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Performance of a Self-Circulating Thermosyphon
ASME 2011 Power Conference, Volume 2, 2011A series of laboratory experiments on self-circulating thermosyphon (SCT) was carried out. The thermosyphon system consists of heating section, condenser, reservoir, and heat exchanging section. The basic performance was elucidated. The present thermosyphon system works by itself under certain conditions of tilting angle of the condenser, the water ...
Naoto Hagino, Hiro Yoshida
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The Simple, Tubular Thermosyphon
1992Abstract Newton’s law of cooling, in which the rate of cooling of a body is taken to be proportional to its temperature measured relative to that of the environment, is the first quantitative statement ever made about natural convection. Implicit within this law is the requirement that the heat transfer coefficient at the body surface
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Advances in Thermosyphon Technology
1973Publisher Summary Thermosyphon applied in formal studies are the systems that have the intrinsic function of removing heat from a prescribed source and transporting heat and mass over a specific path, and rejecting the heat and or mass to a prescribed sink— that is, the path of the circulating flow that transports the thermal energy is or can be ...
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Entry effects in the open thermosyphon
Journal of Fluid Mechanics, 1964In this paper flow-visualization techniques are used to study the flow instability which occurs at the orifice in the free convection open thermosyphon. The influence of the shape of the orifice on the measured heat transfer of the system is also studied under both laminar and turbulent conditions.
Martin, B. W., Lockwood, F. C.
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The onset of motion in a toroidal thermosyphon
Journal of Engineering Mathematics, 1986The instability associated with the onset of motion in a toroidal natural-circulation loop has been studied theoretically. A one-dimensional model is used to investigate the problem of global flow initiation from a rest state. It is shown that a thermosyphonic flow is established when the modified Rayleigh number exceeds a critical value, Rc* or Rc ...
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Loop thermosyphons for cooling of electronics
Eighteenth Annual IEEE Semiconductor Thermal Measurement and Management Symposium. Proceedings 2002 (Cat.No.02CH37311), 2003Recent innovations to loop thermosyphon (LTS) design are anticipated to have a significant impact on electronics thermal solutions. Future electronics systems including high-density desktop computers, multi-processor rack mounted servers, and telecommunications cabinets are reaching volumetric thermal densities beyond the limits of direct air-cooling ...
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Principles of loop thermosyphon and its application in data center cooling systems: A review
Renewable and Sustainable Energy Reviews, 2021Zhiguang He
exaly
Investigation of a closed-loop thermosyphon
1991This item was digitized as part of a project to share McGill's intellectual legacy with the public. If you are the copyright holder or a relative of the copyright holder who is deceased, you may request withdrawal by emailing escholarship.library@mcgill.ca.
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CFD modeling of flow and heat transfer in a thermosyphon
International Communications in Heat and Mass Transfer, 2010Masoud Rahimi +1 more
exaly

