首页> 外文会议>Space Technology and Applications International Forum (STAIF 2002), Feb 3-6, 2002, Albuquerque, New Mexico >Current Capabilities of 'HPTAM' for Modeling High-Temperature Heat Pipes' Startup from a Frozen State
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Current Capabilities of 'HPTAM' for Modeling High-Temperature Heat Pipes' Startup from a Frozen State

机译:“ HPTAM ”的当前能力,用于从冻结状态模拟高温热管的启动

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The Heat Pipe Transient Analysis Model "HPTAM" has been developed at the University of New Mexico's Institute for Space and Nuclear Power Studies for simulating the transient and steady state operation as well as the startup of alkali-metal and low-temperature heat pipes from a frozen state. This model has been subject to continuous upgrade and verification since the early nineties using experimental data for water, sodium, and lithium heat pipes. Some of the current capabilities of HPT AM include tracking: (a) the progression of the 2-D thaw front in the wick and the transition fronts separating the successive flow regimes (free-molecular, transition, and continuum) in the vapor core; (b) the liquid circulation in the wick and in the annular space that may be incorporated by design between the wick and the heat pipe wall; (c) the formation of the wet point at the wick-vapor interface and its progression toward the condenser; (d) the excess liquid volume resulting from the decrease in density of the working fluid upon thaw and heating up to the operating temperature, and its accumulation at the end of the condenser section; (e) the change in the local radius of curvature of the liquid meniscus in the surface pores of the wick and incipient dryout; (f) the sublimation of the frozen working fluid in the evaporator and resolidification in the adiabatic and condenser sections early during the startup from a frozen state; and (g) the changes in the local vapor velocity and the liquid velocity and temperature distributions. The simulation capabilities of HPTAM are reviewed and examples of the code verification results using experimental data for the startup of sodium and lithium heat pipes from a frozen state are presented and discussed. HPTAM employs a very stable and efficient numerical technique and may run at twice the real time on a 700-MHz PC.
机译:热管瞬态分析模型“ HPTAM”是由新墨西哥大学的空间与核动力研究所开发的,用于模拟瞬态和稳态运行以及碱金属和低温热管的启动。冻结状态。自90年代初以来,使用水,钠和锂热管的实验数据对该模型进行了不断的升级和验证。 HPT AM当前的一些功能包括跟踪:(a)芯体中的2-D解冻前沿和过渡前沿将气核中的连续流态(自由分子,过渡和连续体)分开的过程; (b)灯芯和环形空间中的液体循环,该液体循环可以设计成在灯芯和热管壁之间合并; (c)在芯子-蒸汽界面处形成湿点,并向冷凝器发展; (d)融化和加热到工作温度后工作流体密度降低而产生的多余液体体积,以及在冷凝器部分末端的积聚; (e)灯芯表面孔中液体弯月面的局部曲率半径的变化和初期变干; (f)在从冷冻状态启动的初期,在蒸发器中将冷冻的工作流体升华,并在绝热和冷凝器部分进行再固化; (g)局部蒸气速度以及液体速度和温度分布的变化。审查了HPTAM的仿真功能,并介绍和讨论了使用实验数据对钠和锂热管从冻结状态启动的代码验证结果的示例。 HPTAM采用了非常稳定和高效的数值技术,并且可以在700MHz PC上以两倍的实时速度运行。

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