固体填充蓄热抛物面槽太阳能热收集系统建模

Mengyao Xu, Yang Liu, Juecen Mao, L. Pan
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引用次数: 0

摘要

聚光太阳能发电技术作为一种重要的太阳能利用方式受到了广泛的关注,而蓄热系统可以弥补聚光太阳能发电系统的随机性和间歇性。因此,对槽式太阳能收集系统和蓄热系统进行建模和仿真具有重要意义。首先,采用机理建模方法建立了太阳能系统、镜面场集热系统和管道传热系统的动力学模型;分析比较了不同流量和光照强度对管壁温度、流体温度等系统参数的影响。验证结果表明,该模型能有效地反映集热系统的实际动态特性。其次,根据能量和质量守恒定律,建立了固体填充材料的单罐蓄热系统的一维模型,并与零维模型进行了比较。分析比较了孔隙率、填充材料等关键因素对单罐温跃层的影响,表明该模型能够较准确地预测温跃层的温度变化、热分层等特性。该模型为聚光太阳能发电系统的优化设计提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling on Parabolic Trough Solar Thermal Power Collection System with Solid-filling Heat Storage System
As an important way of utilizing solar energy, concentrating solar power technology has received extensive attention, while thermal storage system can remedy the randomness and intermittency of the concentrating solar power generation system. Hence, there is the significance to model and simulate the trough solar collection system and heat storage system. First, the dynamic models of the solar system, the mirror field heat collection system and the pipe heat transferring system are built using the mechanism modeling method. The effects of different flow rate and light intensity on system parameters like pipe wall temperature and fluid temperature are analyzed and compared. The verification result shows that the model can effectively reflect the practical dynamic characteristics of the heat collection system. Second, a one-dimensional model of the single-tank heat storage system with solid filling materials is established according to the energy and mass conservation laws, and compared with the zero dimensional model. The effects of porosity, filling materials and other key factors on the single-tank thermocline are analyzed and compared, showing that the model can predict the temperature change, thermal stratification and other properties of the thermocline with sufficient accuracy. The model provides a theoretical basis for the optimal design of concentrating solar power generation system.
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