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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 --- Relation between energy and economics --- solar power --- Solar energy --- Heat engineering --- Thermique --- Énergie solaire --- Thermocinétique --- Moteurs thermiques --- Dynamique --- 621.47 --- John A. Duffie and William A. Beckman --- thermodynamica --- technologie --- zachte technologie --- milieu --- ecologie --- energie --- energiebesparing --- 620.9 --- by John A. Duffie and William A. Beckman --- techniek --- verwarming --- elektriciteit --- Zonne-energie --- warmteoverdracht --- warmte --- 697.7 --- Solar power --- Force and energy --- Renewable energy sources --- Solar radiation --- Heat --- Mechanical engineering --- Thermodynamics --- Engines using radiant energy --- Heat engineering. --- Solar energy. --- 621.47 Engines using radiant energy --- Transfert de chaleur --- Thermique. --- Énergie solaire. --- Transfert de chaleur. --- Dynamique.
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The first section details the basic concepts of solar thermal energy processes, with new material on the latest value of solar constant and extraterrestrial spectral distribution; new sections on shading, anisotropic sky models, and utilizability radiation statistics.In the second section, applications for water heating, active and passive building heating, cooling, industrial operations, power generation, solar ponds, and evaporative processes are discussed.The final section offers a practical look at the thermal design of active and passive systems by simulation, correlation, and utilizability methods that is essential to predicting long-term performance and estimation of costs.
Solar energy. --- Energie solaire --- Énergie solaire --- Solar energy --- Mesure --- Measurement --- Capteur solaire --- Solar collectors --- Valeur énergetique --- Energy value --- Échange d'énergie --- energy exchange --- Source d'énergie --- energy sources --- Chauffage --- Heating --- Échange thermique --- Heat transfer --- Analyse thermique --- Thermal analysis --- Modèle de simulation --- Simulation models --- design --- Changement technologique --- technological changes --- Agrotechnology and Food Sciences. Engineering --- Energy --- Solar Energy --- Solar Energy. --- 644.8 --- energie (gez) --- Solar power --- Force and energy --- Renewable energy sources --- Solar radiation
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Climatisation --- Énergie solaire --- Rayonnement solaire --- Thermotechnique --- Thermotechnique
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SOLAR ENERGY --- COMPUTER PROGRAMS --- CALCULATORS --- SOLAR RADIATION --- TRANSMITTANCE --- HEAT EXCHANGERS --- WEATHER --- METEOROLOGICAL DATA --- SOLAR HEATING --- DESIGN --- PASSIVE SOLAR HEATING --- ACCUMULATORS --- COMPUTERIZED SIMULATION --- HEAT GAIN --- MICROCOMPUTERS --- SOLAR ENERGY --- COMPUTER PROGRAMS --- CALCULATORS --- SOLAR RADIATION --- TRANSMITTANCE --- HEAT EXCHANGERS --- WEATHER --- METEOROLOGICAL DATA --- SOLAR HEATING --- DESIGN --- PASSIVE SOLAR HEATING --- ACCUMULATORS --- COMPUTERIZED SIMULATION --- HEAT GAIN --- MICROCOMPUTERS
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