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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Elektronik och kommunikationer

    Polygeneration Process Concept for Hybrid Solar and Biomass Power Plant

    Simulation, Modelling, and Optimization

    AvUmakanta Sahoo

    Inbunden, Engelska, 2018

    2 583 kr

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    Beskrivning

    This is the most comprehensive and in-depth study of the theory and practical applications of a new and groundbreaking method for the energy industry to "go green" with renewable and alternative energy sources.The global warming phenomenon as a significant sustainability issue is gaining worldwide support for development of renewable energy technologies. The term "polygeneration" is referred to as "an energy supply system, which delivers more than one form of energy to the final user." For example, electricity, cooling and desalination can be delivered from a polygeneration process. The polygeneration process in a hybrid solar thermal power plant can deliver electricity with less impact on the environment compared to a conventional fossil fuel-based power generating system. It is also THE next generation energy production technique with the potential to overcome the undesirable intermittence of renewable energy systems.In this study, the polygeneration process simultaneous production of power, vapor absorption refrigeration (VAR) cooling and multi-effect humidification and dehumidification (MEHD) desalination system from different heat sources in hybrid solar-biomass (HSB) system with higher energy efficiencies (energy and exergy), primary energy savings (PES) and payback period are investigated, focusing on several aspects associated with hybrid solar-biomass power generation installations, such as wide availability of biomass resources and solar direct normal irradiance (DNI), and other technologies. Thermodynamic evaluation (energy and exergy) of HSB power has also been investigated, along with the VAR cooling system, the modelling, simulation, optimization and cost analysis of the polygeneration hybrid solar biomass system, all accompanied by multiple case studies and examples for practical applications.This volume provides the researcher, student and engineer with the intellectual tool needed for understanding new ideas in this rapidly emerging field. The book is also intended to serve as a general source and reference book for the professional (consultant, designer, contractor etc.) who is working in the field of solar thermal, biomass, power plant, polygeneration, cooling and process heat. It is a must-have for anyone working in this field.

    Produktinformation

    • Utgivningsdatum:2018-12-21
    • Mått:10 x 10 x 10 mm
    • Vikt:454 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:294
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119536093

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik
    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Umakanta Sahoo, PhD, is Research Scientist at the National Institute of Solar Energy, India. He received his undergraduate degree in mechanical engineering from the Institute of Technical Education and Research, Bhubaneswar, India and his PhD in mechanical engineering at the Delhi Technological University, Delhi, India. He has seven years of research experience in the fields of solar, thermal and biomass energy. He has published many research papers in international journals one one book in the field of solar and biomass energy and six books in the field of mechanical engineering. His research interest areas are energy, exergy, hybrid solar-biomass power in co- and poly-generation processes, primary energy saving, waste heat utilization for industrial processes, and many others in alternative and renewable energy. He has conducted voluminous training on designing, operation and maintenance of solar thermal systems.

    Innehållsförteckning

    • ContentsForeword ixPreface xi1. Introduction 11.1. Global Scenario on Renewable Energy 31.2. Indian Scenario on Renewable Energy 6Exercise 8References 92. State-of-the-Art Concentrated Solar Thermal Technologies for End Use Applications 112.1. Solar Thermal Technologies for Low Grade Heat Applications 112.1.1. Flat Plate Collector System 122.1.2. Built-In Storage Solar Water Heating System 152.1.3. Evacuated Tubular Collector System 16ETC Water Heating System Specification 182.1.4. Cumulative Growth of SWHS Installation Capacity 202.1.5. Performance Evaluation of SWHs 202.1.6. Cost Benefits Analysis 232.2. Solar Cooking 252.2.1. Thermal Performance of Solar Box Type Cooker 302.3. Solar Thermal Cooling 352.4. Desalination System 382.5. Industrial Process Heat applications 452.6. Solar Thermal Technologies for Power Generation 492.6.1. Parabolic Trough Collector 492.6.2. Linear Fresnel Reflector 512.6.3. Central Solar Tower 532.6.4. Parabolic Dish 542.7. Cooling with Process Heat in Cogeneration Process for Industrial Applications 572.7.1. System Description 58Exercise 61References 623. Resource Assessment of Solar and Biomass for Hybrid Thermal Power Plant 693.1. Apparent Solar Time 703.2. Solar Angles 713.3. Solar Resources (DNI) In India 763.3.1. Solar DNI from Satellite and Ground Measured Data 763.3.2. DNI Assessment at NISE 783.4. Biomass Resources in India 813.5. Analysis of Solar DNI And Biomass Resources for Hybrid Power Plants 83Exercise 106References 1064. Solar Thermal Power Plant 1094.1. A Case Study of 1 MWe Solar Thermal Power Plant 1224.2. Major Components 1244.2.1. Parabolic Trough Collector 1244.2.2. Linear Fresnel Reflector 1254.2.3. Storage 1274.2.4. Nitrogen Blanketing System 1294.2.5. Heat Exchanger 1294.2.6. Power Block 1324.2.7. Balance of Plant-Utility Systems 1344.3. Performance of the Plant 136Exercise 161References 1625. Modeling and Simulation of Hybrid Solar and Biomass Thermal Power Plant 1635.1. Modeling Approach of a Hybrid Solar-Biomass Thermal Power Plant 1675.2. Thermodynamic Evaluation 1685.2.1. Energy Evaluation 1695.2.2. Exergy Evaluation 1745.3. Analysis of Hybrid Solar and Biomass Thermal Power Plant 177Exercise 181References 1826. Modeling, Simulation, Optimization and Cost Analysis of a Polygeneration Hybrid Solar Biomass System 1876.1. Modeling Approach of Polygeneration Process in an HSB Thermal Power Plant 1916.2. Thermodynamic Evaluation 1936.2.1. Energy Evaluation 1936.2.2. Exergy Evaluation 2016.3. Primary Energy Savings on the Polygeneration Process in an HSB Thermal Power Plant 2066.4. Optimization 2076.4.1. Objective Functions 2076.4.2. Decision Variable and Constraints 2076.4.3. Genetic Algorithm (GA) 2076.5. Cost Analysis 2096.6. Analysis Of Polygeneration Process in an HSB Thermal Power Plant for Power, Cooling, and Desalination 2116.7. Optimization of the Polygeneration System 2166.8. Cost Analysis of a Polygeneration System 220Exercise 224References 226Appendix 1 231Nomenclature 231Greek 233Subscripts 233Acronyms 234Appendix 2. 237EES Software Coding 237Appendix 3. 253Multiple Choice Questions (MCQ) with Answers. 253Answers 274About the Author 275Index 277