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OPTIMISATION OF MULTILAYER INSULATION - AN ENGINEERING APPROACH

机译:多层绝缘优化 - 一种工程方法

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A mathematical model has been developed to describe the heat flux through multilayer insulation (MLI). The total heat flux between the layers is the result of three distinct heat transfer modes: radiation, residual gas conduction and solid spacer conduction. The model describes the MLI behaviour considering a layer-to-layer approach and is based on an electrical analogy, in which the three heat transfer modes are treated as parallel thermal impedances. The values of each of the transfer mode vary from layer to layer, although the total heat flux remains constant across the whole MLI blanket. The model enables the optimisation of the insulation with regard to different MLI parameters, such as residual gas pressure, number of layers and boundary temperatures. The model has been tested with experimental measurements carried out at CERN and the results revealed to be in a good agreement, especially for insulation vacuum between 10~(-5) Pa and 10~(-5) Pa.
机译:已经开发了一种数学模型来描述通过多层绝缘(MLI)的热通量。层之间的总热通量是三种不同的传热模式的结果:辐射,残留气体传导和固体间隔件传导。该模型描述了考虑层到层方法的MLI行为,并且基于电气类比,其中三种传热模式被视为平行的热阻抗。尽管总热通量在整个MLI橡皮布上保持恒定,但每个传送模式的值从层到层变化。该模型能够优化关于不同MLI参数的绝缘,例如残留气体压力,层数和边界温度。该模型已经通过在CERN中进行的实验测量进行了测试,结果显示出在良好的一致性,特别是对于10〜(5)PA和10〜(-5)PA之间的绝缘真空。

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