首页> 外文会议>Proceedings of ISES Solar World Congress 2007: Solar Energy and Human Settlement >OPTICAL AND THERMAL PERFORMANCE PREDICTIONS FOR A HIGH CONCENTRATION POINT FOCUS PHOTOVOLTAIC SYSTEM
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OPTICAL AND THERMAL PERFORMANCE PREDICTIONS FOR A HIGH CONCENTRATION POINT FOCUS PHOTOVOLTAIC SYSTEM

机译:高浓度点聚焦光伏系统的光学和热性能预测

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The optical and thermal behaviour of a high concentration point focus Fresnel lens based photovoltaic concentrator system with the potential for large scale power generation in regions with predominantly direct radiation has been investigated. A ray projection technique was used to evaluate the energy capture of the concentrator when located at Denver (39° 45′N, 105°W), USA, predictions of temperature at different sections of the concentrator using a three-dimensional finite difference model have also been made. The beam radiation normal to the concentrator aperture for the tracking approach used with no self shading was calculated to be 1778 kWh m-2 year-1 for the collector located in Denver. For inter trough spacing of 160mm the predicted self shading loss was 14.8%, this reduced to 6.6% when the inter trough spacing was increased to 360mm. For the collector with inter trough spacing of 160mm, when the inter collector spacing of the concentrator increased from 1m to 2m, the predicted annual energy collection for the concentrator increased by 25%, however, further increase of inter-collector spacing had little effect on the energy capture by the collector. Using the three-dimensional finite difference model the temperatures within the collector and at the PV cell have been predicted. The predicted cell temperature reduced from 58.23°C to 48.86°C when the fin thickness increased from 0.2mm to 0.5mm for an illumination of 75 Suns. Increasing fin length from 50mm to 100mm had little effect on the predicted cell temperatures.
机译:已经研究了基于高浓度点聚焦菲涅耳透镜的光伏聚光系统的光学和热行为,该系统在主要是直接辐射的区域具有大规模发电的潜力。当位于美国丹佛(39°45′N,105°W)时,使用射线投影技术评估聚光器的能量捕获,使用三维有限差分模型对聚光器不同区域的温度进行了预测也做了。对于位于丹佛的收集器,对于不带自动遮挡的跟踪方法,垂直于聚光器孔径的光束辐射经计算为1778 kWh m-2 year-1。对于槽间间距为160mm的情况,预测的自遮荫损失为14.8%,当槽间间距增加至360mm时,该值降低至6.6%。对于槽间间距为160mm的集热器,当集中器的集热器间距离从1m增加到2m时,预计该集中器的年能量收集量将增加25%,但是,集电极间的间隔进一步增加对集热器的影响不大。收集器收集的能量。使用三维有限差分模型,可以预测集热器内部和PV电池的温度。当在75个太阳的照射下,翅片厚度从0.2mm增加到0.5mm时,预计的电池温度将从58.23°C降至48.86°C。翅片长度从50mm增加到100mm对预测的电池温度影响很小。

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