首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Combined air-cooled condenser layout with in line configured finned tube bundles to improve cooling performance
【24h】

Combined air-cooled condenser layout with in line configured finned tube bundles to improve cooling performance

机译:组合空气冷凝器布局,配有线路配置翅片管束,以提高冷却性能

获取原文
获取原文并翻译 | 示例
           

摘要

Air-cooled condensers (ACCs) are commonly arranged in the A-frame form to extend the heat transfer surface with some well-recognized design flaws that inhibit the cooling performance. For overcoming this geometric defect, the combined natural draft ACC is proposed with the horizontally in line arranged finned tube bundles inside the dry-cooling tower and vertically in line configured bundles outside the tower. A three dimensional CFD method with the realizable k-epsilon model, radiator model and porous media model is developed and experimentally validated. The thermo-flow characteristics of the proposed ACC are analyzed and compared with two types of traditional ACCs. Besides, the effects of the platform heights from 5 m to 50 m are also investigated for the novel ACC layout. The results show that the new proposed ACC can endow with splendid cooling performance at the wind speeds lower than 9 m/s, especially in the absence of winds with the heat transfer rate increased by nearly 20% in comparison with two conventional ones. While at high wind speeds, the traditional ACC with vertically arranged heat exchanger bundles shows the highest cooling efficiency, thus is applicable to the regions with strong prevailing winds. Moreover, for the novel ACC, there exist the optimal platform heights of 15 m and 40 m at the low wind speeds and high wind speeds respectively, which can contribute to the optimal design of natural draft air-cooled condenser in power plants.
机译:风冷的冷凝器(ACC)通常以框架形式布置,以将传热表面延伸,具有抑制冷却性能的一些公认的设计缺陷。为了克服这种几何缺陷,将组合的天然喷射ACC用水平的线路布置在干冷塔内部的翅片管束,并垂直地排成塔外的线路配置的束。具有可实现的K-epsilon模型,散热器模型和多孔介质模型的三维CFD方法,并经过实验验证。分析了所提出的ACC的热流特性,并与两种类型的传统ACC进行比较。此外,对于新颖的ACC布局,还研究了平台高度从5米到50米的平台高度的影响。结果表明,新的建议ACC可以在低于9米/秒的风速下赋予灿烂的冷却性能,特别是在与两个常规速度相比,传热速率的随着风速增加近20%。在高风速时,具有垂直布置的热交换器束的传统ACC显示出最高的冷却效率,因此适用于具有强大普遍风的区域。此外,对于新颖的ACC,分别存在于低风速和高风速的最佳平台高度为15米和40米,这可以有助于发电厂中的天然气吹口冷凝器的最佳设计。

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