Application of Photovoltaic Systems in Field Observation and Research Stations: Research on the Relationship between Power Generation Scale and Electricity Consumption to Improve Photovoltaic Application in Field Observation Stations

IF 2.1 4区 工程技术 Q3 CHEMISTRY, PHYSICAL International Journal of Photoenergy Pub Date : 2023-04-17 DOI:10.1155/2023/6701631
Jianan Yao, Junfeng Zhu, Binbin Wang, Junkui Niu, Wenbing Liu, Long Chen, Yifan Song
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Abstract

Most field scientific observation and research stations are located at the end of power grids which are usually not extended to such areas. Consequently, the power supply of equipment in field observation stations cannot be guaranteed. Meanwhile, regions with poor ecosystem stability are relatively sensitive to environmental changes and thus prone to degradation and succession due to external interference. In this paper, the photovoltaic (PV) power generation system of a grassland ecohydrological field scientific observation and research station was taken as the research object. Two kinds of distributed PV power generation systems were simulated and analyzed by use of PVsyst software. The total power of laboratory equipment, PV power generation efficiency, and system cost of the field observation station were calculated and analyzed. The design scheme and scale of PV power generation systems suitable for field observation stations were determined. Finally, a PV power generation test system was set up, and PV power generation data were sorted out. The feasibility of the design scheme of PV power generation systems was verified by analyzing the relationship between the simulated and actual power generation of systems and that between the daily energy use proportions of field observation stations. Besides, the environmental benefits of PV systems were analyzed, and their amount of energy saving and emission reduction was calculated. This study can solve the issue of the low power supply guarantee rate of field observation stations, provide a design basis and beneficial reference for the construction of environment-friendly field laboratory stations, and realize green energy saving and the sustainable use of energy while protecting the ecosystem from being destroyed.
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光伏系统在野外观测研究站的应用——研究发电规模与用电量的关系,提高光伏在野外观测站的应用
大多数实地科学观测和研究站都位于电网的末端,而电网通常不会延伸到这些地区。因此,无法保证现场观测站设备的供电。同时,生态系统稳定性较差的地区对环境变化相对敏感,容易因外部干扰而退化和演替。本文以草原生态水文野外科学观测研究站的光伏发电系统为研究对象。利用PVsyst软件对两种分布式光伏发电系统进行了仿真分析。对现场观测站的实验室设备总功率、光伏发电效率和系统成本进行了计算和分析。确定了适合野外观测站的光伏发电系统的设计方案和规模。最后,建立了光伏发电测试系统,对光伏发电数据进行了整理。通过分析系统模拟发电量与实际发电量以及现场观测站日用能比例之间的关系,验证了光伏发电系统设计方案的可行性。此外,还对光伏系统的环境效益进行了分析,计算了其节能减排量。本研究可以解决野外观测站供电保障率低的问题,为建设环境友好型野外实验室站提供设计依据和有益参考,在保护生态系统不受破坏的同时,实现绿色节能和能源的可持续利用。
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来源期刊
CiteScore
6.00
自引率
3.10%
发文量
128
审稿时长
3.6 months
期刊介绍: International Journal of Photoenergy is a peer-reviewed, open access journal that publishes original research articles as well as review articles in all areas of photoenergy. The journal consolidates research activities in photochemistry and solar energy utilization into a single and unique forum for discussing and sharing knowledge. The journal covers the following topics and applications: - Photocatalysis - Photostability and Toxicity of Drugs and UV-Photoprotection - Solar Energy - Artificial Light Harvesting Systems - Photomedicine - Photo Nanosystems - Nano Tools for Solar Energy and Photochemistry - Solar Chemistry - Photochromism - Organic Light-Emitting Diodes - PV Systems - Nano Structured Solar Cells
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