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STRUCTURE DETECTION AND ANALYSIS OF NON-CIRCULAR IMPINGING JETS IN A SEMI-CONFINED ARRAY CONFIGURATION

机译:半限制阵列配置中非圆形冲击喷射的结构检测与分析

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The modal kinetic energy distribution and instantaneous vortex field of an impinging confined jet array is investigated. The jet array consists of 7-by-7 equally spaced orifice nozzles, using two nozzle cross sections: circular and cusped ellipse. Digital Particle Image Velocimetry (DPIV) is used to determine the velocity field of the impinging jets along the center row in the plane parallel with the cross flow direction. Proper Orthogonal Decomposition (POD) and vortex detection algorithms are used to analyze the results of 50 instantaneous velocity fields in the impingement regions for each of several jets located along the crossflow direction. The energetic content of the flow is evaluated based on the POD eigenvalue distribution, the number of POD modes necessary to reconstruct the instantaneous velocity field, and the modal turbulent kinetic energy distributions. Vortex detection algorithms are used to locate and quantify the nature of the instantaneous vortices within the flow. Results of the vortex identification and the associated kinetic energy distribution within the flows are used to indicate the overall sensitivity to the nozzle geometry. The results suggest that the cusped ellipse nozzle when oriented with its major axis parallel to the flow, because of axis switching, can provide increased surface interactions which may lead to enhanced rates of heat and mass transfer.
机译:的碰撞密闭射流阵列的模态动能分布和瞬时涡场进行了研究。射流阵列由7×7等距隔开的孔口喷嘴,采用两个喷嘴的横截面:圆形的,并且会切椭圆。数字粒子图像测速(DPIV)用于确定沿平行于横流方向的平面中的中心行中的冲击射流的速度场。适当正交分解(POD)和涡流检测算法被用于分析在冲击区50个瞬时速度场的结果对每个沿横流方向位于几个喷口。流的能量含量是基于所述POD特征值分布评估,POD的数量的模式需要重建的瞬时速度场,和模态湍流动能分布。涡流检测算法被用于定位和定量在流内的瞬时涡流的性质。的涡流标识和流内的相关动能分布结果被用来指示给喷嘴几何形状的总体灵敏度。当其平行于流动长轴取向由于轴切换,结果表明,会切椭圆喷嘴,可以提供增加的表面的相互作用,这可能导致传热和传质的增强率。

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