首页> 外文会议>ASME Power Conference >EXPERIMENTAL EVALUATION OF DEWAR VOLUME AND CRYOCOOLER COLD FINGER SIZE IN A SMALL-SCALE STIRLING LIQUID AIR ENERGY STORAGE (LAES) SYSTEM
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EXPERIMENTAL EVALUATION OF DEWAR VOLUME AND CRYOCOOLER COLD FINGER SIZE IN A SMALL-SCALE STIRLING LIQUID AIR ENERGY STORAGE (LAES) SYSTEM

机译:小规模斯特林空气储能(Laes)系统中露天体积和冷长冷却器冷手指尺寸的实验评价

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This paper uses an experimental approach to evaluate two design characteristics for a liquid air energy storage (LAES) and generation system as part of the design analysis for a microgrid power system. The system evaluated utilized a Stirling engine based cryocooler that employs a cold finger placed into a Dewar. Using a design of experiments, the cold finger surface area and Dewar volume were evaluated to determine the criticality and significance of changing their dimensions. Evaluations were made against the total liquid air production mass and average liquid air production rate during the experiments. This analysis found that changing the surface area of the cryocooler cold finger was a statistically significant design characteristic that affected total liquid air production and average production rate while changing the volume of the Dewar was not statistically significant. Additional responses relative to the time when the first gram of liquid air was produced and the minimum cold tip temperature that the cryocooler was able to achieve provided additional insight into design characteristics that can be used to inform the engineer when making design tradeoffs for specific operational environments.
机译:本文采用实验方法评估液体空气能量存储(Laes)和发电系统的两个设计特性,作为微电网电力系统的设计分析的一部分。该系统评估利用基于斯特林的发动机的冷冻机,该冷却器采用冷手指放入杜瓦尔中。使用实验设计,评价冷指表面区域和露天体积以确定改变其尺寸的临界性和意义。在实验期间,根据液体空气生产质量和平均液体空气生产率进行评估。该分析发现,更换冷冻机冷手指的表面积是一种统计学上显着的设计特性,影响总液体空气产生和平均生产率,同时改变露华的体积没有统计学意义。相对于生产第一克液体空气的时间以及低温冷却器能够实现的最小冷尖端温度的额外响应提供了额外的深入了解设计特性,这些特性可以用于为工程师提供特定操作环境的设计权衡时。

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