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Energy balance of domestic thermosyphonic solar water heater in Israel with pipes’ insulation according to national standards.
This work introduces a methodology for energy balance of solar water heaters (SWH). It describes the Israeli system for determination of the size of SWH, and calculations of the amount of energy gained by the SWH every month. It analyzes the central forced circulation system for the upper 9 floors of a residential building in Tel Aviv. The balance is for the demand scenario as determined using national statistics (unique to Israel). Electrical backup is 12% of the energy supplied by solar collectors. The balance shows that the energy consumption of hot water actually used is 57% of the total energy, and energy losses are 30%. 13% of the energy is not used as in summer SWH supplies more hot water than required. This work may be useful for a techno-economic evaluation of water heating options and calculations of optimal solutions. It also contains a large volume of useful data and information and can serve as a solar water heating manual or basic material for solar energy study.
Calculations of circulation pump water flow, head, power and energy consumption for 150 liters domestic solar water heater.
Energy balance of domestic thermosyphonic solar water heater with uninsulated pipes, including determination of energy losses and their cost for homeowner and for national economy.
This handbook aims at providing a comprehensive resource on solar energy. Primarily intended to serve as a reference for scientists, students and professionals, the book, in parts, can also serve as a text for undergraduate and graduate course work on solar energy. The book begins with availability, importance and applications of solar energy, definition of sun and earth angles and classification of solar energy as thermal and photon energy. It then goes onto cover day lighting parameters, laws of thermodynamics including energy and exergy analysis, photovoltaic modules and materials, PVT collectors, and applications such as solar drying and distillation. Energy conservation by solar energy and energy matrices based on overall thermal and electrical performance of hybrid system are also discussed. Techno-economic feasibility of any energy source is the backbone of its success and hence economic analysis is covered. Some important constants, such as exercises and problems increase the utility of the book as a text.
ISES Solar World Congress is the most important conference in the solar energy field around the world. The subject of ISES SWC 2007 is Solar Energy and Human Settlement, it is the first time that it is held in China. This proceedings consist of 600 papers and 30 invited papers, whose authors are top scientists and experts in the world. ISES SWC 2007 covers all aspects of renewable energy, including PV, collector, solar thermal electricity, wind, and biomass energy.
This book deals with human factors research directed towards realizing and assessing sustainability in the built environment. It reports on advanced engineering methods for sustainable infrastructure design, as well as on assessments of the efficient methods and the social, environmental, and economic impact of various designs and projects. The book covers a range of topics, including the use of recycled materials in architecture, ergonomics in buildings and public design, sustainable design for smart cities, design for the aging population, industrial design, human scale in architecture, and many more. Based on the AHFE 2016 International Conference on Human Factors and Sustainable Infrastructure, held on July 27-31, 2016, in Walt Disney World®, Florida, USA, this book, by showing different perspectives on sustainability and ergonomics, represents a useful source of information for designers in general, urban engineers, architects, infrastructure professionals, practitioners, public infrastructure owners, policy makers, government engineers and planners, as well as operations managers, and academics active in applied research.