Advances in Thermal Energy Storage Systems

- Methods and Applications

Forfatter: info mangler
Bog
  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Advances in Thermal Energy Storage Systems, 2nd edition, presents a fully updated comprehensive analysis of thermal energy storage systems (TES) including all major advances and developments since the first edition published. This very successful publication provides readers with all the information related to TES in one resource, along with a variety of applications across the energy/power and construction sectors, as well as, new to this edition, the transport industry. After an introduction to TES systems, editor Dr. Prof. Luisa Cabeza and her team of expert authors consider the source, design and operation of the use of water, molten salts, concrete, aquifers, boreholes and a variety of phase-change materials for TES systems, before analyzing and simulating underground TES systems. This edition benefits from 5 new chapters covering the most advanced technologies including sorption systems, thermodynamic and dynamic modelling as well as applications to the transport industry and the environmental and economic aspects of TES. It will benefit researchers and academics of energy systems and thermal energy storage, construction engineering academics, engineers and practitioners in the energy and power industry, as well as architects of plants and storage systems and R&D managers.

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Detaljer
  • SprogEngelsk
  • Sidetal796
  • Udgivelsesdato02-11-2020
  • ISBN139780128198858
  • Forlag Woodhead Publishing
  • FormatHardback
Størrelse og vægt
  • Vægt1620 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Molecular dynamics. Fossil fuels Equilibrium Solidification Cooling Modeling Thermal conductivity Mass transfer Energy consumption Thermodynamics Viscosity Energy storage Buildings THERMAL ENERGY Simulation Overview Sensible heat storage Continuum Modeling Heat transfer Heat and mass transfer Combined Heat and Power Chemical energy storage Energy Savings CSP Sorption Latent heat storage Melting Applications District Heating Characteristics of Water Energy Storage Systems Phase change material Future Trends Cogeneration Solid media Valorization Seasonal storage Heat loss Cash flows Control strategies Sorption Systems Chemical Building envelope Numerical modeling Latent heat Phase Change Materials (PCM) Thermal energy storage Heat content Aggregated thermal demand Carbonate and chloride Concrete storage CO2 mitigation potential Domestic setting Daily storages Density function theory Enthalpy formulation Encapsulation Technologies district cooling experimental characterization Hot water tanks Investment costs Domestic Hot Water Direct and indirect two-tank storage Liquid metal and alloy heat transfer materials Mampel’s approach Hot water storage Particulate storage Individual residential building Inlet stratifier Regenerator storage Shape-stabilized PCM Smart hot water tanks Sorption heat storage reversible reaction Seasonal storages Sorption energy storage requirements Sensible heat thermal bridge Thermal stratification thermochemical Water pit heat storages thermochemical heat storage Trigeneration Liquid sensible storage media Working pairs Thermal and electrical energy Thermal energy storage (TES) Low melting–point mixtures Molten nitrate/nitrite solar salts Phase change materials (PCMs) Waste Heat Recovery Thermophysical

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