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Heat Pipe Design and Technology

- Modern Applications for Practical Thermal Management

Bag om Heat Pipe Design and Technology

This book provides a practical study of modern heat pipe engineering, discussing how it can be optimized for use on a wider scale. An introduction to operational and design principles, this book offers a review of heat and mass transfer theory relevant to performance, leading into and exploration of the use of heat pipes, particularly in high-heat flux applications and in situations in which there is any combination of non-uniform heat loading, limited airflow over the heat generating components, and space or weight constraints. Key implementation challenges are tackled, including load-balancing, materials characteristics, operating temperature ranges, thermal resistance, and operating orientation. With its presentation of mathematical models to calculate heat transfer limitations and temperature gradient of both high- and low-temperature heat pipes, the book compares calculated results with the available experimental data. It also includes a series of computer programs developed by the author to support presented data, aid design, and predict performance.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9783319298405
  • Indbinding:
  • Hardback
  • Sideantal:
  • 513
  • Udgivet:
  • 29. april 2016
  • Udgave:
  • 22016
  • Størrelse:
  • 173x243x34 mm.
  • Vægt:
  • 966 g.
  Gratis fragt
Leveringstid: 8-11 hverdage
Forventet levering: 16. december 2024
Forlænget returret til d. 31. januar 2025

Beskrivelse af Heat Pipe Design and Technology

This book provides a practical study
of modern heat pipe engineering, discussing how it can be optimized for use on a wider scale. An introduction to operational
and design principles, this book offers a review of heat and mass transfer theory relevant to performance, leading into and exploration of the use of heat pipes, particularly
in high-heat flux applications and in situations in which there is any
combination of non-uniform heat loading, limited airflow over the heat generating
components, and space or weight constraints. Key implementation challenges are tackled, including load-balancing, materials characteristics, operating temperature ranges, thermal resistance, and operating orientation.
With its presentation of mathematical
models to calculate heat transfer limitations and temperature gradient of both
high- and low-temperature heat pipes, the book compares calculated results with
the available experimental data. It also includes a series of computer programs developed by the
author to support presented data, aid design, and predict performance.

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