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Sequential optimization of a solar stirling system

机译:太阳能斯特林系统的顺序优化

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The use of solar energy to produce mechanical or electrical energy is presently a good related to environmental concern and sustainable power production. We propose in this paper to develop a model of a Thermomechanical solar system, with a Stirling engine. The presented model is a first step in the optimization of the main functional parameters, using only thermodynamics of the system (whatever the kinematics). So we focus on optimal control of system temperatures, and physical dimensions optimal allocation. The heat exchangers model uses ε, the thermal effectiveness of the heat exchangers (HEX) and the number of heat transfer units (NTU), and allows us to show that an optimal way to allocate in heat exchangers effectiveness, the heat capacity rates at the hot and cold side of the system is possible. The sensitivity of the model to parameters variation is reported and future improvements of the work are proposed.
机译:当前,使用太阳能产生机械能或电能与环境问题和可持续电力生产密切相关。我们建议在本文中开发一个具有斯特林发动机的热机械太阳系模型。提出的模型是仅使用系统的热力学(无论运动学如何)来优化主要功能参数的第一步。因此,我们专注于系统温度的最佳控制和物理尺寸的最佳分配。换热器模型使用ε,换热器的热效率(HEX)和传热单元数(NTU),并让我们证明了分配换热器效率的最佳方法是:系统的冷热面都是可能的。报告了模型对参数变化的敏感性,并提出了工作的进一步改进。

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