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Feuilles. --- Leaves. --- Leaves. --- Plantes --- Plantes --- Plants --- Plants --- Plants, Heat production in. --- Plants, Heat production in. --- leaf (plant material). --- Production de chaleur. --- Transpiration. --- Transpiration. --- Transpiration.
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Leaves --- Plants --- Plants, Heat production in --- Tables --- Transpiration --- Couverture végétale --- Plant cover --- Feuille --- leaves --- Évaporation --- Evaporation --- Radiation --- Échange d'énergie --- energy exchange --- Tables. --- PHY Physiology & Biochemistry --- energy budgets --- physiology --- Evaporation. --- Leaves - Tables --- Plants - Transpiration - Tables --- Plants, Heat production in - Tables
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Small and micro combined heat and power (CHP) systems are a form of cogeneration technology suitable for domestic and community buildings, commercial establishments and industrial facilities, as well as local heat networks. One of the benefits of using cogeneration plant is a vastly improved energy efficiency: in some cases achieving up to 80-90% systems efficiency, whereas small-scale electricity production is typically at well below 40% efficiency, using the same amount of fuel. This higher efficiency affords users greater energy security and increased long-term sustainability of energy reso
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Cogeneration of electric power and heat --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electrical Engineering --- Combined electric power and heat production --- Electric power and heat cogeneration --- Heat and electric power cogeneration --- Electric power production --- Heat
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"Current, authoritative guide on implementing combined heat and power (CHP) systems that provide electricity and useful thermal energy in a single, integrated system. Covers available technologies, site assessment, system design, installation, operation, and maintenance, with detailed case studies and a glossary. In dual units, Inch-Pound (I-P) and International System (SI)"--
Heating, climatisation, ventilation and air conditioning --- Cogeneration of electric power and heat --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electrical Engineering --- Combined electric power and heat production --- Electric power and heat cogeneration --- Heat and electric power cogeneration --- Electric power production --- Heat
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The cane plant is probably the most efficient utilizer of sun energy for food production, and at the same time provides an equivalent quantity of biomass. The purpose of this book is to set down the unique position of sugar cane in the cogeneration field. Simultaneous with the development of distance-transmission of electricity, sugar cane processors started cogeneration, making use of the cane plant to supply the power for its own processing, and in recent years excess power for export.A broad view of cogeneration in the cane industry, covering the energy available in a crop, the tech
Cogeneration of electric power and heat. --- Sugarcane industry. --- Bagasse industry. --- Biomass energy industries --- Sugarcane industry --- Sugar trade --- Combined electric power and heat production --- Electric power and heat cogeneration --- Heat and electric power cogeneration --- Electric power production --- Heat
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BIOCHEMICAL CYCLES --- HEAT PRODUCTION PHYSIOLOGY --- RESPIRATION --- COMFORT --- BODY TEMPERATURE --- HEAT BALANCE --- HUMAN FACTORS ENGINEERING --- CLOTHING --- CONVECTION --- RADIATION --- HEAT LOSS --- CONDUCTION --- HEAT TRANSMISSION --- POSITION LOCATION --- THERMAL ENVIRONMENTS --- EXPERIMENTAL DATA --- HEAT TRANSFER --- TEMPERATURE MEASUREMENT --- RADIATION TOLERANCE --- ENVIRONMENTAL ENGINEERING --- HEATING --- COOLING --- BIOCHEMICAL CYCLES --- HEAT PRODUCTION PHYSIOLOGY --- RESPIRATION --- COMFORT --- BODY TEMPERATURE --- HEAT BALANCE --- HUMAN FACTORS ENGINEERING --- CLOTHING --- CONVECTION --- RADIATION --- HEAT LOSS --- CONDUCTION --- HEAT TRANSMISSION --- POSITION LOCATION --- THERMAL ENVIRONMENTS --- EXPERIMENTAL DATA --- HEAT TRANSFER --- TEMPERATURE MEASUREMENT --- RADIATION TOLERANCE --- ENVIRONMENTAL ENGINEERING --- HEATING --- COOLING
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Advanced District Heating and Cooling (DHC) Systems presents the latest information on the topic, providing valuable information on the distribution of centrally generated heat or cold energy to buildings, usually in the form of space heating, cooling, and hot water. As DHC systems are more efficient and less polluting than individual domestic or commercial heating and cooling systems, the book provides an introduction to DHC, including its potential contribution to reducing carbon dioxide emissions, then reviews thermal energy generation for DHC, including fossil fuel-based technologies,
Air conditioning. --- Cogeneration of electric power and heat. --- Heating from central stations. --- Central heating plants --- Central station heating --- District heating --- Heating plants --- Combined electric power and heat production --- Electric power and heat cogeneration --- Heat and electric power cogeneration --- Electric power production --- Heat --- Airconditioning --- Buildings --- Conditioning, Air --- Air --- Dampness in buildings --- Refrigeration and refrigerating machinery --- Ventilation --- Air conditioning --- Environmental engineering --- Purification
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