首页> 外文会议>IECEC 2012;Annual international energy conversion engineering conference >Using Pre-melted Phase Change Material to Keep Payload Warm without Power for Hours in Space
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Using Pre-melted Phase Change Material to Keep Payload Warm without Power for Hours in Space

机译:使用预融化的相变材料在无动力的情况下在太空中保持有效载荷数小时

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During a payload transition from the transport vehicle to its worksite on the International Space Station (ISS), the payload is unpowered for up to 6 hours. Its radiator(s) will continue to radiate heat to space. It is necessary to make up the heat loss to maintain the payload temperature above the cold survival limit. Typically an interplanetary Probe has no power generation system. It relies on its battery to provide limited power for the Communication and Data Handling (C&DH) subsystem during cruise, and heater power is unavailable. It is necessary to maintain the C&DH temperature above the minimum operating limit. This paper presents a novel thermal design concept that utilizes phase change material (PCM) to store thermal energy by melting it before the payload or interplanetary Probe is unpowered. For the ISS, the PCM is melted by heaters just prior to the payload transition from the transport vehicle to its worksite. For an interplanetary Probe, the PCM is melted by heaters just prior to separation from the orbiter. The PCM releases thermal energy to keep the payload warm for several hours after power is cut off.
机译:在从运输车辆到国际空间站(ISS)上的工作地点的有效载荷过渡期间,该有效载荷长达6个小时不通电。它的散热器将继续向空间辐射热量。必须弥补热量损失,以将有效负载温度维持在冷生存极限以上。通常,行星际探测器没有发电系统。它依靠电池为巡航期间的通信和数据处理(C&DH)子系统提供有限的电源,并且加热器电源不可用。必须将C&DH温度保持在最低操作极限以上。本文提出了一种新颖的热设计概念,该概念利用相变材料(PCM)通过在有效负载或行星际探测器未供电之前将其熔化来存储热能。对于国际空间站,正好在有效载荷从运输车辆过渡到工作地点之前,PCM被加热器熔化。对于行星际探测器,PCM即将与轨道分离之前被加热器熔化。 PCM在切断电源后释放热能,以使有效载荷保持加热几个小时。

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