粉末绝热低温储罐壁间换热实验研究

T.I. Klebleev, V.Yu. Semenov
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引用次数: 0

摘要

目前,用于液氮、氧气、液化天然气等低温液体的储存和运输,主要采用真空粉末状或真空多层绝热的双壁低温非等温储罐。如果内部容器被破坏,液体就会泄漏到隔热空间,并由于环境中的热量流入而蒸发。这增加了隔热空间的压力。为了保证储罐的功能,有必要限制隔热空间的压力增加。给出了液氮进入粉末绝缘填充空间的蒸发实验结果(实验中考虑了膨胀珍珠岩)。在模拟储罐隔热空间的实验室模型上进行了实验。确定了低温液体在粉末绝热体中的分布性质,显示了低温液体与罐壁直接接触的可能性,并确定了罐壁温度和低温产物随时间的蒸发强度。在此基础上,建立了低温储罐壁面空间因容器内部密封性破坏而导致低温液体泄漏到隔热空间的应急过程发展的物理和数学模型
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study of Heat Transfer in the Interwall Space of a Cryogenic Tank with Powder Insulation
Currently, double-wall cryogenic non-isothermal tanks with vacuum-powder or vacuum-multilayer insulation are used in storage and transportation of such cryogenic liquids as liquid nitrogen, oxygen and liquefied natural gas. If the inner vessel is disrupted, the liquid spills into the heat-insulating space and evaporates as a result of heat inflow from the environment. This increases pressure in the thermal insulation space. To ensure functioning of the tank, it is necessary to limit pressure increase in the heat-insulating space. Results of experiments on evaporation of the liquid nitrogen entering the space filled with powder insulation were presented (expanded perlite was considered in the experiments). Experiments were carried out on a laboratory model simulating the tank heat-insulating space. Nature of the cryogenic liquid distribution in the powder insulation volume was determined, possibility of the cryogenic liquid direct contact with the walls of the tank was shown, and the tank walls temperatures and the cryogenic products evaporation intensity over time were determined. Based on the work results, physical and mathematical model of the emergency process development in the interwall space of a cryogenic tank associated with violation of the inner vessel tightness and subsequent spill of cryogenic liquid into the heat-insulating space was refined
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