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順抗磁性混合氣體在梯度磁場中流動的蒙特卡羅直接模擬

Monte-Carlo direct simulation of paramagnetic and diamagnetic mixed gas flows in gradient magnetic fields

  • 摘要: 以氧氣和氮氣的混合氣體為研究對象,運用蒙特卡羅直接模擬方法模擬了順抗磁性混合氣體在高梯度磁場中的流動情況,并把模擬計算結果與已有的實驗結果之間進行了對比分析.模擬結果表明:磁場強度與梯度乘積由100T2·m-1增加到1000 T2·m-1時,氧體積分數增量由0.12%增加到1.89%;混合氣體溫度由283 K升高到333 K時,氧體積分數增量由0.4%減小到0.1%;混合氣體中氧氣的初始體積分數由20%增加到30%時,氧體積分數增量由0.12%增加到0.59%;壓力的變化對氧體積分數的變化幾乎沒有影響.

     

    Abstract: With a mixture of oxygen and nitrogen as the subject investigated, the direct simulation Monte-Carlo method was applied to simulate the flow of paramagnetic and diamagnetic mixed gas in high gradient magnetic fields. The simulated results were compared with the existing experimental ones, and the reliability of the program was demonstrated. It was shown that the increment of oxygen concentration increased from 0.12% to 1.89% when the product of magnetic field and gradient varied from 100T2·m-1 to 1 000 T2·m-1. The increment of oxygen concentration reduced from 0.4 % to 0.1% when the temperature varied from 273 K to 333 K. The increment rose from 0.12 % to 0.59 % when the initial oxygen concentration varied from 20 96 to 30 %. The change in pressure did not almost influence the oxygen concentration.

     

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