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Experimental Equipment Research for Cryogenic Joule-Thompson Cryocoolers Comparison in IR Technology Sensors

机译:低温焦耳 - 汤普森冷冻机的实验设备研究IR技术传感器的比较

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摘要

This paper shows experimental setup for research of Joule-Thompson cryocoolers performances integrated in Dewar vessels with temperature detector simulator of IR sensor. Experimental solutions of transient temperature regimes of detector cooling on cryogenic cooldown temperature by using nitrogen as the coolant have been analyzed. In experiments of transient temperature influences, three principal methods of the fluid flow regulation, were compared. Results of experiments have shown important differences in quality and rate of cooling for IR detector integrated in cooling system with or without coolant flow regulation. The chosen thermodynamic regime parameters in experiments were suitable for the real necessities of detector cooling in IR sensor application. Scheme of the experimental equipment, its components, method of research and monitoring of desired transient function of temperature versus time in cooling (cooldown regime) of detector, and thermodynamic performances of the overall micro-cryogenic cooler are shown in this paper.
机译:本文展示了对IR传感器温度探测器模拟器集成在露天血管中的焦耳 - 汤普森冷冻冷却器性能的实验设置。分析了用氮作为冷却剂通过氮气冷却滤波器冷却瞬态温度制度的实验解。在瞬态温度影响的实验中,比较了三种流体流量调节方法。实验结果表明了在具有或没有冷却剂流量调节的冷却系统中集成的IR检测器的质量和冷却速率的重要差异。所选择的实验中的热力学性能方案参数适用于IR传感器应用中检测器冷却的实际必需品。实验设备的方案,其部件,研究和监测温度与探测器的冷却(冷却状态)的期望瞬态功能,以及整个微浊导冷器的热力学性能。

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