首页> 外文会议>ASME international conference on energy sustainability >SOLAR COLLECTOR EXERGETIC OPTIMIZATION FOR A MULTI EFFECT HUMIDIFICATION DESALINATION PROTOTYPE
【24h】

SOLAR COLLECTOR EXERGETIC OPTIMIZATION FOR A MULTI EFFECT HUMIDIFICATION DESALINATION PROTOTYPE

机译:太阳能收集器Ofergetic优化用于多效加湿海水淡化原型

获取原文

摘要

Venezuela is a country with a great deal of water sources, as a consequence of its location in the Amazon Basin. In spite of this, about 1.6 million inhabitants are dispersed in remote regions throughout the nation, where water distribution is problematic due to the lack of this resource. Since 2007, The Institute of Energy of the Simon Bolivar University has been focused on the development of a 25 liters per day single stage solar Multi-effect Humidification (MEH) desalination plant using a flat plate solar collector. Once the construction of the prototype plant was completed, the characterization of its different components was performed. The one related to the solar collector unit was done on a testing rig designed and constructed according to the ANSI/ASHRAE 93-2003 standard requirements. In order to optimize the operation of this equipment is necessary to maximize the exergetic change of the working fluid across the solar collector, to achieve this objective a numerical simulation using a predictive algorithm and an available yearlong meteorological data was performed. The prediction algorithm was validated against experimental data obtained from the characterization tests. The numerical results obtained were in good agreement with previous related researches. It was found that the best way to operate the solar collector in remote areas and ensure the maximum exergetic gain of the working fluid was to maintain a fix mass flow rate of 0.006 kg/s (0.36 LPM). This corresponds with the climate conditions at Simon Bolivar University and an admission temperature of 54°C, which is the design value of the desalination plant.
机译:委内瑞拉是水源很大的国家,因为它的位置在亚马孙河流域的结果。尽管如此,约1.6万居民分散在全国各地的,其中水分配是有问题的偏远地区,由于缺乏这种资源。 2007年以来,西蒙·玻利瓦尔大学能源研究所一直专注于每天的单级太阳能多效一25升加湿(MEH)海水淡化用平板式太阳能集热设备的开发。一旦原型工厂的建设完成,进行了不同成分的表征。相关的太阳能收集器单元中的一个是在一个试验台根据ANSI / ASHRAE 93-2003标准要求设计和构造来完成。为了优化该设备的操作是必要的,以最大限度地提高太阳能收集器的工作流体的火用变化,使用预测算法,并进行一个可用长达一年的气象数据来达到这个目的的数值模拟。预测算法进行了验证对来自表征试验得到的实验数据。所得到的数值结果与以前的相关研究非常吻合。据发现,操作在偏远地区的太阳能收集器,并确保工作流体的最大火用增益的最佳方式是维持为0.006千克/秒(0.36 LPM)的修复质量流率。这相当于与西蒙玻利瓦尔大学的气候条件和54℃,这是海水淡化厂的设计值承认温度。

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