An experimental and computational investigation of thermal air flows through perforated pin heat sinks
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چکیده
منابع مشابه
Air Flows along Perforated Metal Plates with the Heat Transfer
The objective of the paper is a numerical study of heat transfer between perforated metal plates and the surrounding air flows. Different perforation structures can nowadays be found in various industrial products. Besides improving the mechanical properties, the perforations can intensify the heat transfer as well. The heat transfer coefficient depends on a wide range of parameters such as typ...
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An experimental investigation has been carried out to study the turbulent flow heat transfer and to determine the pressure drop characteristics of air, flowing through a tube with insert. An insert of special geometry is used inside the tube. The test section is electrically heated, and air is allowed to flow as the working fluid through the tube by means of a blower. Air velocity, air inlet an...
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Swimming pools as heat sinks for air conditioners: Model design and experimental validation for natural thermal behavior of the pool
Swimming pools as thermal sinks for air conditioners could save approximately 40% on peak cooling power and 30% of overall cooling energy, compared to standard residential air conditioning. Heat dissipation from pools in semi-arid climates with large diurnal temperature shifts is such that pool heating and space cooling may occur concurrently; in which case heat rejected from cooling equipment ...
متن کاملThermal Performance of an Elliptical Pin Fin Heat Sink
Christopher L. Chapman, and Seri Lee Aavid Engineering, Inc. Laconia, New Hampshire 03247 Bill L. Schmidt Silicon Graphics Computer Systems Mountainview, California 94039 Comparative thermal tests have been carried out using aluminum heat sinks made with extruded fin, cross-cut rectangular pins, and elliptical shaped pins in low air flow environments. The elliptical pin heat sink was designed t...
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ژورنال
عنوان ژورنال: Applied Thermal Engineering
سال: 2015
ISSN: 1359-4311
DOI: 10.1016/j.applthermaleng.2015.06.036