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180212s2018 nyu ob 001 0 eng |
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|a 2018006646
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|a 1100934306
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|a 9781536131222
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|a 1536131229
|q (electronic bk.)
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|z 9781536131215
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|z (OCoLC)1100934306
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|2 23
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|a UAMI
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|a Solar collectors (Nova Science Publishers)
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|a Solar collectors :
|b applications and performance /
|c Martín Picón-Núñez (University of Guanajuato, Guanajuato, Mexico), editor.
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|a Hauppauge, New York :
|b Nova Science Publisher's, Inc.,
|c 2018.
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|a 1 online resource
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|a text
|b txt
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|a computer
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|a online resource
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|a Energy science, engineering and technology
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|a Includes bibliographical references and index.
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|a Print version record and CIP data provided by publisher.
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|a Intro; Dedication; Contents; Preface; Chapter 1; Solar Collectors: Types and Applications; Abstract; Introduction; Solar Thermal Devices; Stationary Solar Collectors; Evacuated Tube; Heat Pipe; All-Glass; All-Glass with Coaxial Fluid Conduit; U-Shaped; Metal-Glass Evacuated Tubes; Flat Plate Solar Collectors; With Glass Cover; Unglazed Solar Collectors; Non-Imaging Compound Parabolic Concentrators; Compound Parabolic Collector (CPC); Tracking Solar Collectors; Imaging Concentrators; Parabolic Trough Collector (PTC); Linear Fresnel Reflector (LFR); Parabolic Dish Reflector (PDR)
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|a Central Receiver ConcentratorNovelties and Trends in Solar Collector Technology; Conclusion; References; Chapter 2; An Assessment of Solar Collectors Efficiency Factors; Abstract; Nomenclature; Greek Symbols; Introduction; Efficiency Factors of Parallel Plate Collectors; Solar Collector -- Absorbent Cover Type; Solar Collector -- Flooded Plate Type; Heat Transfer Coefficients of Parallel Plate Collectors; Method Used for Comparison of Solar Collectors; Results and Discussion; Conclusion; Appendix A. Transmittance of Transparent Covers
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|a Appendix B. Iterative Calculation of Parameters for the CollectorsReferences; Chapter 3; A Parameter Design Tool for Solar Collectors; Abstract; Nomenclature; Greek Symbols; Introduction; Thermal Model of Evacuated Tube Solar Collectors of the Dewar Type; Analytical Model; Useful Heat; Heat Losses in the Tubes; Temperature Profile; Energy Balance in the Header; Thermal Efficiency; Norms for Testing Methods; Graphical Design Tool; Thermal Model for Flat Plate Solar Collectors; Analytical Model; Model Validation; Conclusion; References; Chapter 4
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|a Enhancement Techniques for Solar Energy TechnologiesAbstract; Solar Technology Systems; Application of Solar Technology Systems; Power Generation Systems; Hybrid Solar Photovoltaic (PVT) Power System; Hybrid Concentration Solar Power (SCP) Technology System; Hybrid Solar Updraft Tower (SUT) Power Technology; Heating and Cooling System; Enhanced Solar Water Heating System; Solar Collector Systems; Flat Plate Solar Collectors (FPSC); Integral Collector Storage (ICS); Enhanced Solar Air Heating Technology Systems; Enhancement Methods of Solar Air Heating Technology; Solar Water Desalination
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|a Enhanced Solar Still SystemsConclusion; References; Chapter 5; Thermo-Hydraulic Performance of Solar Collectors; Abstract; Introduction; Methods; Experimental Setup; Numerical Simulations; Boundary Conditions and Mesh; Thermo-Hydraulic Models; Boussinesq Approximation; Variation of Properties with Temperature; Results and Discussion; Buoyancy Effect; Temperature and Velocity Distribution in the Manifold; Temperature and Velocity Vectors inside the Tubes; Velocity and Temperature Profiles at the Inlet and Outlet of the Tubes; Water Temperature at the Outlet of the Solar Collector Manifold
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|a Picón-Núñez, Martín,
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|d Hauppauge, New York : Nova Science Publisher's, Inc., 2018
|z 9781536131215
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