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Thermal Model Of A Dish/stirling Systems

机译:盘/斯特林系统的热模型

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This paper presents a global thermal model of the energy conversion of the 10 kW_(e1) Eurodish dish/Stirling unit erected at the CNRS-PROMES laboratory in Odeillo. Using optical measurements made by DLR, the losses by parabola reflectivity and spillage are calculated. A nodal method is used to calculate the heat losses in the cavity by conduction, convection, reflection and thermal radiation. A thermodynamic analysis of a SOLO Stirling 161 engine is made. The Stirling engine is divided in 32 control-volumes and equations of ideal gas, mass and energy conservation are written for each control-volume. The differential equation system is resolved by an iterative method developed using Matlab~(TM) programming environment. Temperature, mass, density of working gas, heat transfers and the mechanical power are calculated for one Stirling engine cycle of 40 ms and for a constant direct normal irradiation (DNI). The model gives consistent results correctly fitting with experimental measurements.
机译:本文介绍了在Odeillo的CNRS-PROMES实验室架设的10 kW_(e1)欧盘/斯特林装置的能量转换的全局热模型。使用DLR进行的光学测量,可以计算出抛物线反射率和泄漏造成的损耗。节点法用于通过传导,对流,反射和热辐射来计算空腔中的热损失。进行了SOLO Stirling 161发动机的热力学分析。斯特林发动机分为32个控制量,并为每个控制量编写了理想气体,质量和能量守恒的方程式。通过使用Matlab〜(TM)编程环境开发的迭代方法解析微分方程组。对于一个40毫秒的斯特林发动机循环和恒定的直接法向辐射(DNI),计算温度,质量,工作气体的密度,热传递和机械功率。该模型可以提供一致的结果,从而正确地与实验测量结果相吻合。

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