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Experimental and mathematical analysis of multilayer insulation below 80K

机译:多层绝缘低于80K的实验和数学分析

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The Large Hadron Collider [1], presently under construction at CERN, will make an extensive use of multilayer insulation system (MLI). The total surface to be insulated will be of about 80000 m{sup}2. A mathematical model has been developed to describe the heat flux through MLI from 80K to 4.2 K. The total heat flux between the layers is the result of three distinct heat transfer modes: radiation, residual gas conduction and solid conduction. The mathematical model enables prediction of MLI behavior with regard to different MLI parameters, such as gas insulation pressure, number of layers and boundary temperatures. The calculated values have been compared to the experimental measurements carried out at CERN. Theoretical and experimental results revealed to be in good agreement, especially for insulation vacuum between 10{sup}(-5) Pa and 10{sup}(-3) Pa.
机译:目前正在核心建设的大型特罗龙蓄电池[1]将大量使用多层绝缘系统(MLI)。待绝缘的总表面为约80000m {sup} 2。已经开发了一种数学模型来描述通过80K至4.2K的MLI的热通量。层之间的总热量是三种不同的传热模式的结果:辐射,残余气体传导和固体导通。数学模型使得能够预测关于不同的MLI参数的MLI行为,例如气体绝缘压力,层数和边界温度。已经将计算的值与CERN中进行的实验测量进行了比较。理论和实验结果表明,良好的一致性,特别是在10 {sup}( - 5)pa和10 {sup}( - 3)pa之间的绝缘真空。

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