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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Heat transfer and effective thermal conductivity analyses in carbon-based foams for use in thermal protection systems
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Heat transfer and effective thermal conductivity analyses in carbon-based foams for use in thermal protection systems

机译:用于热防护系统的碳基泡沫的传热和有效导热系数分析

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摘要

The applicability of carbon-based foams as an insulation material in the thermal protection systems (TPSs) of space vehicles is considered using a physical analysis and computer modelling. The heat transfer through the foam is considered through its solid phase and the gas residing in the foam pores via conduction and radiation. As the cellular structure of the foam prevents a large-scale motion of the gas, thermal convection is neglected as a heat transfer mode. The results obtained show that, although the gas-phase conduction and radiation can be ignored at near-room temperatures and at sub-atmospheric pressures, their contributions at high temperatures and at near-atmospheric pressure become very significant. It is also found that one can derive an analytical expression for the effective thermal conductivity (a parameter that combines the contributions of both conduction and radiation) as a function of temperature and pressure. Such an expression is shown to be valid for quite large ranges of temperature, pressure, and insulation thickness and, due to its mathematical simplicity, is very suitable for use in computationally intensive large-scale thermo-mechanical analyses of the entire TPS of a space vehicle.
机译:通过物理分析和计算机建模,可以考虑将碳基泡沫作为隔热材料在航天器的热保护系统(TPS)中的适用性。通过泡沫的热传递是通过其固相以及通过传导和辐射而存在于泡沫孔中的气体来进行的。由于泡沫的多孔结构阻止了气体的大规模运动,因此热对流被忽略为传热模式。所获得的结果表明,尽管在近室温和低于大气压下可以忽略气相传导和辐射,但是它们在高温和接近大气压下的贡献却非常显着。还发现,可以得出有效导热系数(结合了传导和辐射的贡献的参数)随温度和压力变化的解析表达式。该表达式对于很大的温度,压力和绝缘厚度范围都是有效的,并且由于其数学简单性,非常适合用于对整个空间的TPS进行计算密集的大规模热机械分析。车辆。

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