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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical evaluation on energy saving potential of the photovoltaic fresh air preheating system in different climate regions of China
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Numerical evaluation on energy saving potential of the photovoltaic fresh air preheating system in different climate regions of China

机译:中国不同气候地区光伏新鲜空气预热系统节能潜力的数值评价

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摘要

The fresh air system in buildings consumes a large amount of energy. To preheat fresh air by using solar energy can effectively reduce the energy consumption of buildings. This paper combines photovoltaic thermal system with air handling unit (AHU) fresh air system to supply buildings with fresh air, and the combined system utilizes photovoltaic (PV) cells to generate electricity while preheating the fresh air at the same time. Based on the control-volume method and zonal approach, a dynamic model suitable for simulating the PV fresh air preheating system in real operating conditions was developed in this paper. A PV fresh air preheating system test platform was set up and tested in Changsha. The model was validated by the data collected under real conditions and the simulated results show a good agreement with the experimental data. The performance of the PV fresh air preheating system and its energy saving potential in four typical cities in different climate regions, Changsha, Beijing, Shenyang and Lhasa respectively, were analyzed. Results show that the performance of the PV fresh air preheating system is mainly affected by the solar radiation. The application of the system in Lhasa can reach the highest energy saving potential among the researched cities, followed by Shenyang and Beijing. Due to the high ambient temperature and poor solar radiation, the monthly average total energy efficiency of Changsha is the lowest among the four cities. The results can provide a theoretical guidance for the application of the PV fresh air preheating system in different climate regions of China.
机译:建筑物中的新空气系统消耗了大量的能量。通过使用太阳能预热新鲜空气可以有效地降低建筑物的能量消耗。本文将光伏热系统与空气处理单元(AHU)的新鲜空气系统结合起来供应新鲜空气的建筑物,并且组合系统利用光伏(PV)电池在同时预热新鲜空气的同时产生电力。基于控制体积方法和区间方法,本文开发了一种适用于模拟PV新鲜空气预热系统的动态模型。在长沙建立并测试了PV新鲜空气预热系统测试平台。通过在真实条件下收集的数据验证该模型,模拟结果与实验数据吻合良好。分析了PV新鲜空气预热系统的表现及其在不同气候区的四个典型城市中的节能潜力,分别分别分别分别进行了分别。结果表明,光伏新鲜空气预热系统的性能主要受太阳辐射的影响。系统在拉萨的应用可以达到研究城市中的最高节能潜力,其次是沉阳和北京。由于环境温度高,太阳辐射差,长沙的月平均总能效率是四个城市中最低的。结果可以为应用PV新鲜空气预热系统在中国不同气候区域的应用提供理论指导。

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