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Mass transfer in S-shape dual pipe bends under annular two phase flow conditions

机译:环形两相流条件下S形双管弯头的传质

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The mass transfer in S-shape dual in-plane short radius bends is investigated under annular air-water flow conditions. Experiments were performed for a Schmidt number (Sc) of 1280 for different lengths of straight pipe (L/D) between the bends. Standard 90° bends with radius of curvature (r/D) of 1.5 were tested for L/D from 0 to 40 for water (J_L) and air (J_v) superficial velocities of 0.28 and 29 m/s, respectively. The maximum mass transfer was found to occur on the outer wall of the first bend in all cases. The region of high mass transfer in the second bend is located near the outlet of the bend outer wall and was approximately 60% of that in the first bend for the L/D = 0 case. This value increased and the location moved upstream as the separation distance was increased, with a magnitude of approximately 85% of that in the first bend at L/D of 40. The effect of ]_v and J_L on the mass transfer for I/D = 0 was determined for J_v and J_L in the range 0.17-0.4 m/s and 22-30 m/s, respectively. The local mass transfer distribution was similar in all cases, with J_v having a more significant effect on the mass transfer enhancement. The phase redistribution within the dual bend for L/D = 0 was visualized using laser induced fluorescence. The high mass transfer locations were found to correlate well with the locations of liquid impingement.
机译:研究了环形空气-水流条件下S形双平面短半径弯头的传质。对于弯头之间不同长度的直管(L / D),针对1280的施密特数(Sc)进行了实验。对于水(J_L)和空气(J_v)的表面速度分别为0.28和29 m / s的0/40的L / D,测试了曲率半径(r / D)为1.5的标准90°弯曲。在所有情况下,发现最大的质量传递发生在第一个弯头的外壁上。在L / D = 0的情况下,第二个弯曲处的高质量传递区域位于弯曲外壁的出口附近,约为第一个弯曲处的60%。随着分离距离的增加,该值增加并且位置向上游移动,幅度约为L / D为40时第一弯的幅度的85%。] _ v和J_L对I / D传质的影响对于J_v和J_L,分别在0.17-0.4 m / s和22-30 m / s的范围内确定= 0。在所有情况下,局部传质分布都是相似的,其中J_v对传质增强的影响更大。使用激光诱导的荧光,可以看到L / D = 0时双弯曲内的相重新分布。发现高传质位置与液体撞击的位置很好地相关。

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