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Analysis of thermal storage performances of solar thermal power generation unit using computer numerical simulation analysis

机译:计算机数值模拟分析分析太阳能热发电单元的热存储性能

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摘要

Objective: In this study, the single tank inclined layer heat storage system is simulated and analyzed by computer, so as to explore the performance of the heat storage device of the solar thermal generator system. Method: First of all, for the phase change thermal storage unit, its physical model of is established. Heat transfer fluid is Hitec salt, and phase change material is potassium nitrate. Then, as for the phase change thermal storage unit, its numerical model of is established. The simulation results of the numerical model are verified. Finally, through numerical simulation, how do the inlet velocity of the heat exchange fluid and the ambient temperature influence the heat storage performance is analyzed. Results: The heat storage period of the regenerator will decrease when the inlet velocity of the heat exchange fluid increases, but the heat storage efficiency of the regenerator will decrease. Therefore, in this study, under the premise of ensuring a higher heat storage efficiency and a shorter heat storage cycle, it is more reasonable to choose 0.25 m/s as the inlet velocity. In winter and summer, it is necessary to insulate the tank. On the one hand, the heat loss can be reduced. On the other hand, the heat storage efficiency of single tank can be improved. Conclusion: Analysing the efficiency of the single tank thermal storage device can provide a reference for the optimal design of the solar heat plant thermal storage tank, and lay a certain foundation for its theoretical and experimental research.
机译:目的:在本研究中,通过计算机模拟和分析单罐倾斜层蓄热系统,以探讨太阳能热发电机系统的蓄热装置的性能。方法:首先,对于相变热存储单元,其物理模型建立。传热流体是Higec盐,相变材料是硝酸钾。然后,如相变热存储单元,建立其数值模型。验证了数值模型的仿真结果。最后,通过数值模拟,分析了热交换流体的入口速度和环境温度影响的热存储性能的进口速度。结果:当热交换流体的入口速度增加时,再生器的蓄热周期将减小,但再生器的蓄热效率将减小。因此,在本研究中,在确保更高的蓄热效率和较短的储热循环的前提下,选择0.25m / s作为入口速度更合理。在冬季和夏季,有必要隔离坦克。一方面,可以减少热量损失。另一方面,可以改善单罐的蓄热效率。结论:分析单罐热存储装置的效率可以为太阳能热厂热储罐的最佳设计提供参考,为其理论和实验研究奠定了一定的基础。

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