利用WRF(Weather Research and Forecasting)模式耦合Noah陆面过程模式,模拟了兰州地区冬季气象场,并用观测资料对模拟结果进行了检验。利用2006年中分辨率成像分光辐射计(MODIS)植被归一化指数(NDVI)计算得到的植被覆盖度替换模式默认...利用WRF(Weather Research and Forecasting)模式耦合Noah陆面过程模式,模拟了兰州地区冬季气象场,并用观测资料对模拟结果进行了检验。利用2006年中分辨率成像分光辐射计(MODIS)植被归一化指数(NDVI)计算得到的植被覆盖度替换模式默认的植被覆盖度,研究了植被覆盖度对WRF模式模拟结果的影响。结果表明,新的植被覆盖度数据使研究区域的地表反照率减小,发射率增加,感热通量白天增加、夜间减小;还明显地改进了WRF模式对近地面温度和风速的模拟;植被覆盖度对地表蒸发有很大影响,冬季干旱半干旱地区的植被基本处于休眠状态,地表蒸发以直接蒸发为主,使用新的植被覆盖度数据后,模拟区域的植被覆盖度增加,地表蒸发减小,近地面水汽含量减少,WRF模式模拟的边界层高度增大。展开更多
High-temperature solar thermal power station with solar energy storage is one of the effective ways to solve energy shortage and environmental pollution. The heat storage characteristics of phase change materials in s...High-temperature solar thermal power station with solar energy storage is one of the effective ways to solve energy shortage and environmental pollution. The heat storage characteristics of phase change materials in solar energy storage tanks directly affect the performance of the system and its future promotion and utilization. Based on the knowledge of heat transfer, fluid mechanics and engineering thermodynamics, this paper uses MATLAB software to compile the dynamic heat storage characteristics calculation program of phase change materials in energy storage tanks, and verify the results. This paper analyzes the phase change heat storage process with three PCM initial temperatures and three HTF speeds. The results show that when the initial temperature of the PCM changes from 185°C to 210°C, the latent heat storage heat increases by 21.8%, and the total heat storage decreases. Increasing the HTF speed from 1.8 m/s to 2.2 m/s, the melting time was reduced from 414 minutes to 390 minutes, and the total heat storage and sensible heat storage were also increased. The results also show that changing the initial temperature of the PCM and the flow rate of the HTF will change the thermal storage performance of the system. The research has certain reference significance for mastering the basic principle of high temperature solar thermal power generation system and promoting the application of the system.展开更多
文摘利用WRF(Weather Research and Forecasting)模式耦合Noah陆面过程模式,模拟了兰州地区冬季气象场,并用观测资料对模拟结果进行了检验。利用2006年中分辨率成像分光辐射计(MODIS)植被归一化指数(NDVI)计算得到的植被覆盖度替换模式默认的植被覆盖度,研究了植被覆盖度对WRF模式模拟结果的影响。结果表明,新的植被覆盖度数据使研究区域的地表反照率减小,发射率增加,感热通量白天增加、夜间减小;还明显地改进了WRF模式对近地面温度和风速的模拟;植被覆盖度对地表蒸发有很大影响,冬季干旱半干旱地区的植被基本处于休眠状态,地表蒸发以直接蒸发为主,使用新的植被覆盖度数据后,模拟区域的植被覆盖度增加,地表蒸发减小,近地面水汽含量减少,WRF模式模拟的边界层高度增大。
基金supported by the National Natural Science Foundation of China (Grant Nos. 51876147 and 51406033)
文摘High-temperature solar thermal power station with solar energy storage is one of the effective ways to solve energy shortage and environmental pollution. The heat storage characteristics of phase change materials in solar energy storage tanks directly affect the performance of the system and its future promotion and utilization. Based on the knowledge of heat transfer, fluid mechanics and engineering thermodynamics, this paper uses MATLAB software to compile the dynamic heat storage characteristics calculation program of phase change materials in energy storage tanks, and verify the results. This paper analyzes the phase change heat storage process with three PCM initial temperatures and three HTF speeds. The results show that when the initial temperature of the PCM changes from 185°C to 210°C, the latent heat storage heat increases by 21.8%, and the total heat storage decreases. Increasing the HTF speed from 1.8 m/s to 2.2 m/s, the melting time was reduced from 414 minutes to 390 minutes, and the total heat storage and sensible heat storage were also increased. The results also show that changing the initial temperature of the PCM and the flow rate of the HTF will change the thermal storage performance of the system. The research has certain reference significance for mastering the basic principle of high temperature solar thermal power generation system and promoting the application of the system.