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SELF-PRESERVING PROPERTIES OF STEADY ROUND NONBUOYANT TURBULENT JETS IN UNIFORM CROSSFLOWS

机译:均匀交叉流动稳态圆形非核糖湍流射流的自我保护性能

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The properties of steady round nonbuoyant turbulent jets in uniform crossflows were studied, motivated by applications to the dispersion of heat and potentially harmful substances from steady exhaust flows. Emphasis was placed on self-preserving conditions far from the source where source disturbances have been lost and where jet properties are largely controlled by the conserved properties of the flow. The experiments involved steady round nonbuoyant fresh water jet sources injected into uniform and steady fresh water crossflows within the windowed test section of a water channel facility. Flow visualization was carried out by photographing dye-containing source jets. Mean and fluctuating concentrations of source fluid were measured over cross sections of the flow using Planar Laser-Induced Fluorescence (PLIF). The self-preserving properties of the flow were correlated successfully based on scaling analysis due to Fischer et al. (1979) which involves assumptions of no-slip convection in the cross stream direction (parallel to the crossflow) and a self-preserving nonbuoyant turbulent line puff having a conserved momentum force per unit length that moves in the streamwise direction (parallel to the initial source flow). The flow structure consisted of two counterrotating vortices, with their axes nearly aligned with the crossflow direction, that move away from the source in the streamwise direction due to the action of source momentum. Present measurements extended up to 160 source diameters from the source in the streamwise direction and yielded the following results: jet motion in the cross stream direction satisfied the no-slip convection approximation; geometrical features, such as the penetration of flow boundaries and the trajectories of the axes of the counter-rotating vortices, reached self-preserving behavior at streamwise distances greater than 40-50 source diameters from the source; parameters associated with the structure of the flow, e.g., contours and profiles of mean and fluctuating concentrations of source fluid, however, did noi reach self-preserving behavior prior to reaching streamwise (vertical) distances greater than 70-80 source diameters from the source.
机译:研究了均匀横流中稳定的圆形非核糖湍流射流的性质,其通过应用于热量和潜在的物质从稳定排气流动的分散而激励。重点是远离源扰动丢失的源极远的自我保存条件,并且在射流性质主要被流动的保守性能控制的地方。实验涉及稳定的圆形非咖啡淡水喷射源注射到水通道设施的窗口试验部分内的均匀且稳定的淡水交叉流。通过拍摄含染料的源射流进行流动可视化。使用平面激光诱导的荧光(PLIF)在流动的横截面上测量源流体的平均值和波动浓度。由于Fischer等人,基于Fischer等人的缩放分析,成功地相关的自我保留性能。 (1979)涉及在十字流方向上的空滑对流的假设(平行于十字流行)和自保留的非核糖湍流线PUFF,其每单位长度在流动方向上移动(平行于初始)源流程)。流动结构由两个反应涡流组成,其轴几乎与交叉流动方向对齐,其由于源动量的动作而远离流动方向的源极。目前测量从流动方向上从源延伸到多达160个源直径,并产生以下结果:交叉流方向中的喷射运动满足无滑移对流近似;几何特征,例如流界限的穿透和反向旋转涡流的轴的轨迹,达到了从源极大于40-50源直径的流动距离的自我保留行为;然而,与流动的流量的结构相关的参数,例如,源流体的平均和波动浓度的平均浓度和波动浓度的曲线,在从源极大于70-80源直径的流动方向(垂直)距离之前NOI达到自我保留行为。

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