Solar Energy For Agriculture And Industrial Process Heat

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Solar Energy for Agriculture and Industrial Process Heat

Author : United States. Energy Research and Development Administration. Division of Solar Energy
Publisher : Unknown
Page : 108 pages
File Size : 41,5 Mb
Release : 1977
Category : Agriculture
ISBN : UIUC:30112020285943

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Solar Energy for Agriculture and Industrial Process Heat by United States. Energy Research and Development Administration. Division of Solar Energy Pdf

Solar Energy for Agricultural and Industrial Process Heat, Program Summary

Author : United States. Department of Energy. Office of Conservation and Solar Applications
Publisher : Unknown
Page : 128 pages
File Size : 55,6 Mb
Release : 1978
Category : Solar energy
ISBN : MINN:31951002845789U

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Solar Energy for Agricultural and Industrial Process Heat, Program Summary by United States. Department of Energy. Office of Conservation and Solar Applications Pdf

Report of programs funded by the Agricultural and Industrial Process Heat Branch, Division of Solar Applications.

Industrial and Agricultural Process Heat Information User Study

Author : William W. Belew
Publisher : Unknown
Page : 276 pages
File Size : 42,7 Mb
Release : 1981
Category : Solar energy
ISBN : MINN:30000010516130

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Industrial and Agricultural Process Heat Information User Study by William W. Belew Pdf

This report describes the results of a series of telephone interviews with groups of users of information on solar industrial and agricultural process heat (IAPH). These results, part of a larger study on many different solar technologies, identify types of information each group needed and the best ways to get information to each group. The report is one of ten discussing study results. Results from ten IAPH groups of respondents are analyzed in this report: IPH researchers; APH researchers; representatives of manufacturers of concentrating and nonconcentrating collectors; plant, industrial, and agricultural engineers; educators; representatives of state agricultural offices; and county extension agents.

Environmental Development Plan (EDP)

Author : A United States. Department of Energy. Office of Energy Technology
Publisher : Unknown
Page : 60 pages
File Size : 42,7 Mb
Release : 1978
Category : Solar heating
ISBN : MINN:31951002838535G

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Environmental Development Plan (EDP) by A United States. Department of Energy. Office of Energy Technology Pdf

Solar Energy in Agriculture and Industry

Author : G. Schepens
Publisher : Springer
Page : 224 pages
File Size : 42,9 Mb
Release : 1986
Category : Science
ISBN : UCAL:B4364354

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Solar Energy in Agriculture and Industry by G. Schepens Pdf

Solar Energy for Agriculture and Industrial Process Heat

Author : United States. Energy Research and Development Administration. Division of Solar Energy
Publisher : Unknown
Page : 100 pages
File Size : 55,6 Mb
Release : 1977
Category : Agriculture
ISBN : MINN:20000003288145

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Solar Energy for Agriculture and Industrial Process Heat by United States. Energy Research and Development Administration. Division of Solar Energy Pdf

Solar Energy for Agricultural and Industrial Process Heat, Program Summary

Author : United States. Department of Energy. Office of Conservation and Solar Applications
Publisher : Unknown
Page : 128 pages
File Size : 49,5 Mb
Release : 1978
Category : Solar energy
ISBN : MINN:31951D002704083

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Solar Energy for Agricultural and Industrial Process Heat, Program Summary by United States. Department of Energy. Office of Conservation and Solar Applications Pdf

Report of programs funded by the Agricultural and Industrial Process Heat Branch, Division of Solar Applications.

Environmental Development Plan

Author : Anonim
Publisher : Unknown
Page : 56 pages
File Size : 43,7 Mb
Release : 1979
Category : Power resources
ISBN : MINN:31951002852728N

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Environmental Development Plan by Anonim Pdf

Solar Thermal Conversion Technologies for Industrial Process Heating

Author : T.V. Arjunan,Vijayan Selvaraj,M.M. Matheswaran
Publisher : CRC Press
Page : 325 pages
File Size : 46,7 Mb
Release : 2023-04-25
Category : Technology & Engineering
ISBN : 9781000852080

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Solar Thermal Conversion Technologies for Industrial Process Heating by T.V. Arjunan,Vijayan Selvaraj,M.M. Matheswaran Pdf

Solar Thermal Conversion Technologies for Industrial Process Heating presents a comprehensive look at the use of solar thermal energy in industrial applications, such as textiles, chemical processing, and food. The successful projects implemented in a variety of industries are shown in case studies, alongside performance assessment methodologies. The book includes various solar thermal energy conversion technologies and new techniques and applications of solar collectors in industrial sectors. Features: Covers the key designs and novel technologies employed in the processing industries Discusses challenges in the incorporation of the solar thermal system in industrial applications Explores the techno-economic, environmental impact and life cycle analysis with government policies for promoting the system Includes real-world case studies Presents chapters written by global experts in the field The book will be useful for researchers, graduate students, and industry professionals with an aim to promote mutual understanding between sectors dealing with solar thermal energy.

Design Considerations for Solar Industrial Process Heat Systems

Author : Charles F. Kutscher
Publisher : Unknown
Page : 72 pages
File Size : 42,7 Mb
Release : 1981
Category : Solar collectors
ISBN : MINN:30000010516023

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Design Considerations for Solar Industrial Process Heat Systems by Charles F. Kutscher Pdf

This document lists items that should be considered in each aspect of the design of a solar industrial process heat system. These design considerations are based on information obtained from the design and operation of the U.S. Department of Energy (DOE) solar industrial process heat field tests. The collector technologies covered are flat-plate, evacuated tube, and line focus, since these systems have been employed to date in the DOE field test program. This document should be highly informative to the designer lacking solar system experience, since a glossary of technical terms used in the report in included.

Solar Energy Update

Author : Anonim
Publisher : Unknown
Page : 490 pages
File Size : 43,9 Mb
Release : 1979
Category : Solar energy
ISBN : IND:30000090166038

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Solar Energy Update by Anonim Pdf

Advances in Solar Energy Technology

Author : H.P. Garg
Publisher : Springer Science & Business Media
Page : 554 pages
File Size : 46,6 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9789400937956

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Advances in Solar Energy Technology by H.P. Garg Pdf

The purpose of writing this three volume 'Advances in Solar Energy Technology' is to provide all the relevant latest information available in the field of Solar Energy (Applied as well as Theoretical) to serve as the best source material at one place. Attempts are made to discuss topics in depth to assist both the students (i.e. undergraduate, postgraduate, research scholars etc.) and the professionals (i.e. Consultancy, design, and contracting firms). Chapter 1 starts with a brief history of solar houses (active heating), one of the oldest and still the widely used application of Solar Energy. Various methods of build ing heating and other general aspects such as building form and functions are also described. Various components of active solar heating of building like solar collector, storage system, control unit, auxiliary heat source, etc. are discussed very briefly. Three types of solar active heating of buildings like Solar air systems, solar liquid systems, and solar assisted heat pump systems are discussed in detail in this chapter. Design details and performance of nine typical solar houses which are in use in different climatic conditions and using some newer concepts are also discussed in depth in this chapter.

Solar Thermal Energy Storage System using phase change material for uninterrupted on-farm agricultural processing and value addition

Author : Anjum Munir,Oliver Hensel
Publisher : kassel university press GmbH
Page : 50 pages
File Size : 46,8 Mb
Release : 2019-10-09
Category : Political Science
ISBN : 9783737606349

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Solar Thermal Energy Storage System using phase change material for uninterrupted on-farm agricultural processing and value addition by Anjum Munir,Oliver Hensel Pdf

Thermal energy storage technologies are gaining attention nowadays for uninterrupted supply of solar power in off-sunshine hours. An indigenized solar phase change material (PCM) system was developed and performance evaluated in the current study to efficiently store solar thermal power using a latent heat storage approach, which can be utilized in any subsequent decentralized food processing application. A 2.5 m2 laying Scheffler reflector is used to precisely focus the incoming direct normal irradiance (DNI) on a casted aluminum heat receiver (220 mm diameter) from where this concentrated heat energy is absorbed and conducted to the PCM unit by the flow of thermal oil (Fragoltherm-32 thermo-oil). During the circulation around PCM pipes inside the PCM unit, thermal oil discharges heat energy to the PCM, which undergoes change of phase from solid to liquid. Computational fluid dynamics (CFD) analysis of the PCM unit were also performed according to the actual boundary conditions, which gave satisfactory results in terms of temperature and velocity distribution. With an average DNI of 781 W/m2, the highest temperature of the receiver surface during the trials was observed at about 155 C that produces thermal oil at 110°C inside the receiver and around 48°C of PCM in the PCM unit. The heat energy losses per unit time (W) due to the lack of reflectivity from the Scheffler reflector, out-of-focus radiations at the targeted area, absorptivity of heat receiver, piping system losses, and cylinder losses (in the form of conduction, convection, and radiations using 50 mm insulation thickness) were found to be 110 W (10 %), 99 W (9 %), 89 W (8 %), 128 W (12 %), 161 W (15 %), and 89 W (8 %), respectively. These findings of CFD analysis and mathematical modeling were also consistent with real-time data, which was logged through an online Control and Monitoring Interface portal. The final energy available to the PCM was 414W with an overall system efficiency of 38 %, which can be improved by decreasing thermal losses of the system and using other PCM materials.