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SELF-PRESERVING MIXING PROPERTIES OF STEADY ROUND BUOYANT TURBULENT PLUMES IN UNIFORM CROSSFLOWS

机译:均匀横向流动稳定圆浮湍流羽羽的自我保留混合性能

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The self-preserving mixing properties of steady round buoyant turbulent plumes in uniform crossflows were investigated experimentally. The experiments involved salt water sources injected into fresh water crossflows within the windowed test section of a water channel. Mean and fluctuating concentrations of source fluid were measured over cross sections of the flow using Planar-Laser-Induced-Fluorescence (PLIF) which involved seeding the source fluid with Rhodamine 6G dye and adding small concentrations of ethanol to the crossflowing fluid in order to match the refractive indices of the source flow and the crossflow. The self-preserving penetration properties of the flow were correlated successfully based on the scaling analysis of Diez et al. (2003) whereas the self-preserving structure properties of the flow were correlated successfully based on the scaling analysis of Fischer et al. (1979); both approaches involved assumptions of no-slip convection in the cross stream (horizontal) direction (parallel to the crossflow) and a self-preserving line thermal having a conserved source specific buoyancy flux per unit length that moves in the streamwise (vertical) direction (parallel to the direction of both the initial source flow and the gravity vector). The resulting self-preserving structure consisted of two counter-rotating vortices having their axes nearly aligned with the crossflow direction that move away from the source in the streamwise (vertical) direction due to the action of buoyancy. Present measurements extended up to 202 and 620 source diameters from the source in the streamwise and cross stream directions, respectively. The onset of self-preserving behavior required that the axes of the counter-rotating vortex system be nearly aligned with the crossflow direction. This alignment, in turn, was a strong function of the source/crossflow velocity ratio, u_o/v_∞. The net result was that the onset of self-preserving behavior was observed at streamwise distances of 10-20 source diameters from the source for u_o/v_∞ = 4 (the smallest value of u_o/v_∞ considered), increasing to streamwise distances of 160-170 source diameters from the source for u_o/v_∞ = 100 (the largest value of u_o/v_∞ considered). Finally, the counter-rotating vortex system was responsible for substantial increases in the rate of mixing of the source fluid with the ambient fluid compared to axisymmetric round buoyant turbulent plumes in still environments, e.g., transverse dimensions in the presence of the self-preserving counter-rotating vortex system were 2-3 times larger than the transverse dimensions of self-preserving axisymmetric plumes at similar streamwise distances from the source.
机译:实验研究了均匀交叉流动稳定圆润湍流羽毛的自我保留混合性能。该实验涉及在水通道的窗口试验部分内注入淡水交叉流中的盐水。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,所述荧光(PLIF)涉及用罗丹明6g染料播种源流体并将小浓度的乙醇加入到横向流体中以匹配源流量和横向流的折射率。基于Diez等人的缩放分析,成功地相关的自我保留渗透性能。 (2003)而基于Fischer等人的缩放分析,成功地相关的自我保留结构性质。 (1979);两者涉及在十字流(水平)方向(平行于交叉流)中的无滑移对流的假设和自保留线热量,其每单位长度具有保守的源特异性浮力通量,其在流动(垂直)方向上移动(平行于初始源流量和重力矢量的方向。由此产生的自保留结构包括两个反向旋转涡旋,其具有与浮力作用引起的横流方向几乎与源自源自流动(垂直)方向移动的轴向对齐。目前的测量分别从源自流动和交叉流方向的源极延伸到202和620次源直径。自保留行为的开始要求反向旋转涡流系统的轴几乎与交叉流动方向对齐。反过来,这种对齐是源/横流速度比u_o /v_∞的强函数。净结果是,在从u_o /v_∞= 4的源极为10-20次源直径的流动距离(考虑的最小值)的10-20次源直径的流动距离下观察到自我保留行为的开始(所考虑的最小值),从而增加了流动的距离从源U_O /v_∞= 100的源极为160-170源直径(所考虑的U_O / V_1的最大值)。最后,与静止环境中的轴对称圆形浮力湍流羽毛相比,反向旋转涡旋系统负责源流体与环境流体的混合速度增加,例如在自我保留柜台存在下的横向尺寸 - 在源极其流动距离的自我保留轴对称羽毛的横向横向的横向横向的横向尺寸的横向距离大2-3倍。

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