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NUMERICAL SIMULATION OF THE FORMATION OF NANOPARTICLES IN AN IMPINGING TWIN-JET

机译:一次孪生射流中纳米颗粒形成的数值模拟

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The Large Eddy Simulation (LES) method has been used to solve the fluid momentum equations coupled with a convection-diffusion equation to study the formation of pollutant nanoparticles in a vehicular exhaust with impinging twin-jet. The functions of the space (S) between the two jets and the distance (H) from the exit of nozzle to the impingement plane are evaluated according to the distributions of pollutant nanoparticles. The results show that the nucleation produces a large number of nanoparticles, and gas-to-nanoparticle conversion mostly takes place in the interface region of the two jets, the circumambience of the jets, and region near the plane. The maximal particle size and maximal number concentration produced by both nucleation and coagulation appear around the region of free jet and the region near the plane, respectively. The significant differences for various spaces between the two jets are the number concentration and size distributions in the interface region of the two jets. For the case with larger space, more nanoparticles are produced by nucleation and coagulation. The more the distance from the exit of nozzle to the impingement plane, the lower is the number concentration and the fewer the particles distribute near the plane. Increasing the distance from nozzle to plane is beneficial to the reduction of nanoparticle formation.
机译:大涡模拟(LES)方法已被用于求解流体动量方程和对流扩散方程,以研究撞击双喷的车辆尾气中污染物纳米颗粒的形成。根据污染物纳米颗粒的分布评估两个喷嘴之间的空间(S)和从喷嘴出口到撞击平面的距离(H)的功能。结果表明,成核产生了大量的纳米粒子,并且气体到纳米粒子的转化主要发生在两个射流的界面区域,射流的环境以及靠近平面的区域。由成核和凝结产生的最大粒径和最大数量浓度分别出现在自由射流区域和靠近平面的区域附近。两个喷嘴之间的各种空间的显着差异是两个喷嘴的界面区域中的数量浓度和尺寸分布。对于具有较大空间的情况,通过成核和凝结产生更多的纳米颗粒。从喷嘴出口到撞击平面的距离越大,数字浓度越低,并且在平面附近分布的粒子越少。增加喷嘴到平面的距离有利于减少纳米颗粒的形成。

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