...
首页> 外文期刊>Environmental fluid mechanics >Warm discharges in cold fresh water: 2. Numerical simulation of laminar line plumes
【24h】

Warm discharges in cold fresh water: 2. Numerical simulation of laminar line plumes

机译:冷淡水中的温暖放电:2.层压线羽毛的数值模拟

获取原文
获取原文并翻译 | 示例

摘要

Abstract The behaviour of a discharge of warm water upwards into a homogeneous body of cold fresh water was investigated by means of a numerical model. The discharge has a parabolic velocity profile, with Reynolds number $$Re=50$$ R e = 50 , Prandtl number $$Pr=7$$ P r = 7 and Froude number varied over the range $$0.2 le {m Fr} le 2.5$$ 0.2 Fr 2.5 . Water density is taken to be a quadratic function of temperature, so that an initially positively buoyant discharge will experience buoyancy reversal as it mixes with an ambient below the temperature of maximum density. The resulting plume has some similarities to a fountain resulting from injection of negatively buoyant fluid upward into a less dense ambient. The plume is initially symmetric, but then its head detaches as it approaches its maximum height. The detached head is denser than the fluid in the plume below it, and the interaction between the sinking head and the rising plume causes a sideways deflection; as this cycle is repeated, the plume displays side-to-side flapping motion and vertical bobbing. As Froude number is increased (i.e. buoyancy reduced) the growth of the plume becomes slower, but the plume eventually reaches a greater height. We obtain empirical power-law scalings for maximum height and time taken to reach that height as functions of Froude number; the
机译:<![CDATA [<标题>抽象 <帕拉ID =“PAR1”>通过数值模型研究了温水向上升到均匀的冷淡水体中的行为。排出具有抛物线速度曲线,reynolds number $$ re = 50 $$$ r e = 50 < / arequationsource> ,prandtl号 $$ PR = 7 $$ P R = 7 和FRoude号码在 $$ 0.2 Le { rm fr} Le 2.5 $$ 0.2 FR 2.5 < / mrow> 。水密度被视为温度的二次函数,因此初始充分的浮力放电将在浮力逆转时经历浮力,因为它与低于最大密度的温度的环境混合。由此产生的羽流与喷泉具有一些相似之处,该喷泉由于将负浮力流体注射到较小的环境中而导致的。羽毛最初是对称的,但随后它的磁头在接近其最大高度时脱离。分离的头部比它下方的羽流中的流体更密集,并且沉降头和上升羽流之间的相互作用导致侧向偏转;随着该循环重复,羽流显示侧向侧拍打动作和垂直横向。随着FRoude数量的增加(即浮力降低)羽流的生长变慢,但羽流最终达到更高的高度。我们获得了实证幂律缩放,​​以获得最大的高度和时间,以达到该高度作为Froude号码的职能;这

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