz-Mastrojanni Wiss.
Since then it has travelled to Ljubljana, Bratislava and Klagenfurt. Youth Club next to the Old North Cemetery in Munich West of the Old North Cemetery on a grassy site next to the football field, a youth club for children and young adults is to be built.
The different clearance and construction heights presented a challenge when selecting the choice of construction elements.
Verschiedenste Holzbauweisen werden innerhalb eines Projektes angewendet, je nach Sinnhaftigkeit oder architektonischem Anspruch.
Modern timber construction, however, no longer adheres to this strict standardization. Sometimes quite different timber construction principles are employed within a single project, depending on the purpose or architectural intention.
As a consequence we have devised a new approach to teaching timber construction principles that accommodates a more creative approach to the construction elements.
These give architects greater freedom to use their creative imagination, and reflects modern approaches to construction design.
A further important part of the handbook is devoted to the building envelope. Here we provide a detailed introduction to the physical properties and interdependencies of the different layers of the building envelope and analyze their diverse functional characteristics.
Auslober Organizer VDI-Gesellschaft, BDA, DGNB. Holzmischbauweise errichtet werden. Der Entwurfsbeitrag sollte die spezifischen Eigenschaften und Herausforderungen des nachhaltigen Baustoffes Holz aufnehmen und in gestalterischer, konstruktiver und statischer Hinsicht abbilden.
Architecture competition: A Sustainable Wood Hotel for Berlin The project called for the design of an at least four-story high hotel with a timber or a hybrid timber structure, on a site in the center of Berlin adjoining the River Spree.
The design project should exploit the specific properties of the sustainable building material and highlight its qualities and challenges in its design, construction and structural concept.
Neben der Untersuchung der typischen Bestandstypologien, Raumfolgen und Konstruktionen wurden auch der unterschiedliche Umgang mit der bestehenden Substanz dargestellt.
Aside from investigating the typical existing typologies and their spatial structure and construction, the study also examined how the structures have been used since.
The study of these traditional, sizeable buildings included making drawings that document the condition before and after conversion.
These will be presented in a book publication of the same name which is planned for the coming year. Das Spannungsfeld zwischen hoch entwickelten digitalen Entwurfsmethoden und einer einfachen und effizienten Bautechnik durch Multiplikation kleinteiliger Elemente wurde hier ausgetestet.
They are to be made of locally available bamboo. The project explored the field of tension between the high-tech digital design methods and the simple and efficient building technology achieved by multiplying and combining many small-scale elements.
It represents an exemplary alternative to the standard type of school building in Zambia and provides much better learning conditions using a similar amount of material and labor.
It can be used in combination to create larger schools, or be built, as in this case, as an extension to an existing school.
The classrooms in the school are oriented inwards towards one another to create an internal courtyard, giving the school building an introverted, concentrated sense of enclosure.
This results in an attractive outdoor area which can be used for school activities and events. The robust external walls enclose a simple, lockable courtyard complex.
The walls are perforated by tall narrow slots that provide light but are narrow enough to prevent break-ins. The classrooms therefore open directly onto the internal courtyard and despite their small size have a remarkably large feeling.
The simple construction of the shed roofs, which incline on both sides towards the courtyard, along with the entrance walls that extend from them following the line of the roof, reinforces the sense of inward orientation of the building.
The expressive form of the architecture gives it a character that denotes its purpose and makes the school an immediately recognizable building in the village.
Aussenansicht Exterior view Foto: Matthias Kestel Schulhof School courtyard Foto: Matthias Kestel. Die Konstruktion besteht aus ca. Building in Africa: A School Hall in Kibwigwa, Tanzania To properly fulfill its function as a school, the school in Kibwigwa required an assembly hall which could also be used as a refectory for the schoolchildren.