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Heat transfer rate of close-loop oscillating heat pipe with check valve using NiO as working fluid

机译:使用NIO作为工作流体的止回阀闭环振荡热管的传热速率

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This Research studied the heat transfer characteristics of the closed-looped oscillating heat pipe with check valves (CLOHP/CV), examining effectiveness, considering the effects of heat transfer rates and studying the internal pressure of the (CLOHP/CV). That install the fins and do not install the fins by using a heat pipe made of copper pipe, inner diameter of 5 mm, with two check valves. The evaporator section, condenser section and adiabatic section lengths were 20, 20 and 10 cm, respectively. Heat pipe had two check valves and 24 turns. Nickel oxide (NiO) was used at a working filling ratio and concentration 50% by volume and 0.14 g of the tube respectively. Hot air was at 60 70 and 80 degree Celsius, at a wind speed of 1.0 m/s. The fins were copper with radian size of 0.5 cm, and thickness of the fins was 1 mm. From the experiment, it was found that the heat flux of the CLOHP/CV heat exchanger set with the fins was the highest at 80 degree Celsius, with a value of 9, 743.11 W/m2. The effectiveness is 0.3 and the internal pressure is 123.59 kPa.
机译:本研究研究了闭环振荡热管的传热特性,检查阀(CLOHP / CV),检查效果,考虑到传热速率的影响,研究(CLOHP / CV)的内部压力。安装翅片并使用铜管制成的热管,内径为5毫米,带有两个止回阀,安装翅片。蒸发器部分,冷凝器部分和绝热截面长度分别为20,20和10cm。热管有两个止回阀和24转。氧化镍(NIO)以工作填充率和浓度为50体积%和0.14g管。热空气处于60 70和80摄氏度,风速为1.0米/秒。翅片用弧度尺寸为0.5cm,翅片的厚度为1mm。从实验中,发现用翅片设定的CLOHP / CV热交换器的热通量在80摄氏度下最高,值为9,743.11W / m 2。有效性为0.3,内部压力为123.59kPa。

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