首页> 外文期刊>Fusion Engineering and Design >Role of heat exchangers in helium liquefaction cycles: Simulation studies using Collins cycle
【24h】

Role of heat exchangers in helium liquefaction cycles: Simulation studies using Collins cycle

机译:换热器在氦气液化循环中的作用:使用柯林斯循环的模拟研究

获取原文
获取原文并翻译 | 示例
       

摘要

Energy efficiency of large-scale helium liquefiers generally employed in fusion reactors and accelerators is determined by the performance of their constituting components. Simulation with Aspen HYSYS~® V7.0, a commercial process simulator, helps to understand the effects of heat exchanger parameters on the performance of a helium liquefier. Effective UA (product of overall heat transfer coefficient U, heat transfer surface area A and deterioration factor F) has been taken as an independent parameter, which takes into account all thermal irreversibilities and configuration effects. Nondimensionalization of parameters makes the results applicable to plants of any capacity. Rate of liquefaction is found to increase linearly with the effectiveness of heat exchangers. Performance of those heat exchangers that determine the inlet temperatures to expanders have more influence on the liquid production. Variation of sizes of heat exchangers does not affect the optimum rate of flow through expanders. Increasing UA improves the rate of liquid production; however, the improvement saturates at limiting UA. Maximum benefit in liquefaction is obtained when the available heat transfer surface area is distributed in such a way that the effectiveness remains equal for all heat exchangers. Conclusions from this study may be utilized in analyzing and designing large helium plants.
机译:通常在聚变反应堆和促进剂中使用的大型氦液化器的能效取决于其组成成分的性能。使用商业过程模拟器Aspen HYSYS〜®V7.0进行的模拟有助于了解热交换器参数对氦气液化器性能的影响。有效UA(总传热系数U,传热表面积A和劣化因子F的乘积)已被视为一个独立参数,其中考虑了所有热不可逆性和构型效应。参数的无量纲化使结果适用于任何容量的工厂。发现液化速率随热交换器的效率线性增加。那些决定膨胀机入口温度的热交换器的性能对液体产量有更大的影响。热交换器尺寸的变化不会影响通过膨胀机的最佳流量。 UA的增加可提高液体的生产率;但是,改进在限制UA方面达到了饱和。当可用的传热表面积以这样的方式分布时,在液化方面获得最大的收益:对于所有热交换器而言,效率保持相等。这项研究的结论可用于分析和设计大型氦装置。

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