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Study on the Gas-liquid Flow Characteristics in the Reversing Bucket of Water Jet Propulsion

机译:水射流推进岩煤气流动特性研究

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To investigate the gas-liquid two-phase flow characteristics in the reversing bucket of water jet propulsion, the numerical simulations based on the Euler-Euler inhomogeneous model was conducted to the internal flow field of the reversing bucket under 1%~12% different inlet gas volume fractions (α). Based on that, the gas distribution, gas-liquid velocity streamlines and thrust changing were obtained to discuss the gas-liquid flow characteristics and the influence on the thrust of the reversing bucket. The calculation results show that the gas mainly distributes in the inner part of the reversing bucket flow passage under different inlet gas volume fractions. On the condition that the inlet gas volume fraction is more than 2%, the gas accumulation has occurred in the inlet section of the flow passage. With the increasing of inlet gas volume fraction, average velocity and pressure increase gradually at each cross-section of reversing bucket flow passage, and at the higher gas concentration in each cross-section, where the vortex will exist, indicating that the gas concentration has a great relationship with the vortex aggregation in the reversing bucket flow passage. When the inlet gas volume fraction is 7%, the thrust reaches the maximum. It shows that the appropriate gas can effectively improve the thrust efficiency of the reversing bucket.
机译:为了研究换热桶中的燃气液两相流动特性,基于Euler-euler非均匀模型的数值模拟被传导到逆转桶的内部流场下的1%〜12%的入口下方气体体积分数(α)。基于此,获得气体分布,气液速度流动和推力变化,以讨论气液流动特性和对逆转铲斗推动的影响。计算结果表明,气体主要分布在不同入口气体体积分数下反转铲斗流动通道的内部。在入口气体体积分数大于2%的情况下,在流动通道的入口部分中发生气体积聚。随着入口气体体积分数的增加,在逆转铲斗流动通道的每个横截面上逐渐增加平均速度和压力,并且在每个横截面中的较高气体浓度下,其中涡旋将存在,表明气体浓度具有与逆转铲斗流动通道中的涡流聚集的关系很大。当入口气体体积分数为7%时,推力达到最大值。它表明,适当的气体可以有效地提高逆转铲斗的推力效率。

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