首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >LONGER PASSAGE OF AIRFLOW IN MULTIPLE PACKED-BED THIN TANKS VERSUS IN A SHORT BIG TANK FOR IMPROVED THERMAL STORAGE PERFORMANCE
【24h】

LONGER PASSAGE OF AIRFLOW IN MULTIPLE PACKED-BED THIN TANKS VERSUS IN A SHORT BIG TANK FOR IMPROVED THERMAL STORAGE PERFORMANCE

机译:在多个填充床薄罐中的气流通过短大型罐中的较长通道,可提高热存储性能

获取原文

摘要

A very challenging issue about solar thermal power generation is the use of a high temperature heat transfer fluid (water, oils, or molten salts) for heat transfer and thermal storage material, which may freeze at night or cold weather. When choosing air as the heat transfer fluid, the problem of freezing is eliminated. In order to increase the performance of thermal storage system which uses air as the heat transfer fluid passing through a packed bed (by ceramic spheres of Al_2O_3), multiple small-diameter tanks are considered to replace a single large-diameter tank with the same packed-bed volume and airflow rate in this paper. Analysis about the thermal storage performance in a short big tank and in cascade thin tanks has been made for comparison. A long passage of airflow and faster flow speed of air in the cascade thin tanks has been found significantly beneficial to thermal storage. Results about the increased thermal storage performance and increased pressure loss will be presented. Longer passage of airflow made it possible to have a longer time of high temperature of outflow air during discharging period. And faster speed of the fluid enhanced the heat transfer between air and thermal storage material. The total effective energy and thermal storage efficiency of cascade thin-tank thermal energy storage (TES) are higher. The thermal storage efficiency in the two types of thermal storage arrangement was compared for optimal design. The obtained results are of great significance to the development of using air as heat transfer fluid and rocks or ceramic spheres as the thermal storage material for thermal storage system in concentrated solar thermal power plants.
机译:关于太阳能热发电的一个非常具有挑战性的问题是使用高温传热液(水,油或熔盐)进行热传递和热储存材料,这可能在夜间或寒冷的​​天气下冻结。选择空气作为传热流体时,消除了冷冻的问题。为了提高使用空气作为通过穿过填充床的传热流体的热存储系统的性能(通过AL_2O_3的陶瓷球),多个小直径罐被认为是用相同包装的单个大直径罐更换单个大直径箱本文的体积和气流率。对短大罐和级联薄罐中的热储存性能进行了分析进行了比较。已经发现级联薄罐中的空气流量和更快的流动速度的长通道显着利用了热储存。结果提高了热储存性能增加,增加了压力损失。在放电时段期间,气流的较长通道使得可以具有更长的高温的流出空气。流体的速度更快地增强了空气和热储存材料之间的传热。级联薄罐热能存储(TES)的总有效能量和热储存效率更高。比较了两种类型的热存储装置中的热存储效率以获得最佳设计。所获得的结果对使用空气作为传热流体和岩石或陶瓷球作为浓缩太阳能热电厂中的热存储系统的热储存材料的发展具有重要意义。

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