首页> 外文会议>IAHR congress >INVESTIGATION OF TURBULENCE BEHAVIOR IN WATERHAMMER
【24h】

INVESTIGATION OF TURBULENCE BEHAVIOR IN WATERHAMMER

机译:检测水中湍流行为研究

获取原文

摘要

Understanding the turbulence behavior in unsteady (transient) flow in pipes is essential for modeling energy dissipation in waterhammer problems, modeling transient-related water-quality problem such as intrusion and verifying the assumptions involved in existing unsteady wall friction models. Laboratory studies of the turbulence response to waterhammer waves are not available and would be very difficult to conduct due to the high frequency of transient waves. This paper conducts numerical experiments on the response of turbulence to waterhammer waves, where a k - ε model is used. The pressure head traces produced by the present mathematical model are found to be in good agreement with three published laboratory experiments. This implies that, at least for the three experiments considered here, the turbulence response is well represented by the k - ε model. Therefore, the spatial and temporal variation of eddy-viscosity, turbulent kinetic energy and turbulent dissipation in these three cases are investigated in details. These results are used to shed some light on the validity of frozen turbulence, quasi-steady and quasi-laminar hypotheses, which are often adopted in modeling energy dissipation in waterhammer problems.
机译:了解管道中不稳定(瞬态)流中的湍流行为对于在水土界问题中建模能量耗散,建模瞬态相关的水质问题,如入侵和验证现有的不稳定墙体摩擦模型中所涉及的假设。对水麦波波的湍流响应的实验室研究不可用,并且由于瞬态波的高频频率而言,很难进行。本文对湍流对水麦波波的响应进行了数值实验,其中使用了K-ε模型。通过本地数学模型产生的压力头迹线与三个公布的实验室实验有关。这意味着,至少在这里考虑的三个实验中,湍流响应由K-ε模型很好地表示。因此,详细研究了这三种情况下涡粘度,湍流动能和湍流耗散的空间和时间变化。这些结果用于揭示冻结湍流,准稳态和准层状假设的有效性,这通常采用了水麦混乱问题的能量耗散。

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