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A NUMERICAL MODEL FOR BROWNIAN MOTIONS OF NANO-PARTICLES IN SUPERSONIC AND HYPERSONIC IMPACTORS

机译:超音速和超音速冲击波中纳米颗粒布朗运动的数值模型

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摘要

In this paper, transport and deposition processes of nano-particles in supersonic and hypersonic impactors were investigated using a computational modeling approach. Axisymmetric forms of the compressible Navier-Stokes and energy equations were solved and the airflow and thermal condition in the impactor including the upstream nozzle were evaluated. A computer simulation model for solving the Lagrangian particle equation of motion including all the relevant forces was developed. The importance of the accurate modeling of the Brownian motion of nano-particles was further emphasized. The motion of nano- and micro-particles in the supersonic and hypersonic impactors were then simulated and the impactor capture efficiencies under various operating conditions were studied. For dilute particle concentrations, the assumption of one-way interaction was used. Particular attention was given to proper evaluation of the Brownian motion of the nano-particles in the upstream nozzle and in the body of impactor. The simulation results for collection efficiency were found to be in good agreement with experimental data. In particular, the model accurately predicted the loss of the nano-particles in the upstream nozzle due to their Brownian motion.
机译:在本文中,使用计算建模方法研究了纳米粒子在超音速和高音速冲击器中的传输和沉积过程。求解了可压缩Navier-Stokes的轴对称形式和能量方程,并评估了包括上游喷嘴在内的冲击器中的气流和热条件。建立了用于求解拉格朗日粒子运动方程(包括所有相关力)的计算机仿真模型。进一步强调了精确建模纳米粒子布朗运动的重要性。然后,模拟了超音速和高音速冲击器中纳米粒子和微米粒子的运动,并研究了在各种操作条件下冲击器的捕获效率。对于稀颗粒浓度,使用单向相互作用的假设。特别注意了对上游喷嘴和撞击器体内纳米粒子的布朗运动的正确评估。发现收集效率的模拟结果与实验数据非常吻合。特别地,该模型准确地预测了上游喷嘴中由于纳米运动引起的纳米颗粒的损失。

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