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Simulation of 3-D Nonequilibrium Seeded Airflow in the NASA Ames MHD Channel

机译:NASA Ames MHD通道中3-D非平衡种子气流的模拟

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The 3-D nonequilibrium seeded airflow in the NASA Ames experimental magnetohydrodynamics channel has been numerically simulated. The channel contains a nozzle section, a center section, and an accelerator section in which magnetic and electric fields can be imposed on the flow. In recent tests, velocity increases of up to 40% have been achieved in the accelerator section. The flow in the channel is numerically computed using a 3-D parabolized Navier-Stokes algorithm that has been developed to efficiently compute magnetohydrodynamics flows in the low magnetic Reynolds number regime. The magnetohydrodynamics effects are modeled by introducing source terms into the parabolized Navier-Stokes equations, which can then be solved in a very efficient manner. The algorithm has been extended in the present study to account for nonequilibrium seeded airflows. The electrical conductivity of the flow is determined using the program of Park. The new algorithm has been used to compute two test cases that match the experimental conditions. In both cases, magnetic and electric fields are applied to the seeded flow. The computed results are in good agreement with the experimental data.
机译:对NASA Ames实验磁流体动力学通道中的3-D非平衡种子气流进行了数值模拟。该通道包括喷嘴部分,中央部分和加速器部分,在其中可将磁场和电场施加到流上。在最近的测试中,加速器部分的速度提高了40%。使用3-D抛物线化Navier-Stokes算法对通道中的流量进行数值计算,该算法已经开发出来,可以有效地计算低磁雷诺数状态下的磁流体动力学流量。通过将源项引入被抛物化的Navier-Stokes方程中,可以对磁流体动力学效应进行建模,然后可以以非常有效的方式对其进行求解。该算法已在本研究中扩展,以解决非平衡播种气流。使用Park程序确定流的电导率。新算法已用于计算与实验条件匹配的两个测试用例。在这两种情况下,磁场和电场都施加到种子流上。计算结果与实验数据吻合良好。

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