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Solar energy --- Solar engines --- Énergie solaire --- Moteurs solaires --- Engines
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energie (technologie) --- zonne-energie --- Relation between energy and economics --- natuurlijke energiebronnen --- Solar energy --- Solar power --- Force and energy --- Renewable energy sources --- Solar radiation --- Solar energy. --- Énergie solaire.
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Énergie solaire. --- Chaleur --- Transmission. --- 621.47 --- Engines using radiant energy --- 621.47 Engines using radiant energy --- Énergie solaire. --- Thermodynamique --- Thermodynamics --- Combustibles --- Energie solaire --- Thermodynamics. --- Transfert de chaleur
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Solar energy --- Energie solaire --- 620.91 --- Energy resources in general. Natural sources of energy --- 620.91 Energy resources in general. Natural sources of energy --- Énergie solaire. --- Énergies renouvelables --- Capteurs solaires --- Solar energy. --- Solar collectors. --- Énergie solaire. --- Énergies renouvelables
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In vielen Ländern trägt die sommerliche Raumklimatisierung maßgeblich zum Energieverbrauch von Gebäuden bei. Eine vielversprechende Möglichkeit zur Reduktion ist die Nutzung von thermischer Solarenergie in Systemen der solar unterstützten Klimatisierung. Der große Vorteil liegt dabei in der weitgehenden Zeitgleichheit von Kühllasten und Solargewinnen, zumindest im saisonalen Maßstab. Allerdings wurden bis heute weltweit nur vergleichsweise wenige Systeme installiert, und es liegen nur geringe Erfahrungen hinsichtlich Auslegung und Betrieb solcher Anlagen vor. Das Ziel dieser mittlerweile in der 3. Auflage vorliegenden Handbuchs ist es, zur Beseitigung dieses Mangels beizutragen und den Planer bei der Auslegung von Anlagen der solar unterstützten Klimatisierung, die thermische Solarkollektoren als Wärmequelle nutzen, zu unterstützen. Our energy system faces a fundamental transformation and renewable energies will play a dominant role in the future energy supply. One of the promising solutions is the use of solar thermal energy in buildings, for cooling, heating and domestic hot water preparation. Solar thermal systems for providing heat and cold to industrial processes show a high potential, too. In the last decade, the application of solar driven cooling systems achieved a significant progress. Steps forward have been taken in the design of system concepts to specific needs and in more reliable and efficient operation of the installed plants. New systems are available on the market and cover a broad range of cooling capacities and driving temperatures. This handbook provides an overview on the various solutions to convert solar heat into useful cooling, reports about experiences made with realized installations and gives support in the design process. Its use will strongly contribute to achieve high quality solar cooling systems which provide significant energy savings and fulfil the user's requirements in a safe and reliable way.
Solar air conditioning. --- Sustainable construction --- Solar energy --- Photovoltaic power systems. --- Building-integrated photovoltaic systems --- Architecture and energy conservation --- Buildings --- Energy conservation --- Air conditioning --- Construction durable --- Énergie solaire --- Systèmes photovoltaïques. --- Électrification photovoltaïque. --- Constructions --- Économies d'énergie --- Climatisation --- Equipment and supplies --- Appareils et matériel.
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zonne-energie --- kabels --- mechanische technologie --- Relation between energy and economics --- Solar energy. --- Heat --- Energie solaire --- Chaleur --- Transmission. --- Transmission --- Solar energy --- 621.47 --- -Solar energy --- Solar power --- Force and energy --- Renewable energy sources --- Solar radiation --- Electromagnetic waves --- Physics --- Cold --- Combustion --- Fire --- Temperature --- Thermochemistry --- Thermodynamics --- Engines using radiant energy --- 621.47 Engines using radiant energy --- Heat transfer --- Thermal transfer --- Transmission of heat --- Energy transfer --- Énergie solaire. --- Transfert de chaleur --- Heat - Transmission --- Énergie solaire.
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zonne-energie --- nuclear physics --- Thermodynamics --- Nuclear physics --- Nuclear energy --- Solar energy --- Energie solaire --- Periodicals --- Périodiques --- Solar engines --- Énergie solaire --- Moteurs solaires --- #ANTIL9603 --- #ANTIL9508 --- #TS:WDEP --- #TS:WMAG --- 621 --- Mechanical engineering in general. Nuclear technology. Electrical engineering. Machinery --- Astrophysics --- Energy --- Energy Conservation & Alternate Energy Sources --- Energy Engineering --- Engineering --- Instrumentation --- Metrology --- Physics --- Environmental Sciences --- Mechanical Engineering --- Energy. --- Engineering. --- Physics. --- Environmental Sciences. --- 621 Mechanical engineering in general. Nuclear technology. Electrical engineering. Machinery --- thermodynamica --- kernenergie --- Journal --- 621 Algemene mechanische bouwkunde. Nucleaire technologie. Electronica. Machinebouw --- Algemene mechanische bouwkunde. Nucleaire technologie. Electronica. Machinebouw --- Solar energy - Periodicals --- Solar engines - Periodicals
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577.355 --- 620.95 --- Biomass energy --- Bio-energy (Biomass energy) --- Bioenergy (Biomass energy) --- Biofuels --- Biological fuels --- Energy, Biomass --- Microbial energy conversion --- Energy conversion --- Fuel --- Energy crops --- Microbial fuel cells --- Refuse as fuel --- Waste products as fuel --- Biophysics of photosynthesis --- Utilization of biological energy, e.g. from vegetation, animals --- PHY Physiology & Biochemistry --- biochemistry --- biomass --- biotechnology --- photosynthesis --- physiology --- productivity --- 620.95 Utilization of biological energy, e.g. from vegetation, animals --- 577.355 Biophysics of photosynthesis --- Biochemical engineering --- zonne-energiemotoren --- Énergie solaire --- fysicochemie --- Internal combustion engines --- verbrandingsmotoren --- Biotechnology --- Solar energy --- Biotechnologie --- Biotechnologie. --- Énergie solaire. --- Biomass as fuel --- Renewable fuels --- Renewable energy sources --- Énergie solaire.
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architectuur --- zonne-energie --- solar power --- Architecture --- architecture [discipline] --- Relation between energy and economics --- Architecture and energy conservation. --- Dwellings --- Solar energy --- Architecture et conservation de l'énergie --- Habitations --- Energie solaire --- Energy conservation. --- Passive systems --- Economies d'énergie --- Systèmes passifs --- Architecture et rayonnement solaire --- Chauffage solaire --- Énergie solaire --- Constructions --- Économies d'énergie --- 69.03 --- 699 --- 699.86 --- 697.7 --- 504 --- Energie-efficiënte architectuur --- Bouwfysica --- Klimaatontwerp --- Klimaatbeheersing --- Koudebeveiliging --- Warmtebeveiliging --- Zonne-energie --- Duurzame architectuur --- Duurzaam bouwen --- Passiefhuizen --- Passiefwoningen --- Ecologisch bouwen --- Architecture et conservation de l'énergie --- Economies d'énergie --- Systèmes passifs --- Architecture and energy conservation --- Energy conservation and architecture --- Energy efficient buildings --- Energy conservation --- Passive solar energy systems --- Architecture et rayonnement solaire. --- Énergie solaire. --- Économies d'énergie. --- Systèmes passifs. --- Zero energy buildings --- Énergie solaire --- Économies d'énergie --- Systèmes passifs.
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"A House in the Sun describes a number of solar house experiments in the 1940s and 1950s. The houses relied on the materials and ideas of modern architecture for both energy efficiency and claims to cultural relevance, and also developed out of a growing concern over global resource limits"--Provided by publisher.
Solar houses --- Solar energy --- House construction --- Architecture, Domestic --- Architecture and energy conservation --- Architecture --- Habitations solaires --- Énergie solaire --- Architecture domestique --- Constructions --- History --- Research --- Environmental aspects --- Histoire --- Recherche --- Économies d'énergie --- Aspect environnemental --- Aspect de l'environnement --- Maisons solaires --- Energie solaire --- Habitations --- Architecture et économies d'énergie --- Construction --- Architecture et économies d'énergie --- solar power --- energy conservation --- Private houses --- solar buildings --- houses --- Environmental protection. Environmental technology --- Relation between energy and economics --- Modernist --- anno 1900-1999 --- Architecture, Western (Western countries) --- Building design --- Buildings --- Western architecture (Western countries) --- Energy conservation and architecture --- Energy efficient buildings --- Architecture, Rural --- Domestic architecture --- Home design --- Houses --- One-family houses --- Residences --- Rural architecture --- Villas --- Building, House --- Construction, House --- Home building --- Home construction --- Residential construction --- Solar power --- Solar-heated houses --- Solar homes --- Sun-heated houses --- Design and construction --- Art --- Building --- Energy conservation --- Dwellings --- Force and energy --- Renewable energy sources --- Solar radiation --- Solar buildings --- Zero energy buildings --- Architecture, Primitive --- Solar houses - History - 20th century --- Solar energy - Research - History - 20th century --- House construction - Research - History - 20th century --- Architecture, Domestic - History - 20th century --- Architecture and energy conservation - History - 20th century --- Architecture - Environmental aspects - History - 20th century --- Énergie solaire --- Économies d'énergie
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