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首页> 外文期刊>Theoretical foundations of chemical engineering >Theoretical Modeling of Cooling of Containers for the Desublimation of Hydrogen Fluoride Vapors
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Theoretical Modeling of Cooling of Containers for the Desublimation of Hydrogen Fluoride Vapors

机译:氟化氢蒸气的升华容器冷却的理论模型

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摘要

A physical and mathematical model of air-cooling precipitator containers has been presented for the desublimation of hydrogen fluoride from a mixture of gases. The model is based on the equations of gas dynamics for modeling the movement of cooled air in piping and thermal conductivity equations for modeling heat transfer in the walls of the pipe and the walls of the precipitator container. A numerical simulation of the cooling of two series-mounted precipitator containers is performed by the flow of cold air from a cold air source with parameters that correspond to the specifications and performance of the VKhM-0.54/0.6 air refrigerating unit. The parameters of the air heat exchanger are determined, providing efficient cooling of containers. The calculation results showed that when upon using refrigerating machine VKhM-0.54/0.6, temperature of each container is homogeneous, and the temperature difference between the first and second containers during the flow of cooling air does not exceed 1 degrees C.
机译:提出了一种空气冷却除尘器容器的物理和数学模型,用于从气体混合物中脱除氟化氢。该模型基于气体动力学方程式,该气体动力学方程式用于建模管道中的冷却空气运动,而导热率方程式则用于建模管道壁和除尘器容器壁中的热传递。对两个串联安装的除尘器容器进行冷却的数值模拟是通过来自冷空气源的冷空气流进行的,其参数与VKhM-0.54 / 0.6空气制冷装置的规格和性能相对应。确定空气热交换器的参数,可有效冷却容器。计算结果表明,当使用制冷机VKhM-0.54 / 0.6时,每个容器的温度是均匀的,并且在冷却空气流动期间第一和第二容器之间的温度差不超过1℃。

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