Listing 1 - 4 of 4 |
Sort by
|
Choose an application
This publication presents contributions from the symposium ‘Constructive Futures – Beyond Concrete’, which marked the start of the academic year 2021/2022 at the School of Architecture of the University of Applied Sciences and Arts Northwestern Switzerland. Its aim is to explore constructive and future-oriented solutions beyond our professional comfort zones and provide the opportunity to reflect on where the construction and planning industry currently stands. Why does a fundamental change seem inevitable? With an eye towards our limited resources, we must also rethink approaches and nurture a design culture that finds new ways to deal with building materials.
691(03) --- 72:574 --- Bouwmaterialen ; milieubewuste ; natuurlijke --- Duurzame architectuur ; materialen --- Bouwmaterialen ; naslagwerken --- Architectuur en ecologie ; architectuur en milieu --- Typologie des matériaux --- 691 --- 574 --- 691.1 --- Bouwmaterialen (architectuur) --- Ecologie & bioverscheidenheid --- Bouwmaterialen van organische oorsprong --- Construction --- Constructions --- Développement durable. --- Matériaux. --- Reconversion. --- Building materials. Building technology --- Structural parts and elements of building --- concrete --- construction [discipline] --- building materials
Choose an application
L'architecture est responsable d'un tiers des émissions mondiales de carbone, de la consommation d'énergie et de la production de déchets. Cet ouvrage propose d'y remédier en changeant radicalement la manière d'envisager l'architecture. Les auteurs (universitaires) décrivent diverses méthodes d'analyse et de conception pour transformer les contraintes en atouts, en prenant en compte la totalité du cycle de vie des matériaux et en particulier l’énergie grise utilisée pour les fabriquer puis les recycler.
Sustainable architecture --- 504 --- 691 --- 72:574 --- Duurzaam bouwen --- Architectuur en ecologie ; 21ste eeuw --- Bouwmaterialen ; milieubewuste --- Eco-architecture --- Environmentally conscious architecture --- Environmentally friendly architecture --- Green architecture --- Green building design --- Green design (Buildings) --- Sustainable design (Buildings) --- Architecture --- Sustainable design --- Duurzame ontwikkeling --- Bouwmaterialen (architectuur) --- Architectuur en ecologie --- Bouwmaterialen --- Environmental protection. Environmental technology --- Building materials. Building technology --- sustainable architecture --- building materials --- Coût de la construction --- Ecoconception --- Conception architecturale --- Construction écologique --- Matériau
Choose an application
69.059 --- 69.504 --- 69.504 Building and the environment. Sustainable building --- Building and the environment. Sustainable building --- 69.059 Maintenance of buildings. Damage. Collapse. Dilapidation. Repair. Strengthening. Conversion. Displacement. Reconstruction --- Maintenance of buildings. Damage. Collapse. Dilapidation. Repair. Strengthening. Conversion. Displacement. Reconstruction --- Préservation du bois --- Technologie du bois --- Produit dérivé du bois --- Propriété technologique --- Bouwmaterialen ; milieubewuste ; nieuwbouw ; renovatie --- Stuurgroep Experimenten Volkshuisvesting (SEV) ; Rotterdam --- Bouwmaterialen ; handboeken --- Structural timber --- wood preservation --- Wood technology --- Wood products --- Building construction --- Mechanical properties --- technical properties --- Architectuur en milieu --- 691(035) --- 72:574 --- Architectuur en ecologie
Choose an application
ETFE foil has recently become an important material for the cladding of technologically sophisticated and innovative buildings. This material is very thin and lightweight and, when used in air-filled cushion assemblies, has enormous strength and a range of adaptive environmental attributes. ETFE cushion enclosures became known primarily through Grimshaw Architects' Eden Project and Herzog + de Meuron's Allianz Arena, and they are being used on the spectacular swimming stadium for the 2008 Olympic Games in Beijing, the largest ETFE building envelope in the world so far. This book is conceived as an in-depth introduction to the characteristics of ETFE and its applications in construction. Project examples explore in detail the specific characteristics of ETFE building skins in the areas of structural behavior, light transmission, insulation, acoustics, fire engineering and environmental modification. In funktional und technologisch anspruchsvollen und innovativen Gebäudeentwürfen hat die Verwendung von ETFE-Folien in jüngster Zeit große Bedeutung erlangt. Dieses Folienmaterial ist von erstaunlicher Dünnheit bei enormer Reißfestigkeit und ist zum Teil leichter als die Luft, die es umschließt. Bekannt geworden ist das Material vor allem durch das Eden Project von Nicholas Grimshaw und die Allianz Arena von Herzog & de Meuron. Derzeit im Bau ist das spektakuläre Schwimmstadion für die Olympischen Spiele 2008 in Beijing - die bislang weltweit größte ETFE-Struktur.Das Buch ist als fundiertes Grundlagenwerk konzipiert, das sowohl Materialeigenschaften wie technologische und konstruktive Verwendungsmöglichkeiten grundsätzlich und umfassend vermittelt. Ausführlich geht die Autorin auf die Spezifika von ETFE in Bezug auf Lichtdurchlässigkeit, Dämmeigenschaften, Akustik, Brandschutz und ökologische Verträglichkeit ein. Ebenso stellt sie anhand von zahlreichen Projektbeispielen Entwurfslösungen vor.
69 --- 691 --- 691.8 --- EFTE --- 691.17 --- 72.039 --- 692(03) --- 692.232 --- 693.8 --- Architectuur materialen alternatieve --- Onderdelen en constructie-elementen van gebouwen --- Architectuur industrieel design 21ste eeuw nieuwe materialen --- Gevelconstructies buitenmuren details --- Lichte constructies lichtgewicht constructies --- Gevelbekledingen 21ste eeuw EFTE --- Wanden muren vloeren plafonds daken gevels --- Ruimtelijke constructies overspanningen kapconstructies --- Bouwmaterialen milieubewuste --- Bouwmaterialen kunststoffen --- Bouwtechniek --- Bouwmaterialen (architectuur) --- Synthetische materialen --- Kunststof --- Macromolecular materials. Rubbers, plastics etc. --- Hedendaagse architectuur. Bouwkunst sinds 1960 --- Constructie-elementen van gebouwen naslagwerken --- Constructie-elementen van gebouwen buitenmuren bekleding --- Architectuurgeschiedenis 2000 - 2050 --- Staalconstructies. Metaalconstructies --- Building materials. --- Fluoropolymers. --- 72.039 Hedendaagse architectuur. Bouwkunst sinds 1960 --- 691.17 Macromolecular materials. Rubbers, plastics etc. --- Fluoropolymers --- Polyethylene terephthalate. --- Plastics in building. --- Building materials --- Architectuur ; industrieel design ; 21ste eeuw ; nieuwe materialen --- Architectuur ; materialen ; alternatieve --- Bouwmaterialen ; kunststoffen --- Bouwmaterialen ; milieubewuste --- Gevelbekledingen ; 21ste eeuw ; EFTE --- Gevelconstructies ; buitenmuren ; details --- Lichte constructies ; lichtgewicht constructies --- Ruimtelijke constructies ; overspanningen ; kapconstructies --- Wanden ; muren ; vloeren ; plafonds ; daken ; gevels --- Fluorinated polymers --- Fluorine plastics --- Fluorocarbon polymers --- Fluoroplastics --- Organofluorine compounds --- Polymers --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Materials --- Constructie-elementen van gebouwen ; naslagwerken --- Constructie-elementen van gebouwen ; buitenmuren ; bekleding --- Architectuurgeschiedenis ; 2000 - 2050 --- Macromolecular materials. Rubbers, plastics etc --- Plastic building materials --- Plastics --- Building plastics industry --- Ethylene terephthalate polymer --- Mylar (Trademark) --- PET (Chemical) --- Terephthalic acid-ethylene glycol polymer --- Phthalate esters --- Polyesters --- Thermoplastics
Listing 1 - 4 of 4 |
Sort by
|