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Heat Transfer Modeling for Rigid High-Temperature Fibrous Insulation

机译:刚性高温纤维绝缘的传热建模

摘要

Combined radiation and conduction heat transfer through a high-temperature, high-porosity, rigid multiple-fiber fibrous insulation was modeled using a thermal model previously used to model heat transfer in flexible single-fiber fibrous insulation. The rigid insulation studied was alumina enhanced thermal barrier (AETB) at densities between 130 and 260 kilograms per cubic meter. The model consists of using the diffusion approximation for radiation heat transfer, a semi-empirical solid conduction model, and a standard gas conduction model. The relevant parameters needed for the heat transfer model were estimated from steady-state thermal measurements in nitrogen gas at various temperatures and environmental pressures. The heat transfer modeling methodology was evaluated by comparison with standard thermal conductivity measurements, and steady-state thermal measurements in helium and carbon dioxide gases. The heat transfer model is applicable over the temperature range of 300 to 1360 K, pressure range of 0.133 to 101.3 x 10(exp 3) Pa, and over the insulation density range of 130 to 260 kilograms per cubic meter in various gaseous environments.
机译:使用以前用于对柔性单纤维纤维绝缘中的传热进行建模的热模型,对通过高温,高孔隙率,刚性多纤维纤维绝缘体进行的组合辐射与传导传热进行建模。研究的刚性绝缘材料是氧化铝增强的热障(AETB),密度在130到260千克/立方米之间。该模型包括使用辐射热传递的扩散近似,半经验固体传导模型和标准气体传导模型。传热模型所需的相关参数是根据在各种温度和环境压力下的氮气中的稳态热测量值估算得出的。通过与标准热导率测量值以及氦气和二氧化碳气体中的稳态热测量值进行比较,评估了热传递建模方法。传热模型适用于各种气体环境中的300至1360 K的温度范围,0.133至101.3 x 10(exp 3)Pa的压力范围以及130至260千克每立方米的绝热密度范围。

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