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Energy policy. --- Economic policy. --- Exergy. --- Availability (Thermodynamics) --- Available energy (Thermodynamics) --- Essergy --- Work potential of energy --- Force and energy --- Thermodynamics --- Economic nationalism --- Economic planning --- National planning --- State planning --- Economics --- Planning --- National security --- Social policy --- Energy and state --- Power resources --- State and energy --- Industrial policy --- Energy conservation --- Government policy --- Energy policy --- Economic policy --- Exergy --- E-books
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Energy storage. --- Heat storage. --- Hydrogen --- Nonmetals --- Storage, Heat --- Thermal energy storage --- Energy storage --- Heat engineering --- Thermodynamics --- Storage of energy --- Force and energy --- Power (Mechanics) --- Flywheels --- Pulsed power systems --- Storage.
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Environmental management. --- Environmental management --- Ecosystem management. --- Exergy. --- Availability (Thermodynamics) --- Available energy (Thermodynamics) --- Essergy --- Work potential of energy --- Force and energy --- Thermodynamics --- Biotic communities --- Ecosystems management --- Applied ecology --- Nature conservation --- Biodiversity conservation --- Environmental stewardship --- Stewardship, Environmental --- Environmental sciences --- Management --- Methodology.
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This book deals with exergy and its applications to various energy systems and applications as a potential tool for design, analysis and optimization, and its role in minimizing and/or eliminating environmental impacts and providing sustainable development. In this regard, several key topics ranging from the basics of the thermodynamic concepts to advanced exergy analysis techniques in a wide range of applications are covered as outlined in the contents. Offers comprehensive coverage of exergy and its applications, along with the most up-to-date information in the area with recent developments. Connects exergy with three essential areas in terms of energy, environment and sustainable development. Provides a number of illustrative examples, practical applications, and case studies.
Energy conservation. --- Exergy. --- System analysis. --- Thermodynamics. --- Exergy --- Thermodynamics --- Energy conservation --- Energy development --- Sustainable development --- System analysis --- Energy development. --- Sustainable development. --- Basic Sciences. Physics --- Conservation of energy resources --- Conservation of power resources --- Rational use of energy --- RUE (Rational use of energy) --- Energy resources development --- Energy source development --- Power resources development --- Availability (Thermodynamics) --- Available energy (Thermodynamics) --- Essergy --- Work potential of energy --- Conservation of natural resources --- Power resources --- Energy consumption --- Energy policy --- Recycling (Waste, etc.) --- Force and energy
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The ability of thermal energy storage (TES) systems to facilitate energy savings, renewable energy use and reduce environmental impact has led to a recent resurgence in their interest. The second edition of this book offers up-to-date coverage of recent energy efficient and sustainable technological methods and solutions, covering analysis, design and performance improvement as well as life-cycle costing and assessment. As well as having significantly revised the book for use as a graduate text, the authors address real-life technical and operational problems, enabling the reader to gain an understanding of the fundamental principles and practical applications of thermal energy storage technology.
Heat storage. --- 621.4 --- thermodynamica --- warmteopslag --- werktuigbouwkunde --- Storage, Heat --- Thermal energy storage --- Energy storage --- Heat engineering --- Thermodynamics --- warmtewerktuigen --- Heat storage
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This book deals with exergy and its applications to various energy systems and applications as a potential tool for design, analysis and optimization, and its role in minimizing and/or eliminating environmental impacts and providing sustainable development. In this regard, several key topics ranging from the basics of the thermodynamic concepts to advanced exergy analysis techniques in a wide range of applications are covered as outlined in the contents.- Comprehensive coverage of exergy and its applications- Connects exergy with three essential areas in terms of energy, environmen
Thermodynamics. --- Exergy. --- Energy conservation. --- System analysis. --- Network analysis --- Network science --- Network theory --- Systems analysis --- System theory --- Mathematical optimization --- Conservation of energy resources --- Conservation of power resources --- Rational use of energy --- RUE (Rational use of energy) --- Conservation of natural resources --- Power resources --- Energy consumption --- Energy policy --- Recycling (Waste, etc.) --- Availability (Thermodynamics) --- Available energy (Thermodynamics) --- Essergy --- Work potential of energy --- Force and energy --- Thermodynamics --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Physics --- Heat --- Heat-engines --- Quantum theory --- Energy conservation --- Exergy --- System analysis
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Energy conservation. --- Thermodynamics. --- Exergy. --- Conservation of energy resources --- Conservation of power resources --- Rational use of energy --- RUE (Rational use of energy) --- Conservation of natural resources --- Power resources --- Energy consumption --- Energy policy --- Recycling (Waste, etc.) --- Availability (Thermodynamics) --- Available energy (Thermodynamics) --- Essergy --- Work potential of energy --- Force and energy --- Thermodynamics --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Physics --- Heat --- Heat-engines --- Quantum theory --- Energia --- Termodinàmica --- Exergia --- Estalvi --- Equilibri tèrmic --- Calor --- Dinàmica --- Física --- Fisicoquímica --- Màquines tèrmiques --- Mecànica --- Motors tèrmics --- Quàntums, Teoria dels --- Conservació de l'energia --- Economia d'energia --- Estalvi d'energia --- Estalvi de fonts d'energia --- Estalvi de recursos energètics --- Estalvi energètic --- Gestió de l'energia --- Fonts d'energia --- Política energètica --- Reciclatge (Residus, etc.) --- Conservació --- Consum --- Disponibilitat termodinàmica --- Energia disponible (Termodinàmica)
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Sustainable Energy Technologies for Seawater Desalination provides comprehensive coverage of the use of renewable energy technologies for sustainable freshwater production. Included are design concepts for desalination and sustainable energy technologies based on thermodynamics, heat transfer, mass transfer and economics. Key topics covered include desalination fundamentals and models, desalination assessments using energy and exergy methods, economics of desalination and the optimization of renewable energy-driven desalination systems. Illustrative examples and case studies are incorporated throughout the book to demonstrate how to apply the concepts covered in practical scenarios.
Green technology. --- Earth-friendly technology --- Environmental technology --- Technology --- Saline water conversion --- Saline water conversion. --- Technological innovations.
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Battery Technology: From Fundamentals to Thermal Behavior and Management provides comprehensive coverage of rechargeable battery technology fundamentals, along with relevant aging mechanisms and thermal management systems. With a strong focus on the analysis and modeling of battery technologies, the book includes coverage of overpotentials in battery cells and discussions on the thermal-electrochemical coupled modeling of batteries. Beginning with an introduction to battery technology, the book then takes a deep dive into thermodynamics of batteries and electrochemical modeling of batteries. Subsequent chapters examine battery thermal behavior and thermal systems, before discussing integrated battery-based systems.
Electric batteries. --- Storage batteries. --- Accumulator batteries --- Accumulators, Electric --- Batteries, Storage --- Rechargeable batteries --- Secondary batteries --- Electric apparatus and appliances --- Electric power supplies to apparatus --- Batteries, Electric --- Batteries (Electricity) --- Cell, Voltaic --- Electrical batteries --- Electrochemical cells --- Galvanic batteries --- Voltaic cell --- Electrochemistry --- Thermopiles
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General Introductory Aspects for Thermal Engineering Energy Storage Systems Thermal Energy Storage (TES) Methods Thermal Energy Storage and Environmental Impact Thermal Energy Storage and Energy Savings Heat Transfer and Stratification in Sensible Heat Storage Systems Modeling of Latent Heat Storage Systems Heat Transfer with Phase Change in Simple and Complex Geometries Thermodynamic Optimization of Thermal Energy Storage Systems Energy and Exergy Analyses of Thermal Energy Storage Systems Thermal Energy Storage Case Studies A. Conversion Factors B. Thermophysical Properties C. Glossary Subject Index
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