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Evaluation and comparison of different flow configurations PVT systems in Oman: A numerical and experimental investigation

机译:不同流量配置PVT系统的评估与比较阿曼:数值和实验研究

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The electrical efficiency of photovoltaic modules reduces with increase in cell temperature. However, using photovoltaic/thermal systems to enhance thermal, electrical, and overall outcomes is an excellent option. In this study, three water cooling PVT systems that have variable flow channels (web type, direct type, spiral type) installed, tested, evaluated, and compared with conventional PV in terms of electrical performance. The systems were tested outdoor in Sohar, Oman. The water mass flow rate was tested at 40 kg/h. The proposed systems reduced cell temperature on average by a minimum of 3 degrees C. The temperature reduction improves the voltage, power, and efficiency significantly. The highest average maximum voltage, current and power were observed for the spiral flow PVT system, which are 17.7 V, 2.89 A and 51.3 W, respectively. The overall efficiency for the conventional PV, web, direct and spiral type PVT systems were around 7.8%, 18.5%, 28.0% and 35.0%, respectively. The spiral flow collector found to produce the best efficiency compared to web and direct flow collectors. The results confirm that the use of the proposed PVT design is very suitable for the Sultanate of Oman and neighboring countries with similar environmental conditions.
机译:光伏模块的电效率随着细胞温度的增加而降低。然而,使用光伏/热系统来增强热,电气和整体结果是一个很好的选择。在这项研究中,三种水冷PVT系统,其具有安装,测试,评估和与电气性能的传统光伏相比安装了可变流量通道(网型,直接型,螺旋型)。该系统在阿曼Sohar进行了户外测试。水质量流速以40kg / h测试。所提出的系统平均降低了细胞温度,最小3摄氏度。温度降低可显着提高电压,功率和效率。为螺旋流量PVT系统观察到最高的平均最大电压,电流和功率,分别为17.7V,2.89A和51.3W。传统光伏,纤维网,直接和螺旋型PVT系统的整体效率分别约为7.8%,18.5%,28.0%和35.0%。与网和直接流量收集器相比,发现螺旋流量收集器产生了最佳效率。结果证实,使用所提出的PVT设计非常适合阿曼和邻国具有类似环境条件的苏丹国。

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