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Geoenergy modeling II[electronic res...
~
Shao, Haibing.
Geoenergy modeling II[electronic resource] :shallow geothermal systems /
Record Type:
Electronic resources : Monograph/item
[NT 15000414]:
621.44
Title/Author:
Geoenergy modeling II : shallow geothermal systems // by Haibing Shao ... [et al.].
remainder title:
Geoenergy modeling 2
other author:
Shao, Haibing.
Published:
Cham : : Springer International Publishing :, 2016.
Description:
xiii, 94 p. : : ill., digital ;; 24 cm.
Contained By:
Springer eBooks
Subject:
Geothermal engineering.
Subject:
Geothermal resources.
Subject:
Energy.
Subject:
Renewable and Green Energy.
Subject:
Engineering Thermodynamics, Heat and Mass Transfer.
ISBN:
9783319450575
ISBN:
9783319450551
[NT 15000228]:
1 Introduction -- 2 Theory Governing Equations and Model Implementations -- 3 OGS project Simulating heat transport model with BHEs -- 4 BHE meshing tool -- 5 Benchmarks -- 6 Case Study: A GSHP system in the Leipzig area -- 7 Summary and Outlook.
[NT 15000229]:
This book is dedicated to the numerical modeling of shallow geothermal systems. The utilization of shallow geothermal energy involves the integration of multiple Borehole Heat Exchangers (BHE) with Ground Source Heat Pump (GSHP) systems to provide heating and cooling. The modeling practices explained in this book can improve the efficiency of these increasingly common systems. The book begins by explaining the basic theory of heat transport processes in man-made as well as natural media. These techniques are then applied to the simulation of borehole heat exchangers and their interaction with the surrounding soil. The numerical and analytical models are verified against analytical solutions and measured data from a Thermal Response Test, and finally, a real test site is analyzed through the model and discussed with regard to BHE and GSHP system design and optimization.
Online resource:
http://dx.doi.org/10.1007/978-3-319-45057-5
Geoenergy modeling II[electronic resource] :shallow geothermal systems /
Geoenergy modeling II
shallow geothermal systems /[electronic resource] :Geoenergy modeling 2by Haibing Shao ... [et al.]. - Cham :Springer International Publishing :2016. - xiii, 94 p. :ill., digital ;24 cm. - SpringerBriefs in energy,2191-5520. - SpringerBriefs in energy..
1 Introduction -- 2 Theory Governing Equations and Model Implementations -- 3 OGS project Simulating heat transport model with BHEs -- 4 BHE meshing tool -- 5 Benchmarks -- 6 Case Study: A GSHP system in the Leipzig area -- 7 Summary and Outlook.
This book is dedicated to the numerical modeling of shallow geothermal systems. The utilization of shallow geothermal energy involves the integration of multiple Borehole Heat Exchangers (BHE) with Ground Source Heat Pump (GSHP) systems to provide heating and cooling. The modeling practices explained in this book can improve the efficiency of these increasingly common systems. The book begins by explaining the basic theory of heat transport processes in man-made as well as natural media. These techniques are then applied to the simulation of borehole heat exchangers and their interaction with the surrounding soil. The numerical and analytical models are verified against analytical solutions and measured data from a Thermal Response Test, and finally, a real test site is analyzed through the model and discussed with regard to BHE and GSHP system design and optimization.
ISBN: 9783319450575
Standard No.: 10.1007/978-3-319-45057-5doiSubjects--Topical Terms:
461274
Geothermal engineering.
LC Class. No.: TJ280.7
Dewey Class. No.: 621.44
Geoenergy modeling II[electronic resource] :shallow geothermal systems /
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This book is dedicated to the numerical modeling of shallow geothermal systems. The utilization of shallow geothermal energy involves the integration of multiple Borehole Heat Exchangers (BHE) with Ground Source Heat Pump (GSHP) systems to provide heating and cooling. The modeling practices explained in this book can improve the efficiency of these increasingly common systems. The book begins by explaining the basic theory of heat transport processes in man-made as well as natural media. These techniques are then applied to the simulation of borehole heat exchangers and their interaction with the surrounding soil. The numerical and analytical models are verified against analytical solutions and measured data from a Thermal Response Test, and finally, a real test site is analyzed through the model and discussed with regard to BHE and GSHP system design and optimization.
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Energy (Springer-40367)
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