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EXPERIMENTAL STUDY OF RADON EXHALATION RATE IN URANIUM-LIKE ROCK BASED ON CLOSED CHAMBER METHOD

机译:基于闭合腔室法的铀状岩石氡呼气速率的实验研究

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The closed chamber method is widely used in measuring radon exhalation rate, which can avoid the error caused by the leakage and anti-diffusion phenomena. Firstly, considering the actual situation that uranium ore is difficult to obtain and have a high radioactivity, the uranium-like rock was made according to the similarity theory. Secondly, the diffusion length and intrinsic radon exhalation rate were obtained by using the closed chamber method. Thirdly, the theoretical values of radon exhalation rate made by uranium-like ore block were calculated, compared with the measured values. This study shows that the uranium-like rock block made by the best mass ratio is helpful for the subsequent experiment, and the error between the theoretical calculation and the measured value is no more than 9.14%. This indicates it is reliable to estimate radon exhalation rate by diffusion length and intrinsic radon exhalation rate and can also provide a foundation for rapidly gaining radon exhalation rate of the same type material by the closed chamber method. This study can further promote the study of the radon exhalation rate under the complex physical conditions and then better guide the protection work of radon radiation in underground mining.
机译:封闭的腔室方法广泛用于测量氡止吐速率,这可以避免由泄漏和防扩散现象引起的误差。首先,考虑到铀矿石难以获得并具有高放射性的实际情况,根据相似性理论进行铀状岩石。其次,通过使用封闭的腔室方法获得扩散长度和固有氡呼气速率。第三,计算铀壳壳嵌入速率的理论值,与测量值相比。本研究表明,通过最佳质量比制成的铀状岩石块对随后的实验有帮助,理论计算与测量值之间的误差不超过9.14%。这表明通过扩散长度和固有氡呼气速率估计氡呼气速率是可靠的,并且还可以通过闭合室方法提供用于快速增强相同型材料的氡呼气速率的基础。本研究可以进一步推动复杂物理条件下氡气漏率的研究,然后更好地指导地下采矿中氡辐射的保护工作。

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