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A sensitivity study of a hybrid photovoltaic/thermal water-heating system with natural circulation

机译:具有自然循环的光伏/热水混合加热系统的灵敏度研究

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A flat-box aluminum-alloy photovoltaic and water-heating system designed for natural circulation was constructed. The hybrid photovoltaic/thermal (PV/T) collector was an integration of single-crystalline silicon cells into a solar thermal collector. The product was able to generate electricity and hot water simultaneously. Outdoor tests on an improved prototype were conducted in a moderate climate zone. Then dynamic simulation runs, using a validated numerical model, were performed. These included sensitivity tests with variations of the system water mass, PV cell covering factor, and front glazing transmissivity. The test results showed that the characteristic daily primary-energy saving could reach up to 65% for this system with a PV cell covering factor 0.63 and front glazing transmissivity of 0.83, when the hot water load per unit heat-collecting area exceeded 80 kg/m~2. The simulated results indicated that the higher the PV cell covering factor and the glazing transmissivity, the better the overall system performance. The effects were quantified.
机译:建造了一个专为自然循环而设计的扁平箱式铝合金光伏和热水系统。混合光伏/热(PV / T)集热器是将单晶硅电池集成到太阳能集热器中。该产品能够同时发电和热水。在温和的气候区对改进的原型进行了室外测试。然后,使用经过验证的数值模型进行动态仿真。这些包括灵敏度测试,其中包含系统水量,PV电池覆盖因子和前玻璃透光率的变化。测试结果表明,当每单位集热面积的热水负荷超过80 kg /时,该系统的特征性每日一次能源节省可以达到该系统的65%,PV电池覆盖系数为0.63,前玻璃透射率为0.83。 m〜2仿真结果表明,PV电池的覆盖系数和玻璃透光率越高,整个系统的性能越好。量化效果。

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