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      • Department of Mechanical Engineering
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      Fast and predictive heat pipe design and analysis toolbox: H-Pat

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      Author(s)
      Saygan, Samet
      Akkuş, Yiğit
      Dursunkaya, Zafer
      Çetin, Barbaros
      Date
      2022-04-30
      Print ISSN
      1300-3615
      Publisher
      Journal of Thermal Science and Technology
      Volume
      42
      Issue
      1
      Pages
      141 - 156
      Language
      English
      Type
      Article
      Item Usage Stats
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      Abstract
      For the assessment of the thermal performance of heat pipes, a wide range of modeling is available in the literature, ranging from simple capillary limit analyses to comprehensive 3D models. While simplistic models may result in less accurate predictions of heat transfer and operating temperatures, comprehensive models may be computationally expensive. In this study, a universal computational framework is developed for a fast but sufficiently accurate modeling of traditional heat pipes, and an analysis tool based on this framework, named Heat Pipe Analysis Toolbox, in short H-PAT is presented. As a diagnostic tool, H-PAT can predict the fluid flow and heat transfer from a heat pipe under varying heat inputs up to the onset of dryout. During the initial estimation of phase change rates, the solutions of particular thin film phase change models are avoided by specifying an appropriate pattern for the mass flow rate of the liquid along the heat pipe rather than using finite element/volume based methods for the computational domain. With the help of a modular structure, H-PAT can simulate heat pipes with different wick structures as long as an expression for the average liquid velocity and corresponding pressure drop can be introduced. H-PAT is also capable of analyzing heat pipes with variable cross-sections, favorable/unfavorable gravity conditions and utilizes temperature dependent thermo-physical properties at evaporator, condenser and adiabatic regions together with heat input sensitive vapor pressure. In addition, H-PAT performs the computation very fast which also makes it a perfect design tool for researchers and design engineers in the field of thermal management.
      Keywords
      Heat pipe modeling
      Flat-grooved heat pipes
      Phase-change modeling
      H-PAT
      Permalink
      http://hdl.handle.net/11693/111875
      Published Version (Please cite this version)
      10.47480/isibted.1107492
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      • Department of Mechanical Engineering 373
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