首页> 外文期刊>Desalination >Energy requirement of water production in dual-purpose plants
【24h】

Energy requirement of water production in dual-purpose plants

机译:两用植物生产用水的能源需求

获取原文
获取原文并翻译 | 示例
           

摘要

In dual-purpose plants (DPPs) producing electricity and water, a realistic estimate for the energy requirement of water production is important since the cost of energy can be combined with equipment, operation and maintenance costs to arrive at the total cost of water production. In a multi-stage flash desalination system, the kind of technology currently being used in most of the Arab world, the desalination process requires both thermal and electrical energy input, and the cost of total energy requirement accounts for nearly two-thirds of the water production cost. For a given fuel input, the production of water in a DPP is associated with a reduction in electricity production; the quantum of this reduction is governed mainly by the thermodynamics and design of the DPP. It is important to estimate this loss of electricity in water production to arrive at the thermal energy cost of water production. This paper presents a brief description of different concepts that can be applied to estimate the electricity loss for water production (ELWP) in a cogeneration system through a case study of a power station in Kuwait. The ELWP has been combined with the actual auxiliary consumption of desalination units to estimate the total equivalent electricity for water (TEEW) in kWh for every cubic meter of distilled water produced. The results of the analysis have been applied to two leading power stations in Kuwait. Their values have been found to be in the range of 16-18 kWh/m~3 for one of the power station's and over 22 kWh/m~3 for the other station. They are high compared with around 6 kWh/m~3 of the reverse osmosis system. Finally, for the countries in the Arabian Gulf region, it is recommended that they make a serious effort to develop alternate techniques such as reverse osmosis for seawater desalination.
机译:在生产电力和水的两用工厂(DPP)中,对水生产的能源需求进行现实的估算非常重要,因为能源成本可以与设备,运营和维护成本相结合,以得出水生产的总成本。在多阶段闪蒸淡化系统中(阿拉伯世界大多数地区目前正在使用的一种技术),该淡化过程需要输入热能和电能,并且总能源需求成本约占总水量的三分之二生产成本。对于给定的燃料输入,DPP中的水生产与电力生产的减少有关。这种还原的量主要由DPP的热力学和设计决定。重要的是估算水生产中的电力损失,以得出水生产的热能成本。本文简要介绍了不同的概念,这些概念可以通过对科威特一家电厂的案例研究来估算热电联产系统中的水生产用电损失(ELWP)。 ELWP已与海水淡化装置的实际辅助消耗相结合,以估算每生产一立方米蒸馏水所需的总等效水电(kWh)。分析结果已应用于科威特的两个主要电站。已经发现,对于一个电站,它们的值在16-18 kWh / m〜3的范围内,而对于另一个电站,它们的值在22 kWh / m〜3的范围内。与反渗透系统的6 kWh / m〜3相比,它们的功率很高。最后,对于阿拉伯海湾地区的国家,建议他们认真努力开发替代技术,例如用于海水淡化的反渗透技术。

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