NUMERICAL SIMULATION OF HORIZONTAL BUOYANT WALL JET |
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Authors: | HUAI Wen-xin LI Zhi-wei QIAN Zhong-dong ZENG Yu-hong HAN Jie State Key Laboratory of Water Resources Hydropower Engineering Science Wuhan University Wuhan China PENG Wen-qi |
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Affiliation: | [1]State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan 430072, China [2]Department of Water Environment, China Institute of Water Resources and Hydropower Research, Beijing100038, China |
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Abstract: | This article applies the realizable k – ? model to simulate the buoyant wall jet and gives the results of cling length, centerline trajectory and temperature dilutions at certain sections. The comparison between the numerical results and Sharp's experimental data indicates that the model is effective in estimating velocity distribution and temperature dilutions. The velocity profiles at the cental plane and z-plane both show a strong similarity at certain distance from the nozzle, and the distributions of velocity and temperature dilutions also exhibit a similarity along the axial direction at centerline in the near-field. Based on the results, the article gives the corresponding relationships between the distance and the dilutions of velocity and temperature, which is useful in predicting the behavior of the wall buoyant jet. |
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Keywords: | buoyancy wall jet cling length velocity profile temperature dilution |
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