Qamar Shabahat Hasnain, Hanak Dawid Piotr, Ali Majid, Gomes Joao, Khan Khalid Zia
Department of Mechanical Engineering, National University of Sciences and Technology (NUST), Islamabad, Pakistan.
Net Zero Industry Innovation Centre, Teesside University, Ferrous Road, Middlesbrough, TS2 1DJ, UK.
Sci Rep. 2024 Oct 25;14(1):25351. doi: 10.1038/s41598-024-74187-w.
Climate change, as a critical global concern, has fueled our efforts to address it through different strategies. In response to the critical worldwide issue of climate change, we suggested a Photovoltaic (PV) system at the National University of Sciences and Technology (NUST) in Islamabad, Pakistan (latitude: 33.724530 N, longitude: 73.046869, terrain elevation: 552 m). Islamabad is located in a region blessed with enormous solar resources, boasting a daily horizontal solar irradiance of 1503.45 kWh/m and an average daily solar irradiance of 5.89 kWh/m, with an exceptional solar fraction of 98.99%. The ambient air temperature, averaging 23.21 °C, reaches its maximum in June and its minimum in December. Our research thoroughly evaluates the system's performance, accounting for various losses and utilizing modern PVsyst software. Over the course of 18 years, our PV system is expected to save 75,478.60 tons of CO, the equivalent of planting 348,754 teak trees. Furthermore, the cost of energy generation is an affordable 0.0141 US $/kWh, much lower than traditional rates, including the Sherif cost of 0.028$/kWh. Along with the performance research, we conducted a detailed cost analysis, projecting the starting cost and cash flow, and discovered that the plant would be in surplus within 12 years of installation. Our system is positioned to generate 11,270,771 kWh/year with a respectable performance ratio (PR) of 76.2% and a Capacity Utilization Factor (CUF) of 16%. Our findings not only highlight the potential of renewable energy but also provide important insights for future sustainable energy programs.
气候变化作为一个关键的全球问题,促使我们通过不同策略来努力应对。为响应全球气候变化这一重大问题,我们在巴基斯坦伊斯兰堡的国立科技大学(NUST)(纬度:北纬33.724530,经度:东经73.046869,地形海拔:552米)提议安装一个光伏(PV)系统。伊斯兰堡所在地区拥有丰富的太阳能资源,每日水平太阳辐照度为1503.45千瓦时/平方米,平均每日太阳辐照度为5.89千瓦时/平方米,太阳能占比高达98.99%。环境空气温度平均为23.21°C,6月达到最高,12月达到最低。我们的研究通过考虑各种损失并利用现代PVsyst软件,全面评估了该系统的性能。在18年的时间里,我们的光伏系统预计可节省75,478.60吨二氧化碳,相当于种植348,754棵柚木树。此外,发电成本为实惠的0.0141美元/千瓦时,远低于传统电价,包括谢里夫电价的0.028美元/千瓦时。在进行性能研究的同时,我们还进行了详细的成本分析,预测了初始成本和现金流,发现该电站在安装后12年内将实现盈余。我们的系统预计每年发电量为11,270,771千瓦时,性能比(PR)为76.2%,容量利用率(CUF)为16%。我们的研究结果不仅突出了可再生能源的潜力,也为未来的可持续能源项目提供了重要见解。