首页> 外文会议>ASME International Heat Transfer Conference >SINGLE-PHASE HEAT TRANSFER AND PRESSURE DROP OF WATER COOLED INSIDE HORIZONTAL SMOOTH TUBES SN THE TRANSITIONAL FLOW REGIME
【24h】

SINGLE-PHASE HEAT TRANSFER AND PRESSURE DROP OF WATER COOLED INSIDE HORIZONTAL SMOOTH TUBES SN THE TRANSITIONAL FLOW REGIME

机译:水平流动状态下水平流动状态下冷却水冷的单相热传热和压降

获取原文

摘要

Heat exchangers are usually designed in such a way that they do not operate in the transition region. This is usually due to a lack of information in this region. However, due to design constraints, energy efficiency requirements or change of operating conditions, heat exchangers are often forced to operate in this region. It is also well known that entrance disturbances in-fluence where transition occurs. The purpose of this paper is to present experimental heat transfer and pressure drop data in the transition region for fully developed and developing flows in-side smooth tubes using water as the working fluid. The use of different inlet disturbances were used to investigate its effect on transition. A tube-in-tube heat exchanger was used to perform the experiments, which ranged in Reynolds numbers from 1 000 to 20 000, with Prandtl numbers being between 4 and 6 while Grashof numbers were in the order of 10~5. Results showed that the type of inlet disturbance could delay transition to a Reynolds number as high as 7 000, while other inlets expedited it, confirming results of others. For heat transfer, though, it was found that transition was independent of the inlet disturbance and all commenced at the same Reynolds number, 2 000-3 000, which was attributed to secondary flow effects.
机译:热交换器通常以这样的方式设计,使得它们不能在过渡区域中操作。这通常是由于该地区缺乏信息。然而,由于设计限制,能效要求或操作条件的变化,热交换器通常被迫在该地区运行。众所周知,进入过渡的入口障碍感受到。本文的目的是在过渡区域中呈现实验热传递和压降数据,用于使用水作为工作流体的侧面平滑管的完全开发和开发流动。使用不同的入口障碍措施来研究其对转变的影响。使用管 - 管式热交换器进行实验,该实验在雷诺数中,从1 000到20 000中,普兰特数在4到6之间,而Grashof数量为10〜5。结果表明,入口障碍的类型可以将过渡到雷诺数高达7 000,而其他入口则加急,确认他人的结果。然而,对于传热,发现转变与入口扰动无关,并且所有在相同的雷诺数,2 000-3 000归因于二次流量效果。

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