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严寒地区空气-土壤双热源热泵运行性能分析 被引量:2
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作者 王宏伟 尹翠 李刚 《建筑技术》 北大核心 2016年第10期886-889,共4页
在沈阳某节能建筑中,空气–土壤源双热源热泵系统有效地利用光伏板的光热转换部分热量作为空气源,避免了空气源热泵在严寒地区应用的结霜问题,减少了土壤源热泵的布井面积。利用TRNSYS软件建立仿真模型,选取系统的主要模块,对双热源热... 在沈阳某节能建筑中,空气–土壤源双热源热泵系统有效地利用光伏板的光热转换部分热量作为空气源,避免了空气源热泵在严寒地区应用的结霜问题,减少了土壤源热泵的布井面积。利用TRNSYS软件建立仿真模型,选取系统的主要模块,对双热源热泵运行性能进行冬夏两季模拟分析,结果证明双热源热泵比单一土壤源热泵系统运行更稳定且COP值更高,更具有可靠性。 展开更多
关键词 热泵机组 光伏板 TRNSYS
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Simulation and Implementation of Solar Powered Electric Vehicle
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作者 A. Bharathi Sankar R. Seyezhai 《Circuits and Systems》 2016年第6期643-661,共19页
The rise in the price of oil and pollution issues has increased the interest on the development of electric vehicles. This paper discusses about the application of solar energy to power up the vehicle. The basic princ... The rise in the price of oil and pollution issues has increased the interest on the development of electric vehicles. This paper discusses about the application of solar energy to power up the vehicle. The basic principle of solar based electric vehicle is to use energy that is stored in a battery to drive the motor and it moves the vehicle in forward or reverse direction. The Photo Voltaic (PV) module may be connected either in parallel or series, and the charge controllers direct this solar power to the batteries. The DC voltage from the PV panel is then boosted up using a boost DC-DC converter, and then an inverter, where DC power is converted to AC power, ultimately runs the Brushless DC motor which is used as the drive motor for the vehicle application. This paper focuses on the design, simulation and implementation of the various components, namely: solar panel, charge controller, battery, DC-DC boost converter, DC-AC power converter (inverter circuit) and BLDC motor for the vehicle application. All these components are modeled in MATLAB/SIMULINK and in real-time, the hardware integration of the system is developed and tested to verify the simulation results. 展开更多
关键词 photo voltaic panel DC-DC Converter Brushless DC Motor Electric Vehicle
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