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首页> 外文期刊>International Journal of Heat and Mass Transfer >Combined Heat Transfer Of Radiation And Natural Convection In A Square Cavity Containing Participating Gases
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Combined Heat Transfer Of Radiation And Natural Convection In A Square Cavity Containing Participating Gases

机译:包含参与气体的方腔中辐射与自然对流的联合传热

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摘要

A simple modeling of the heat transfer through insulating bilayers of cryogenic reservoir subjected to surrounding environment or aerothermal flux is presented. The model permits to determine the instantaneous evolution of maximum fuel temperatures and the boil-off rate as well as the possible insulation ablation. To get a realistic estimation of the maximum fuel temperature and boil-off loss, the good knowledge of the internal convection coefficient, taking into account the possible fuel ebullition, is indispensable. The aerothermal flux provokes the insulation degradation and its ablation. Because of the ablation, the reservoir becomes less and less thermally protected, which may cause an important fuel boil-off. Compared to classical insulations with uniform density, those with spatially graded densities appear as potential insulations permitting to meet both light-weight and low boil-off requirements.
机译:提出了通过低温储层的隔热双层的传热的简单模型,该双层储层受到周围环境或气热通量的影响。该模型允许确定最高燃料温度和蒸发率的瞬时变化以及可能的绝缘烧蚀。为了对最高燃料温度和蒸发损失进行实际估算,必须考虑到内部对流系数,并考虑可能的燃料沸腾,这是必不可少的。空气热通量引起绝缘性能下降和烧蚀。由于烧蚀,储存器的热保护越来越少,这可能导致重要的燃油蒸发。与具有均匀密度的经典绝缘相比,具有空间梯度密度的那些作为潜在的绝缘似乎可以满足轻质和低沸腾的要求。

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