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首页> 外文期刊>International Journal of Simulation Modelling >DEVELOPMENT OF A NUMERICAL TOOL FOR DYNAMIC SIMULATIONS OF TWO-PHASE COOLING SYSTEMS
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DEVELOPMENT OF A NUMERICAL TOOL FOR DYNAMIC SIMULATIONS OF TWO-PHASE COOLING SYSTEMS

机译:两相冷却系统动态模拟的数字工具的开发

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摘要

In this article, the development of a simulation tool for two-phase cooling systems is discussed. The targeted application is modelling of the two-phase pumped loop systems used for Silicon tracking detector cooling at CERN. These systems are similar to vapour compression systems in that the thermal dynamics of such systems are dictated by the two-phase fluid present inside the heat exchangers. To properly account for such dynamics, non-homogenous void fraction based two-phase flow models (used for accurate modelling of vapour compression systems) have been incorporated. The tool has been validated against measurements taken for an R-410A-based residential heat pump unit. Both the heating and cooling mode have been simulated and the results have been compared against measured data. The simulated transients are found to compare well against measured trends. The simulations proceed faster than real-time. The tool shows readiness for use in the design of future detector cooling systems.
机译:在本文中,讨论了用于两相冷却系统的仿真工具的开发。 目标应用是在CERN处用于硅跟踪检测器冷却的两相泵送环路系统的建模。 这些系统类似于蒸汽压缩系统,因为这种系统的热动力学由热交换器内部的两相流体决定。 为了适当地考虑这种动态,已经掺入了基于非均匀的空隙级分(用于精确建模的蒸汽压缩系统)。 该工具已经验证了针对基于R-410A的居住热泵单元所采取的测量。 已经模拟了加热和冷却模式,并将结果与测量数据进行比较。 发现模拟的瞬变对比较较好的测量趋势。 模拟比实时更快。 该工具显示了未来探测器冷却系统设计的准备情况。

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