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Aircraft Thermal Management Using Loop Heat Pipes: Experimental Simulation of High Acceleration Environments Using the Centrifuge Table Test Bed

机译:采用环路热管的飞机热管理:使用离心机表试验台的高加速环境实验模拟

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The objective of this paper is to describe the design of an experiment that will examine the effects of elevated acceleration environments on a high-temperature, titanium-water loop heat pipe for actuator cooling. An experimental test setup has been designed for mounting a loop heat pipe on an 8-ft-diameter centrifuge table, which is capable of radial accelerations of up to 12-g's. A high-temperature PAO loop will interface the condenser of the loop heat pipe to simulate the rejection of the transported heat to an elevated temperature. In addition to LHP experimentation, a mathematical model has been developed for aerodynamic heating of high-speed aircraft. A flat plate at zero-incidence, used to model an aircraft wing, was subjected to sub- and supersonic flow to examine whether heat will be rejected or absorbed. The results of this analysis will be used to determine the condenser conditions of the loop heat pipe during centrifuge testing.
机译:本文的目的是描述一种实验的设计,该实验将研究高温钛水环热管的高温,钛水环热管的效果。实验测试设置已经设计用于将环形热管安装在8英尺直径的离心机表上,该径向高达12-G的径向加速度。高温PAO环将接口环热管的冷凝器,以模拟输送热量的抑制到升高的温度。除了LHP实验外,还开发了一种数学模型,用于高速飞机的空气动力学加热。零发入的平板,用于模拟飞机翼的零型流动,以检查热量是否会被拒绝或吸收。该分析的结果将用于确定离心机测试期间环热管的冷凝器条件。

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