首页> 外文会议>ASME international mechanical engineering congress and exposition >A NUMERICAL ANALYSIS OF HEAT TRANSFER ENHANCEMENT BY TURBULENCE GENERATED FROM SWIRL FLOW BY TWISTED TAPE
【24h】

A NUMERICAL ANALYSIS OF HEAT TRANSFER ENHANCEMENT BY TURBULENCE GENERATED FROM SWIRL FLOW BY TWISTED TAPE

机译:旋流带旋流产生湍流强化换热的数值分析

获取原文

摘要

Heat exchangers are widely used in heating and cooling devices. The primary challenge is to improve the efficiency of the heat transfer equipment. Researchers have utilized various techniques to achieve this goal. Using twisted tapes could significantly increase the heat transfer rate from a circular surface due to turbulence generated from swirl flow. To enhance the heat transfer rate by twisted tape, two types of arrangements namely: (i) plain twisted tape and (ii) altered twisted tape geometries are used. These arrangements result in swirl flows. For improving heat transfer through swirl flow, some important parameters such as Reynolds number, external surface temperature, friction factor, inlet pressure, and surface heat flux are also considered. To identify the aftereffect of the velocity of inlet water, several parameters namely: (ⅰ) external surface temperature, (ⅱ) inlet pressure, (ⅲ) external surface heat flux and (ⅳ) twist ratio are varied. A numerical modelling using k-e method is performed to evaluate the effects of turbulence from the twisted tape on the heat transfer rate. The objective is to analyze the improvement of heat transfer effectiveness due to the swirl flow. The change in the values of the resulting Reynolds number by changing the inlet fluid velocity from 0.1 ms~(-1) to 0.7 ms~(-1> and rotational speed from 200 rpm to 600 rpm is studied. It is observed that for such changes heat transfer increases by 17 percent. It is also observed that heat transfer is directly proportional to inlet pressure and inversely proportional to the increment of twist ratio. The rate of heat transfer increased from 17 percent to 19 percent when the angular velocity of the twisted tape is changed from the 0 rpm to 600 rpm while the velocity of the water inside the pipe is held constant at 0.7 ms~(-1). Higher heat transfer rate is observed with high inlet pressure. Likewise, higher value of the Nusselt number is observed with higher rotational speed of the twisted tape and higher velocity at the pipe inlet. In addition, it is also observed that when the twist ratio is changed from 4 to 6, the rate of heat transfer is diminished by 6 percent.
机译:热交换器广泛用于加热和冷却装置。主要挑战是提高传热设备的效率。研究人员利用了各种技术来实现这一目标。由于涡流产生的湍流,使用双绞线可以显着增加来自圆形表面的传热速率。为了通过扭曲胶带提高传热速率,即两种类型的布置即:(i)普通扭曲带和(ii)使用改变的扭曲胶带几何形状。这些安排导致旋流。为了通过旋流改善热传递,还考虑了诸如雷诺数,外表面温度,摩擦系数,入口压力和表面热通量的一些重要参数。为了识别入口水速度的后果,几个参数即:(Ⅰ)外表温度,(Ⅱ)入口压力,(Ⅲ)外表热通量和(ⅳ)捻度变化。使用K-E方法进行数值建模,以评估湍流从扭曲带上传热速率的影响。目的是分析由于涡流引起的传热效果的提高。通过改变0.1ms〜(-1)至0.7ms〜(-1>和从200rpm至600rpm的转速来改变从0.1ms〜(-1)至0.7ms至600rpm的转速来改变。它被观察到这一点变化传热增加17%。还观察到,热传递与入口压力成比例,与扭曲比的增量成反比。当扭曲的角速度时,热传递速度从17%增加到19%。磁带从0 rpm到600rpm变为600rpm,而管道内的水的速度保持在0.7ms〜(-1)中保持恒定。用高入口压力观察到较高的传热速率。同样地,更高的纽带数值观察到扭曲带的较高旋转速度和管道入口较高的速度。此外,还观察到,当捻度从4比6变为6时,热传递速率减少6%。

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