Performance Assessment of Solar Ice Slurry Cold Storage System for Solar Refrigerated Vehicle

Kai Zhang, Xinyu Wang, Yezhu Jin, Yuguo Gao
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Abstract

This article mainly analyzes the ice slurry cold storage system in solar refrigerated vehicles, calculates and studies the thermal properties of the ice slurry, the cold load of the refrigerated vehicle, and the solar photovoltaic panels, and calculates the fuel savings of using solar power generation. Study the demand for ice slurry in ice slurry storage systems under different energy utilization efficiencies, analyze the economy of solar ice slurry generation systems, and calculate the recovery period of the system in this paper. The daily power generation of solar photovoltaic panels can run the electric motor for 2.93 hours. The solar refrigerated truck can save 7.91 liters of oil per day and reduce carbon dioxide emissions by 1.25×107 liters per day. The average annual electricity cost savings are 4026.67 CNY. Based on the total cost of the photovoltaic energy storage hybrid quality system, it will take 3.89 years to recover the cost. Calculate the density and enthalpy of the ice slurry based on the thermophysical model of the ice slurry, and provide different utilization amounts for the ice slurry mass generated by the ice slurry generation system at different efficiencies. Calculate the total weight of the ice slurry system.
太阳能冷藏车的太阳能冰浆冷藏系统性能评估
本文主要分析了太阳能冷藏车中的冰浆冷藏系统,对冰浆的热性能、冷藏车的冷负荷、太阳能光伏板进行了计算和研究,并计算了利用太阳能发电所节约的燃料。本文研究了不同能源利用效率下冰浆储存系统对冰浆的需求,分析了太阳能冰浆发电系统的经济性,并计算了系统的回收期。太阳能光伏板的日发电量可使电动机运行 2.93 小时。太阳能冷藏车每天可节油 7.91 升,每天可减少二氧化碳排放 1.25×107 升。平均每年可节约电费 4026.67 元人民币。按照光伏储能混合质量系统的总成本计算,需要 3.89 年才能收回成本。根据冰浆的热物理模型计算冰浆的密度和焓,并提供冰浆发电系统在不同效率下产生的冰浆质量的不同利用量。计算冰浆系统的总重量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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