首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >AIR-ASSISTED ATOMIZATION AT CONSTANT MASS AND MOMENTUM FLOW RATE: INVESTIGATION OF THE AMBIENT PRESSURE INFLUENCE WITH THE SPH METHOD
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AIR-ASSISTED ATOMIZATION AT CONSTANT MASS AND MOMENTUM FLOW RATE: INVESTIGATION OF THE AMBIENT PRESSURE INFLUENCE WITH THE SPH METHOD

机译:恒定质量和动量流速的空气辅助雾化:用SPH方法研究环境压力影响

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A twin-fluid atomizer configuration is simulated by means of the 2D weakly-compressible Smooth Particle Hydrodynamics method, and compared to experiments. The Gas-to-Liquid-Ratio, the momentum flux ratio and the velocity ratio are set constant for different ambient pressures, which leads to different gaseous flow sections. The objectives of this study are to (ⅰ) investigate the effect of ambient pressure at constant global parameters, and (ⅱ) to verify the capability of 2D SPH to qualitatively predict the proper disintegration mechanism and to recover the correct evolution of the spray characteristics. The setup consists of an axial liquid jet of water fragmented by a co-flowing high-speed air stream (U_g = 80 m/s) in a pressurized atmosphere up to 16 bar. The results are compared to the experiment, and presented in terms of (ⅰ) mean velocity profiles, (ⅱ) drop size distributions and (ⅲ) Sauter Mean Diameter of the spray. It is found that there exists an optimal pressure to minimize the mean size of the spray droplets. Finally, two new quantities related to atomiza-tion are presented: (ⅰ) the breakup activity that quantifies the number of breakup events per time and volume unit and (ⅱ) the fragmentation spectrum of the whole breakup chain, which characterizes the cascade phenomenon in terms of probability. The breakup activity confirms the presence of the optimal pressure and the fragmentation spectrum gives information on the type of breakup, depending on the ambient pressure.
机译:双流体雾化器配置通过2D弱可压缩光滑粒子流体动力学方法进行了仿真,并与实验进行了比较。在不同的环境压力下,气液比,动量通量比和速度比被设置为常数,这导致了不同的气态流动截面。这项研究的目的是(ⅰ)研究在恒定全局参数下环境压力的影响,以及(ⅱ)验证2D SPH定性预测适当崩解机理并恢复喷雾特性的正确演变的能力。该装置由轴向液体射流组成,该轴向液体射流在高达16 bar的加压气氛中被并流的高速气流(U_g = 80 m / s)破碎。将结果与实验进行比较,并以(ⅰ)平均速度曲线,(ⅱ)液滴尺寸分布和(ⅲ)喷雾的苏氏平均直径表示。发现存在最佳压力以最小化喷雾液滴的平均尺寸。最后,提出了两个与原子化有关的新量:(ⅰ)分解活动,它量化每个时间和体积单位的分解事件的数量;(ⅱ)整个分解链的碎片化光谱,表征了链中的级联现象。概率条件。分解活动确认存在最佳压力,碎片谱根据环境压力给出有关分解类型的信息。

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