首页> 外文会议>Intelligent System Design and Engineering Application (ISDEA), 2012 Second International Conference on >Numerical Simulation of Heat Charging Process for Solar Heating Units with Metal Phase Change Thermal Storage
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Numerical Simulation of Heat Charging Process for Solar Heating Units with Metal Phase Change Thermal Storage

机译:金属相变蓄热的太阳能采暖机组热装过程的数值模拟

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摘要

Phase change thermal storage is an important mode of solar thermal energy storage. In the paper, the heat charging processes of solar heating units were simulated under three kinds of heat flux (400,600 and 800kW/m2) at the bottom face respectively. Al-Si alloy was selected as phase change materials used in the cylindrical body of the units which were in 3 sizes with the length to diameter ratio of 1 and 2. The change of temperature and solid-liquid phase change interface of Al-Si alloy were analyzed to find out the suitable structure of thermal energy storage units which can run safety under the condition of temperature 700~910K and heat flux 400~800kW/m2, such as the application of solar thermal energy storage unit in high temperature solar thermal power stations.
机译:相变储热是太阳能储热的重要方式。本文分别在底面的三种热通量(400,600和800kW / m 2 )下模拟了太阳能加热装置的热充过程。选择Al-Si合金作为单元圆柱体中使用的相变材料,这些单元具有3种尺寸,长径比为1和2。Al-Si合金的温度变化和固液相变界面通过分析发现合适的储热单元结构,可以在温度700〜910K和热通量400〜800kW / m 2 的条件下安全运行,例如太阳能热能的应用高温太阳能热电站中的存储单元。

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