首页> 外文会议>ICONE18;International conference on nuclear engineering >DIMENSIONLESS ANALYSIS OF PRESSURE DROP AND HEAT TRANSFER ON HTGR COUPLED WITH CLOSED BRAYTON CYCLE
【24h】

DIMENSIONLESS ANALYSIS OF PRESSURE DROP AND HEAT TRANSFER ON HTGR COUPLED WITH CLOSED BRAYTON CYCLE

机译:封闭式布雷顿循环耦合的HTGR压力降和传热的无量纲分析

获取原文

摘要

High temperature gas-cooled reactor with direct helium turbine cycle is based on the closed Brayton cycle. Its outstanding feature is the high efficiency of power generation. Pervious researches showed that recuperator was the key component to promote the cycle's efficiency. And pressure drops in components were unavoidable in actual projects and had significant influence on cycle efficiency.A dimensionless model was proposed to analyze cycle's features of HTGR coupled with gas turbine. The parameters' effect on cycle's efficiency was analyzed, with full consideration of the frictional and local pressure drops respectively. Under the restriction of materials and state-of-art of technologies, it showed that the cycle's efficiency depended on compression ratio, recuperator's effectiveness and pressure drops of components. However the pressure drop ratios of different components were inherently connected due to the closed cycle. Furthermore pressure drops inside the recuperator were also the function of effectiveness of the heat transfer based on the Reynolds analogy. Therefore cycle's efficiency just depended on recuperator's effectiveness with fixed compression ratio. So there existed optimal recuperator's effectiveness and maximum cycle's efficiency, which varied with the pressure ratio and other parameters as temperature ratio. The calculation also indicatedthat the pressure drop in pipes was close to that in heat exchangers. That was, the local pressure drop and frictional pressure drop should be considered respectively, and the local pressure drop made quite large reduction of cycle's efficiency. The result also showed that local pressure drop had great influence on parameters such as optimal compression ratio and recuperator's effectiveness;
机译:具有直接氦气涡轮循环的高温气冷堆基于封闭的布雷顿循环。它的突出特点是发电效率高。以往的研究表明,换热器是提高循环效率的关键因素。在实际项目中,组件的压降是不可避免的,并且对循环效率有重大影响。 提出了一种无量纲模型来分析燃气轮机与燃气轮机的高温气冷堆的循环特性。分析了参数对循环效率的影响,分别充分考虑了摩擦压降和局部压降。在材料和技术水平的限制下,研究表明循环的效率取决于压缩比,换热器的有效性和部件的压降。然而,由于闭环,不同部件的压降率固有地联系在一起。此外,基于雷诺兹比喻,换热器内部的压降也是传热效率的函数。因此,循环效率仅取决于换热器在固定压缩比下的效率。因此,存在最佳的换热器效率和最大循环效率,它们随压力比和其他参数(如温度比)而变化。计算还表明,管道中的压降与热交换器中的压降接近。也就是说,应该分别考虑局部压降和摩擦压降,并且局部压降极大地降低了循环效率。结果还表明,局部压降对最佳压缩比和换热器效率等参数影响较大。

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