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NUMERICAL STUDY ON THE STABILITY AND MIXING OFVERTICAL ROUND BUOYANT JET IN SHALLOW WATER 被引量:3

NUMERICAL STUDY ON THE STABILITY AND MIXING OFVERTICAL ROUND BUOYANT JET IN SHALLOW WATER
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摘要 The k-epsilon model was applied to establish the mathematical model of vertical round buoyant jet discharging into confined depth, and it was solved using the Hybrid Finite Analytic Method (HFAM). The numerical predictions demonstrate two generic flow patterns for different jet discharge and environmental parameters: (ⅰ)a stable buoyant flow discharge with the mixed fluid leaving the near-field warm in a surface warm water layer; (ⅱ)an unstable buoyant flow discharge with recirculation and re-entrainment of warm water in the near field. Furthermore, the mixing characters of vertical round buoyant jet were numerically predicted. Both the stability criterion and numerical predictions of bulk dilutions are in excellent agreement with Lee and Jirka's experiments and theory. The k-epsilon model was applied to establish the mathematical model of vertical round buoyant jet discharging into confined depth, and it was solved using the Hybrid Finite Analytic Method (HFAM). The numerical predictions demonstrate two generic flow patterns for different jet discharge and environmental parameters: (ⅰ)a stable buoyant flow discharge with the mixed fluid leaving the near-field warm in a surface warm water layer; (ⅱ)an unstable buoyant flow discharge with recirculation and re-entrainment of warm water in the near field. Furthermore, the mixing characters of vertical round buoyant jet were numerically predicted. Both the stability criterion and numerical predictions of bulk dilutions are in excellent agreement with Lee and Jirka's experiments and theory.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2005年第1期92-100,共9页 应用数学和力学(英文版)
基金 theNationalNaturalScienceFoundationofChina ( 50 4790 3 8)
关键词 round buoyant jet stability numerical simulation mixing character round buoyant jet stability numerical simulation mixing character
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