首页> 外文会议>ISES solar world congress;IEA SHC International conference on solar heating and cooling for buildings and industry >Optimum design of PV-RO system solar powered sea water desalination without storage in Saudi Arabia (Case study)
【24h】

Optimum design of PV-RO system solar powered sea water desalination without storage in Saudi Arabia (Case study)

机译:在沙特阿拉伯不进行存储的PV-RO系统太阳能海水淡化的最佳设计(案例研究)

获取原文

摘要

Bad effects associated with drinking water are a serious problem in regions with low freshwater supplies and high frequency of droughts, just like Saudi Arabia. Desalination of water is an excellent solution to this issue; but this process uses a great deal of energy which mainly comes from fossil fuels. Power provided by photovoltaic cells for desalination provides a cleaner and cost-effective substitute. The focus of this survey is to find means to run a reverse osmosis desalination plants by the electricity generated by solar cells without storage to find the cost per unit electricity (kWh), and to estimate the highest energy percentage which can be generated by solar panels in day time. That is why reverse osmosis plant was selected for the case study. The data for solar power produced and consumed for desalination of brackish water into potable water is based on actual measurements acquired from the direct observation of reverse osmosis desalination facility located in Saudi Arabia. It was observed that during summer months, larger amount of solar energy is produced as compared to the winter months because of greater day hours in summer. It was found that the maximum electrical power generated at midday by the photovoltaic solar plant lies within the range of 9.15 MWh to 17.95 MWh. By studying the results of the chosen plant as a case study, it was found that the percentage of non-usable energy is less than 2% in a plant whose size is 20 MW. In this case. 20 per cent of totally consumed energy could be provided at the price around 0.025 €/kwh. The expenses for power produced exceeds 0.036 €/kwh when the plant is greater than 60 MWp.
机译:像沙特阿拉伯一样,在淡水供应不足和干旱频发的地区,与饮用水有关的不良影响是一个严重的问题。将水脱盐是解决此问题的极好方法。但是此过程使用了大量能源,这些能源主要来自化石燃料。光伏电池提供的用于淡化的电力提供了一种更清洁,更具成本效益的替代方案。这项调查的重点是找到一种方法,利用没有存储的太阳能电池发电来运行反渗透海水淡化厂,以求出每度电的成本(kWh),并估算太阳能电池板可产生的最高能量百分比在白天的时间。这就是为什么选择反渗透设备进行案例研究的原因。将微咸水淡化为饮用水所产生和消耗的太阳能数据是基于对位于沙特阿拉伯的反渗透淡化设施进行直接观测而获得的实际测量结果。据观察,由于夏季白天较多,与冬季相比,夏季产生的太阳能量更大。已发现,光伏太阳能发电厂在中午产生的最大电力在9.15 MWh至17.95 MWh的范围内。通过对所选电厂的结果进行案例研究,发现在规模为20兆瓦的电厂中,不可用能源的百分比小于2%。在这种情况下。可以按0.025欧元/千瓦时左右的价格提供总消耗能源的20%。当电厂大于60 MWp时,发电成本超过0.036€/ kwh。

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