Investigation on Fluid Flow and Heat Transfer through Microchannel

Vineet Kumar Mishra

ISBN 10: 3330030291 ISBN 13: 9783330030299
Published by LAP LAMBERT Academic Publishing, 2017
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Nowadays due to increasing demand of high heat dissipation devices in various fields of application, there is a need for development of cooling technologies for removing high heat fluxes from considerably small areas, one of which is the microchannel heat sink. The flow pattern in this type of devices is found to be closely coupled with channel size, heat flux, and mass flux. Therefore, in the present study, pressure drop and heat transfer characteristics of a single-phase micro-channel heat sink are investigated both experimentally and numerically. Two types of microchannels have been investigated in this work: straight microchannel and diverging microchannel.

About the Author: Prof. Vineet Kumar Mishra is currenty working in Department of Mechanical Engineering, Dronacharya College of Engineering, Gurgaon, Haryana, India. He did his M.Tech from IIT Guwahati. His field of interests are renewable energy, alternate fuels, dynamics and control of fluid-thermal systems.

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Title: Investigation on Fluid Flow and Heat ...
Publisher: LAP LAMBERT Academic Publishing
Publication Date: 2017
Binding: Paperback
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Condition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Mishra Vineet KumarProf. Vineet Kumar Mishra is currenty working in Department of Mechanical Engineering, Dronacharya College of Engineering, Gurgaon, Haryana, India. He did his M.Tech from IIT Guwahati. His field of interests are re. Seller Inventory # 159137529

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Taschenbuch. Condition: Neu. Neuware -Nowadays due to increasing demand of high heat dissipation devices in various fields of application, there is a need for development of cooling technologies for removing high heat fluxes from considerably small areas, one of which is the microchannel heat sink. The flow pattern in this type of devices is found to be closely coupled with channel size, heat flux, and mass flux. Therefore, in the present study, pressure drop and heat transfer characteristics of a single-phase micro-channel heat sink are investigated both experimentally and numerically. Two types of microchannels have been investigated in this work: straight microchannel and diverging microchannel.Books on Demand GmbH, Überseering 33, 22297 Hamburg 108 pp. Englisch. Seller Inventory # 9783330030299

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Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Nowadays due to increasing demand of high heat dissipation devices in various fields of application, there is a need for development of cooling technologies for removing high heat fluxes from considerably small areas, one of which is the microchannel heat sink. The flow pattern in this type of devices is found to be closely coupled with channel size, heat flux, and mass flux. Therefore, in the present study, pressure drop and heat transfer characteristics of a single-phase micro-channel heat sink are investigated both experimentally and numerically. Two types of microchannels have been investigated in this work: straight microchannel and diverging microchannel. Seller Inventory # 9783330030299

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Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Nowadays due to increasing demand of high heat dissipation devices in various fields of application, there is a need for development of cooling technologies for removing high heat fluxes from considerably small areas, one of which is the microchannel heat sink. The flow pattern in this type of devices is found to be closely coupled with channel size, heat flux, and mass flux. Therefore, in the present study, pressure drop and heat transfer characteristics of a single-phase micro-channel heat sink are investigated both experimentally and numerically. Two types of microchannels have been investigated in this work: straight microchannel and diverging microchannel. 108 pp. Englisch. Seller Inventory # 9783330030299

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Paperback. Condition: Brand New. 01 edition. 108 pages. 8.66x5.91x0.25 inches. In Stock. Seller Inventory # __3330030291

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