首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >FLUID FLOW AND HEAT TRANSFER CHARACTERISTICS OF A CENTRIFUGAL HEAT SINK
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FLUID FLOW AND HEAT TRANSFER CHARACTERISTICS OF A CENTRIFUGAL HEAT SINK

机译:离心热沉的流体流动和传热特性

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A novel heat sink called a centrifugal heat sink is proposed. The principle of coolant pumping in the centrifugal heat sink is similar to a centrifugal fan. The blades of a fan are arranged to be placed between the fins of the heat sink. Due to the relative structure of the blades and the fins, additional space for the blades of the fan is no longer required for the centrifugal heat sink. Consequently, the centrifugal heat sink makes efficient use of its total amount of cooling space. The shape of the blades for coolant pumping is based on the design principles of centrifugal turbomachinery. Due to the design principles, it is possible to increase the volumetric flow rate of the air through the heat sink. By the rotary motion of the blades, the coolant in the heat sink passes through channels formed by the adjacent fins. In this paper, an experimental investigation is conducted to demonstrate the concept of the centrifugal heat sink. As the speed of the fan increases, the volumetric flow rate is shown to increase proportionally. Thermal performance of the centrifugal heat sink is evaluated in terms of the thermal resistance under the constant heat flux condition. As a result, the thermal resistance of the centrifugal heat sink is shown to decrease as the rotation speed of the centrifugal heat sink increases.
机译:提出了一种新颖的散热器,称为离心散热器。离心式散热器中的冷却剂泵送原理类似于离心式风扇。风扇的叶片布置成放置在散热器的散热片之间。由于叶片和散热片的相对结构,离心散热器不再需要用于风扇叶片的额外空间。因此,离心式散热器有效利用了其全部冷却空间。冷却剂泵的叶片形状基于离心涡轮机械的设计原理。由于设计原理,可以增加通过散热器的空气的体积流量。通过叶片的旋转运动,散热器中的冷却剂穿过由相邻散热片形成的通道。在本文中,进行了实验研究以证明离心散热器的概念。随着风扇速度的增加,体积流量显示出成比例的增加。根据恒定热通量条件下的热阻评估离心式散热器的热性能。结果,离心散热器的热阻显示为随着离心散热器的旋转速度的增加而减小。

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