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Investigation on vertical straight wickless-heat pipe as gamma irradiator passive cooling system

机译:垂直直芯热管作为伽马辐照器无源冷却系统的研究

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The multi-purpose gamma irradiator in Indonesia, with Co-60 radioactive source, is potentially resulting decay heat generation when the accident occurred. The vertical straight wickless-heat pipe is chosen as an alternative technology to remove the heat generated when the accident occurs, such as prolonged station blackout, so the safety aspect of gamma irradiator enhance. The objectives of this research were to investigate the thermal performance and heat transfer phenomena of vertical straight wickless-heat pipe model as a gamma irradiator passive cooling system. The working fluid filling ratio, hot water temperature source, and air-cooling velocity are considered as factors that influence the vertical straight wickless-heat pipe thermal performance. The heat pipe with a total length of 1000 mm was operated with the variation of working fluid filling ratios of 55, 65, 75, 85%, hot water source temperature of 60, 70, 80, 90°C, and cooling air velocity of 1, 1.5, 2.1, 2.8 m/s. The lowest thermal resistance of 0.03°C/W is obtained from the experiment with filling ratio of 55%, air coolant velocity of 1 m/s, and hot water temperature of 90°C. The experiment investigation results show that the vertical straight wickless-heat pipe had a higher thermal performance to remove the decay heat generation. Heat pipe could be chosen as one of passive cooling system alternative technology to enhance the safety factor of gamma irradiator when an accident occurs.
机译:用CO-60放射源的印度尼西亚的多用途伽马辐照器可能导致事故发生时的衰减发热。选择垂直直芯 - 热管作为替代技术,以消除事故发生时产生的热量,例如长时间的站停电,因此伽玛辐照器的安全方面增强。该研究的目的是研究垂直直芯 - 热管模型的热性能和传热现象作为伽马辐照器被动冷却系统。工作流体灌装比,热水温度和空气冷却速度被认为是影响垂直直的无芯 - 热管热性能的因素。使用5000mm的总长度为1000mm的热管,其工作流体灌装比为55,65,75,85%,热水源温度为60,70,80,90℃和冷却空气速度1,1.5,2.1,2.8 m / s。 0.03℃/ w的最低热阻从实验中获得55%,空气冷却剂速度为1m / s的空气冷却剂速度,热水温度为90℃。实验调查结果表明,垂直直的无芯 - 热管具有更高的热性能,以去除衰减发热。可以选择热管作为被动冷却系统替代技术之一,以提高伽马辐照器的安全系数发生时发生。

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