CFD analysis of jet fan layout optimization at intersection of branch tunnel and main tunnel

Jie Xu, Qingwen Zhang
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Abstract

To solve the ventilation tunnel pressure in the main hole with a certain slope tunnel junction produces high concentration of dust particles and harmful gas is difficult to get rid of disadvantages, based on water diversion project in yunnan Dali II period of bench mountain tunnel no. 1, on the measurements of the tunnel, first of all to modify the ventilation parameters, secondly establish three-dimensional model, USES the fluid calculation software Fluent, Through transient simulation, the standard K - $\varepsilon$ turbulence model and SIMPLEC algorithm were used for numerical simulation of jet fan layout at different heights. Finally, the flow field, wind speed and wind pressure under two working conditions were compared and analyzed to obtain the optimal height of jet fan layout and corresponding ventilation characteristics of tunnel. The results show that the flow line of wind speed at the intersection of main tunnel and branch tunnel is stable but the vortex range of branch tunnel is large when the jet fan arrangement is low. When the layout is higher, the wind velocity streamline at the intersection of main tunnel and branch tunnel is disordered, and the vortex range of branch tunnel is smaller. The best flow diversion effect is achieved at 3.5m height of jet fan.
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支洞与主洞交叉口射流风机布置优化CFD分析
为解决隧洞通风压力大且在隧洞交界处有一定坡度产生高浓度粉尘颗粒和有害气体难以摆脱的弊端,本文基于云南大理二期引水工程台山隧洞一号。1、对隧道进行测量,首先修改通风参数,其次建立三维模型,利用流体计算软件Fluent,通过瞬态仿真,采用标准K - $\varepsilon$湍流模型和SIMPLEC算法对不同高度的射流风机布置进行数值模拟。最后,对两种工况下的流场、风速和风压进行对比分析,得到最佳射流风机布置高度和相应的隧道通风特性。结果表明:主、支风洞交口处的风速流线稳定,但支风洞涡幅在低喷流风机布置下较大;布置较高时,主、支风洞交叉口风速流线较为混乱,支风洞涡范围较小。射流风机高度为3.5m时,导流效果最佳。
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