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Heat Exchange Analysis On Latent Heat Thermal Energy Storage Systems Using Molten Salts And Nanoparticles As Phase Change Materials


Heat Exchange Analysis On Latent Heat Thermal Energy Storage Systems Using Molten Salts And Nanoparticles As Phase Change Materials
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Heat Exchange Analysis On Latent Heat Thermal Energy Storage Systems Using Molten Salts And Nanoparticles As Phase Change Materials


Heat Exchange Analysis On Latent Heat Thermal Energy Storage Systems Using Molten Salts And Nanoparticles As Phase Change Materials
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Author : Adio Miliozzi
language : en
Publisher:
Release Date : 2018

Heat Exchange Analysis On Latent Heat Thermal Energy Storage Systems Using Molten Salts And Nanoparticles As Phase Change Materials written by Adio Miliozzi and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018 with Technology categories.


The increase of carbon dioxide emissions is the most important contributor to climate change. A better use of produced energy, increasing systems efficiency and using renewable sources, can limit them. A key technological issue is to integrate a thermal energy storage (TES). It consists in stocking thermal energy through the heating/cooling of a storage material for future needs. Among various technologies, latent heat TES (LHTES) provides high energy storage density at constant temperature during melting/solidification of storage media. The bottleneck in the use of typical PCMs is their low thermal conductivity. To improve the heat exchange between heat transfer fluid and PCM, three methods are possible and here experimentally analyzed: conductivity systems enhancements; convective flows promotion in liquid phase; and improvement of PCM thermal properties including small amounts of nanoparticles. CFD models were used to evaluate physical phenomena that are crucial for optimized LHTES systems design. The study of the heat exchange mode allowed some useful indications to achieve an optimized LHTES, taking advantage by convective flows and conductivity promotion systems. The use of NEPCM, to maximize the stored energy density and realize compact systems, makes necessary the improvement of its thermal diffusivity. These will be the future research topics.



High Temperature Thermal Storage Systems Using Phase Change Materials


High Temperature Thermal Storage Systems Using Phase Change Materials
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Author : Luisa Cabeza
language : en
Publisher: Academic Press
Release Date : 2017-12-07

High Temperature Thermal Storage Systems Using Phase Change Materials written by Luisa Cabeza and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-12-07 with Technology & Engineering categories.


High-Temperature Thermal Storage Systems Using Phase Change Materials offers an overview of several high-temperature phase change material (PCM) thermal storage systems concepts, developed by several well-known global institutions with increasing interest in high temperature PCM applications such as solar cooling, waste heat and concentrated solar power (CSP). The book is uniquely arranged by concepts rather than categories, and includes advanced topics such as thermal storage material packaging, arrangement of flow bed, analysis of flow and heat transfer in the flow bed, energy storage analysis, storage volume sizing and applications in different temperature ranges. By comparing the varying approaches and results of different research centers and offering state-of-the-art concepts, the authors share new and advanced knowledge from researchers all over the world. This reference will be useful for researchers and academia interested in the concepts and applications and different techniques involved in high temperature PCM thermal storage systems. Offers coverage of several high temperature PCM thermal storage systems concepts developed by several leading research institutions Provides new and advanced knowledge from researchers all over the world Includes a base of material properties throughout



Thermal Energy Storage Using Phase Change Materials


Thermal Energy Storage Using Phase Change Materials
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Author : Amy S. Fleischer
language : en
Publisher: Springer
Release Date : 2015-06-22

Thermal Energy Storage Using Phase Change Materials written by Amy S. Fleischer and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015-06-22 with Science categories.


This book presents a comprehensive introduction to the use of solid‐liquid phase change materials to store significant amounts of energy in the latent heat of fusion. The proper selection of materials for different applications is covered in detail, as is the use of high conductivity additives to enhance thermal diffusivity. Dr. Fleischer explores how applications of PCMS have expanded over the past 10 years to include the development of high efficiency building materials to reduce heating and cooling needs, smart material design for clothing, portable electronic systems thermal management, solar thermal power plant design and many others. Additional future research directions and challenges are also discussed.



Thermal Energy Storage With Phase Change Materials


Thermal Energy Storage With Phase Change Materials
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Author : Mohammed Farid
language : en
Publisher: CRC Press
Release Date : 2021-07-26

Thermal Energy Storage With Phase Change Materials written by Mohammed Farid and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-07-26 with Science categories.


This book focuses on latent heat storage, which is one of the most efficient ways of storing thermal energy. Unlike the sensible heat storage method, the latent heat storage method provides much higher storage density with a smaller difference between storing and releasing temperatures. Thermal Energy Storage with Phase Change Materials is structured into four chapters that cover many aspects of thermal energy storage and their practical applications. Chapter 1 reviews selection, performance, and applications of phase change materials. Chapter 2 investigates mathematical analyses of phase change processes. Chapters 3 and 4 present passive and active applications for energy saving, peak load shifting, and price-based control heating using phase change materials. These chapters explore the hot topic of energy saving in an overarching way, and so they are relevant to all courses. This book is an ideal research reference for students at the postgraduate level. It also serves as a useful reference for electrical, mechanical, and chemical engineers and students throughout their work. FEATURES Explains the technical principles of thermal energy storage, including materials and applications in different classifications Provides fundamental calculations of heat transfer with phase change Discusses the benefits and limitations of different types of phase change materials (PCM) in both micro- and macroencapsulations Reviews the mechanisms and applications of available thermal energy storage systems Introduces innovative solutions in hot and cold storage applications



Molten Salt Thermal Energy Storage Systems


Molten Salt Thermal Energy Storage Systems
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Author : Institute of Gas Technology
language : en
Publisher:
Release Date : 1978

Molten Salt Thermal Energy Storage Systems written by Institute of Gas Technology and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1978 with categories.




Advanced Phase Change Materials For Thermal Storage


Advanced Phase Change Materials For Thermal Storage
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Author : Rocío Bayón
language : en
Publisher: MDPI
Release Date : 2021-08-30

Advanced Phase Change Materials For Thermal Storage written by Rocío Bayón and has been published by MDPI this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-08-30 with Technology & Engineering categories.


Thermal energy storage using phase change materials (PCMs) is a research topic that has attracted much attention in recent decades. This is mainly due to the potential use of PCMs as latent storage media in a large variety of applications. Although many kinds of PCMs are already commercial products, advanced materials with improved properties and new latent storage concepts are required to better meet the specific requirements of different applications. Moreover, the development of common validation procedures for PCMs is an important issue that should be addressed in order to achieve commercial deployment and implementation of these kinds of materials in latent storage systems. The key subjects addressed on the five papers included in this Special Issue are related to methodologies for material selection, PCM validation and assessment procedures, innovative approaches of PCM applications together with simulation and testing of latent storage prototypes.



Solid Liquid Thermal Energy Storage


Solid Liquid Thermal Energy Storage
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Author : Moghtada Mobedi
language : en
Publisher: CRC Press
Release Date : 2022-06-22

Solid Liquid Thermal Energy Storage written by Moghtada Mobedi and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-06-22 with Science categories.


Solid–Liquid Thermal Energy Storage: Modeling and Applications provides a comprehensive overview of solid–liquid phase change thermal storage. Chapters are written by specialists from both academia and industry. Using recent studies on the improvement, modeling, and new applications of these systems, the book discusses innovative solutions for any potential drawbacks. This book: Discusses experimental studies in the field of solid–liquid phase change thermal storage Reviews recent research on phase change materials Covers various innovative applications of phase change materials (PCM) on the use of sustainable and renewable energy sources Presents recent developments on the theoretical modeling of these systems Explains advanced methods for enhancement of heat transfer in PCM This book is a reference for engineers and industry professionals involved in the use of renewable energy systems, energy storage, heating systems for buildings, sustainability design, etc. It can also benefit graduate students taking courses in heat transfer, energy engineering, advanced materials, and heating systems.



High Temperature Phase Change Materials For Thermal Energy Storage


High Temperature Phase Change Materials For Thermal Energy Storage
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Author : S. Harikrishnan
language : en
Publisher: Elsevier
Release Date : 2024-08-06

High Temperature Phase Change Materials For Thermal Energy Storage written by S. Harikrishnan and has been published by Elsevier this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-08-06 with Science categories.


High-Temperature Phase Change Materials for Thermal Energy Storage covers the fundamentals, thermal characteristics, measurement, design, and applications of high-temperature phase change materials (PCMs) for thermal energy storage, supported by examples and numerical modeling. The differences between low-temperature and high-temperature PCMs are examined with respect to thermophysical properties, phase change properties, and melting/solidification processes, with detailed coverage of how to alter or shorten the phase transition temperature range between melting and solidification, providing routes for the utilization of PCMs for specific high-temperature applications. The book also addresses key challenges, such as the design of PCM containers, phase transition temperature with little deviation, high latent heat capacity, thermal conductivity, viscosity, efficiency, ecocompatibility, and cost. This book is a valuable resource for researchers, advanced students, and scientists across the areas of energy storage, power generation, energy engineering, thermodynamics, materials science, renewable energy, energy management, mechanical engineering, and chemical engineering as well as engineers, research and development professionals, and other industry personnel with an interest in thermal energy storage design and materials. Focuses on high-temperature PCMs for thermal energy storage, with real-life applications Provides detailed information on fundamentals, thermal characteristics, measurement, and design Addresses key challenges and includes examples, numerical studies, and modeling



Molten Salt Thermal Energy Storage Systems


Molten Salt Thermal Energy Storage Systems
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Author : Institute of Gas Technology
language : en
Publisher:
Release Date : 1977

Molten Salt Thermal Energy Storage Systems written by Institute of Gas Technology and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1977 with Geothermal engineering categories.




Latent Heat Based Thermal Energy Storage Systems


Latent Heat Based Thermal Energy Storage Systems
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Author : Amritanshu Shukla
language : en
Publisher: CRC Press
Release Date : 2020-09-27

Latent Heat Based Thermal Energy Storage Systems written by Amritanshu Shukla and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-09-27 with Science categories.


In light of increasing human-induced global climate change, there is a greater need for clean energy resources and zero carbon projects. This new volume offers up-to-date coverage of the fundamentals as well as recent advancements in energy efficient thermal energy storage materials, their characterization, and technological applications. Thermal energy storage (TES) systems offer very high-energy savings for many of our day-to-day applications and could be a strong component for enhancing the usage of renewable/clean energy-based devices. Because of its beneficial environmental impact, this technology has received wide attention in the recent past, and dedicated research efforts have led to the development of novel materials, as well to innovative applications in very many fields, ranging from buildings to textile, healthcare to agriculture, space to automobiles. This book offers a valuable and informed systematic treatment of latent heat-based thermal energy storage systems, covering current energy research and important developmental work.