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Numerical and experimental studies of temperature field characteristic inside an irregularly-shaped cavity of a space environment simulator system

机译:空间环境模拟器系统不规则形腔内温度场特性的数值和实验研究

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摘要

Numerical and experimental methods were used to explore temperature and pressure distributions inside an irregularly-shaped cavity of a novel three-dimensional space environment simulator (SES) sys_tem. In order to obtain better temperature and pressure distributions, a plenum chamber and airflow dif_fusion perforated plate were adopted. Three-dimensional heat and mass transfer characteristics were analyzed using the Standard k-__ turbulence model. Simulation results revealed that the temperature and pressure distributions were greatly improved with improved diffusion configuration design, the tem_perature gradient decreased from 5 K to 1 K, and the pressure gradient decreased to 0.5% of the former value. Based on the simulation results, an improved experimental system for simulating space environ_ment was set up. This experiment system could supply airflow with temperature ranging from 193 K to 353 K for simulating the real space environment. Experimental results showed that the temperature and pressure fields had smaller gradients across the surface and the inner cavity, which agreed considerably with the numerical results. The results of this study present useful information for the design of similar cavity structure.
机译:使用数值和实验方法来探索新型三维空间环境模拟器(SES)系统的不规则形状空腔内的温度和压力分布。为了获得更好的温度和压力分布,采用了增压室和气流扩散穿孔板。使用标准k -__湍流模型分析了三维传热和传质特性。仿真结果表明,改进的扩散构型设计可大大改善温度和压力分布,温度梯度从5 K降至1 K,压力梯度降至前值的0.5%。根据仿真结果,建立了改进的模拟空间环境的实验系统。该实验系统可提供温度范围为193 K至353 K的气流,以模拟真实的太空环境。实验结果表明,温度和压力场在表面和内腔上的梯度较小,这与数值结果相当吻合。这项研究的结果为类似腔结构的设计提供了有用的信息。

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