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The Migration of Radon in Different Air Pressure Experimental Study and the Average Velocity Estimation

机译:氡在不同空气压力实验研究中的迁移及平均速度估计

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The previous radon migration experimental research object is for the most of radon gas in underground migration or the migration of air interface. By using the method of active carbon accumulated measuring radon, this thesis adjusts air pressure to study the migration regularity of radon. The paper measures the concentration distributions of radon in airtight vertical glass tube under the same temperature, humidity, different cumulative times and different pressure in vacuum (respectively for -0.06MPa, -0.05MPa, -0.04MPa, atmospheric conditions). Basing on the migration equations of radon gas in the air and the concentration distribution of radon under different gas pressure, the paper estimates the average speed of radon gas under different pressures. Through series experiments, following conclusions can be obtained: the migration velocity of radon in the air is related with the air pressure: with greater air pressure, the conveyance speed is faster. Especially at low-pressure state the downward migration is more apparent. The average speed of radon in different pressures cases are estimated that compliance of the calculation results and the actual measurement was good results.
机译:以前的氡迁移实验研究对象是用于地下迁移的大部分氡气或空气接口的迁移。通过使用活性炭积累测量氡的方法,本文调整了气压,以研究氡的迁移规律性。纸张测量在相同温度,湿度,不同累积时间和真空中的不同压力下(分别为-0.06MPa,-0.05MPa,-0.04MPa,大气条件)的氡气中氡气中氡气中的浓度分布。基于在空气中的氡气中的迁移方程和氡的浓度分布在不同的气体压力下,纸张估计不同压力下氡气的平均速度。通过序列实验,可以获得以下结论:空气中氡的迁移速度与空气压力有关:具有更大的空气压力,输送速度更快。特别是在低压状态下,向下迁移更加明显。估计不同压力案例中氡的平均速度估计计算结果的符合性和实际测量是良好的结果。

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