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B01=Lingai Luo
B01=Nolwenn Le Pierrès
Category1=Non-Fiction
Category=PNRW
Category=THN
COP=United Kingdom
Delivery_Pre-order
Language_English
PA=Available
Price_€100 and above
PS=Forthcoming
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Heat and Cold Storage, Volume 2: Thermochemical Storage

English

Heat and Cold Storage 2 focuses on thermochemical sorption storage processes that is, absorption, adsorption and chemical sorption.

This book first analyzes the principles of sorption and defines the criteria for selecting the materials to be used, before presenting the three sorption storage technologies. It details the functioning of the absorption cycle in order to highlight the future challenges of this method. Next, the book examines storage by physical adsorption. Then, it presents the fundamentals of this phenomenon and a description of solid-gas adsorption cycles and systems, followed by a number of examples of prototype installations. Finally, the book describes the phenomenon of heat storage by chemical sorption from the scale of the reactive material to the scale of the process, before putting the state of the art of possible improvements into perspective and illustrating various applications.

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Current price €138.69
Original price €145.99
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Age Group_Uncategorizedautomatic-updateB01=Lingai LuoB01=Nolwenn Le PierrèsCategory1=Non-FictionCategory=PNRWCategory=THNCOP=United KingdomDelivery_Pre-orderLanguage_EnglishPA=AvailablePrice_€100 and abovePS=Forthcomingsoftlaunch
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Product Details
  • Publication Date: 06 Nov 2024
  • Publisher: ISTE Ltd
  • Publication City/Country: United Kingdom
  • Language: English
  • ISBN13: 9781789451344

About

Nolwenn Le Pierrès is a professor at the Université Savoie Mont Blanc France. She also teaches Energy at the Polytech Annecy-Chambéry engineering school and is a researcher in the LOCIE laboratory at the Institut National de lEnergie Solaire. Lingai Luo is a CNRS research director who has developed an original research strategy for optimizing energy systems using a multi-scale approach combined with an innovative fluid distribution optimization method.

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