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Energy Storage and Civilization = A ...
~
Floyd, Joshua.
Energy Storage and Civilization = A Systems Approach /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Energy Storage and Civilization/ by Graham Palmer, Joshua Floyd.
Reminder of title:
A Systems Approach /
Author:
Palmer, Graham.
other author:
Floyd, Joshua.
Description:
XIV, 173 p. 42 illus., 34 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Energy storage. -
Online resource:
https://doi.org/10.1007/978-3-030-33093-4
ISBN:
9783030330934
Energy Storage and Civilization = A Systems Approach /
Palmer, Graham.
Energy Storage and Civilization
A Systems Approach /[electronic resource] :by Graham Palmer, Joshua Floyd. - 1st ed. 2020. - XIV, 173 p. 42 illus., 34 illus. in color.online resource. - Lecture Notes in Energy,402195-1284 ;. - Lecture Notes in Energy,28.
Introduction -- History as a guide to understanding the future of storage -- Storage with fossil fuels -- Energy primer for storage analysis -- Comparing market and biophysical approaches to evaluating electricity storage -- Electricity: a new challenge for storage -- The role of storage in management of electricity grids -- The use of scenario analyses to estimate the magnitude of storage -- Hydrogen as an energy carrier -- Synthesis and conclusions.
Fossil fuels comprise the accumulation of prehistoric biomass that was energised by sunlight, and formed by earth system dynamics. Fossil fuels can be conceptualized as stored energy stocks that can be readily converted to power flows, on demand. A transition from a reliance on stored energy stocks, to renewable energy flows, will require a replication of energy storage by technological devices and energy conversion methods. Most analyses of energy storage focus solely on the economic-technical properties of storage within incumbent energy systems. This book broadens the scope of the study of storage by placing it within a broader, historical, biophysical framework. The role and value of storage is examined from first principles, and framed within the contemporary context of electrical grids and markets. The energy-economic cost of electrical storage may be critical to the efficacy of high penetration renewable scenarios, and understanding the costs and benefits of storage is needed for a proper assessment of storage in energy transition studies. This book provides a starting point for engineers, scientists and energy analysts for exploring the role of storage in energy transition studies, and for gaining an appreciation of the biophysical constraints of storage.
ISBN: 9783030330934
Standard No.: 10.1007/978-3-030-33093-4doiSubjects--Topical Terms:
677971
Energy storage.
LC Class. No.: TJ165
Dewey Class. No.: 621.3126
Energy Storage and Civilization = A Systems Approach /
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Introduction -- History as a guide to understanding the future of storage -- Storage with fossil fuels -- Energy primer for storage analysis -- Comparing market and biophysical approaches to evaluating electricity storage -- Electricity: a new challenge for storage -- The role of storage in management of electricity grids -- The use of scenario analyses to estimate the magnitude of storage -- Hydrogen as an energy carrier -- Synthesis and conclusions.
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Fossil fuels comprise the accumulation of prehistoric biomass that was energised by sunlight, and formed by earth system dynamics. Fossil fuels can be conceptualized as stored energy stocks that can be readily converted to power flows, on demand. A transition from a reliance on stored energy stocks, to renewable energy flows, will require a replication of energy storage by technological devices and energy conversion methods. Most analyses of energy storage focus solely on the economic-technical properties of storage within incumbent energy systems. This book broadens the scope of the study of storage by placing it within a broader, historical, biophysical framework. The role and value of storage is examined from first principles, and framed within the contemporary context of electrical grids and markets. The energy-economic cost of electrical storage may be critical to the efficacy of high penetration renewable scenarios, and understanding the costs and benefits of storage is needed for a proper assessment of storage in energy transition studies. This book provides a starting point for engineers, scientists and energy analysts for exploring the role of storage in energy transition studies, and for gaining an appreciation of the biophysical constraints of storage.
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