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Research on Flow Field Characteristics Affected by Obstacles of Pull-Push Ventilation System of Plating Tanks through Numerical Simulation

机译:数值模拟研究电镀槽推拉通风系统障碍物对流场特性的影响

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Pull-push ventilation system, with high capture efficiency, is universally used to capture contaminants from containment generation where can’t be enclosed and where the working area is large. When there are obstacles between the pull hood and the push hood, the air jet will disperse, leaving contaminants out of control, causing atmosphere polluted. This paper aims to discuss flow filed of pull-push ventilation system, located in some tank of some plating workshop, with obstacles between pull hood and push hood. Mathematical model, involving physical model, assumptions, governing equations, boundary conditions and grid separation is established. By CFD code FLUENT, flow field, containing velocity field and concentration field, is achieved. To verify the simulation models, velocity field for simulation results is compared with the theory results, while concentration field for simulation results with experimental results. The comparison results show that the results matches well and that mathematical model proposed in this paper is reasonable, helpful and realistic significant in designing this kind exhaust ventilation systems where obstacles presence.
机译:推拉通风系统具有很高的捕获效率,通常用于捕获无法密闭且工作区域较大的安全壳产生的污染物。当拉罩和推罩之间有障碍物时,空气流会散开,使污染物不受控制,导致大气污染。本文旨在讨论位于某些电镀车间某储罐中的推拉通风系统的流场,该系统在推拉罩和推罩之间存在障碍。建立了包含物理模型,假设,控制方程,边界条件和网格分离的数学模型。通过CFD代码FLUENT,可得到包含速度场和浓度场的流场。为了验证仿真模型,将仿真结果的速度场与理论结果进行比较,而仿真结果的浓度场与实验结果进行比较。比较结果表明,结果吻合良好,本文提出的数学模型对设计存在障碍物的排风系统是合理,有益和现实的。

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