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Influence of Non-Structural Parameters on Dual Parallel Jet Characteristics of Porous Nozzles

机译:非结构参数对多孔喷嘴双平行射流特性的影响

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摘要

As an important actuator of the dual parallel jet, the porous nozzle has some non-structural parameters (such as inlet pressure, nozzle spacing ratio, etc.) which have a significant influence on energy transport, chemical combustion and pollutant generation. The research on the microfluidic state of the porous nozzle dual parallel jet, however, remains insufficient because of its microjet pattern and complex intersection process. In this paper, the authors used numerical simulation and an experimental method to clarify the influence of porous nozzles’ non-structural parameters on dual parallel jet characteristics. The results show that the inlet pressure only changes the pressure peak value on the parallel jet axis; the starting point (SP) and peak point (PP) on the parallel jet axis, which are located at = 22 mm and = 75 mm, respectively, are not changed; and with the increase in the nozzle spacing ratio, the merging points (MPs) on the parallel jet axis are = 25 mm, 32 mm and 59 mm, respectively. The merging point and the combined point move to a farther distance and the inner deflection angle of the jet is weakened.
机译:作为双行射流的重要致动器,多孔喷嘴具有一些非结构参数(例如入口压力,喷嘴间距比等),其对能量传输,化学燃烧和污染物产生具有显着影响。然而,由于其微目型图案和复杂的交叉切入过程,对多孔喷嘴双平行射流的微流体状态的研究保持不足。本文用法使用数值模拟和实验方法来阐明多孔喷嘴的影响对双平行射流特性的影响。结果表明,入口压力仅改变平行射流轴上的压力峰值;并联射流轴上的起始点(SP)和峰值(PP)分别位于= 22mm且= 75mm,不会改变;随着喷嘴间距比的增加,并联射流轴上的合并点(MPS)分别为25mm,32mm和59mm。合并点和组合点移动到更远的距离,并且射流的内偏转角削弱。

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