首页> 外文期刊>International Journal of Sustainable Built Environment >Techno-economic analysis of hybrid power system sizing applied to small desalination plants for sustainable operation
【24h】

Techno-economic analysis of hybrid power system sizing applied to small desalination plants for sustainable operation

机译:小型海水淡化厂可持续发展混合动力系统选型的技术经济分析

获取原文
       

摘要

Water and energy are two inseparable commodities that govern the lives of humanity and promote civilization. Energy can be used to produce water in case of scarcity in water. Ironically most of the places that are water stressed are also energy stressed. The cost of extending grid power may be prohibitively high in those cases. Rural/remote locations like hills and islands multiply the problem to a larger magnitude. Use of renewable sources like solar, wind, biomass and other locally available energy sources is the only solution. But these renewable sources are of intermittent nature and have poor availability. Hence, it is practically difficult to produce water with a single source of energy. Naturally, combining two or more sources of energy, known as hybrid power system, is the next available option. This paper carries out a techno-economic analysis of various sizing combinations of systems with solar photo voltaic, wind energy and stored energy in batteries for production of drinking water from a brackish water source. The system can operate the RO plant whenever the power is available, produce drinking water and store in a tank. This paper analyses the model of the entire hybrid power system in MATLAB to simulate the performance of the hybrid power system for different combinations of capacities. Results of the analysis under various input conditions are analyzed.
机译:水和能源是支配人类生活和促进文明的两种不可分割的商品。在水短缺的情况下,可以使用能源生产水。具有讽刺意味的是,大多数缺水的地方也能源紧张。在这些情况下,扩展电网功率的成本可能会高得令人望而却步。农村/偏远地区(如丘陵和岛屿)使问题更加严重。唯一的解决方案是使用可再生能源,例如太阳能,风能,生物质能和其他本地可用的能源。但是这些可再生资源具有间歇性,并且可用性很差。因此,用单一能源生产水实际上是困难的。当然,将两个或多个能源(称为混合动力系统)结合起来是下一个可用的选择。本文对太阳能光伏,风能和电池中存储的能量的系统的各种尺寸组合进行了技术经济分析,这些电池用于从微咸水源生产饮用水。只要有电源,该系统就可以运行反渗透设备,产生饮用水并将其存储在水箱中。本文在MATLAB中分析了整个混合动力系统的模型,以模拟不同容量组合下混合动力系统的性能。分析各种输入条件下的分析结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号