Buoyancy-Driven Flow in Fluid-Saturated Porous Media near a Bounding Surface
This Brief reports on heat transfer from a solid boundary in a saturated porous medium. Experiments reveal overall heat transfer laws when the flow along the wall is driven by buoyancy produced by large temperature differences, and mathematical analysis using advanced volume-averaging techniques produce estimates of how heat is dispersed in the porous zone. Engineers, hydrologists and geophysicists will find the results valuable for validation of laboratory and field tests, as well as testing their models of dispersion of heat and mass in saturated media.

 

1133670213
Buoyancy-Driven Flow in Fluid-Saturated Porous Media near a Bounding Surface
This Brief reports on heat transfer from a solid boundary in a saturated porous medium. Experiments reveal overall heat transfer laws when the flow along the wall is driven by buoyancy produced by large temperature differences, and mathematical analysis using advanced volume-averaging techniques produce estimates of how heat is dispersed in the porous zone. Engineers, hydrologists and geophysicists will find the results valuable for validation of laboratory and field tests, as well as testing their models of dispersion of heat and mass in saturated media.

 

54.99 In Stock
Buoyancy-Driven Flow in Fluid-Saturated Porous Media near a Bounding Surface

Buoyancy-Driven Flow in Fluid-Saturated Porous Media near a Bounding Surface

Buoyancy-Driven Flow in Fluid-Saturated Porous Media near a Bounding Surface

Buoyancy-Driven Flow in Fluid-Saturated Porous Media near a Bounding Surface

eBook1st ed. 2018 (1st ed. 2018)

$54.99 

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Overview

This Brief reports on heat transfer from a solid boundary in a saturated porous medium. Experiments reveal overall heat transfer laws when the flow along the wall is driven by buoyancy produced by large temperature differences, and mathematical analysis using advanced volume-averaging techniques produce estimates of how heat is dispersed in the porous zone. Engineers, hydrologists and geophysicists will find the results valuable for validation of laboratory and field tests, as well as testing their models of dispersion of heat and mass in saturated media.

 


Product Details

ISBN-13: 9783319898872
Publisher: Springer-Verlag New York, LLC
Publication date: 06/11/2018
Series: SpringerBriefs in Applied Sciences and Technology
Sold by: Barnes & Noble
Format: eBook
File size: 10 MB

About the Author

Dr. Hitoshi Sakamoto is a research scientist with Huawei Technologies, KK, Japan. 
Dr. Francis Kulacki is Professor of Mechanical Engineering at the University of Minnesota.

Table of Contents

Introduction.- Prior Research.- The Volume-Averaged Energy Equations.- Heat Transfer Measurements.- Results.- Thermal Dispersion.- Conclusion.
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