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Radioactive source localization inside pipes using a long-range alpha detector

Radioactive source localization inside pipes using a long-range alpha detector
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摘要 Long-range alpha detectors (LRADs) are attracting much attention in the decommissioning of nuclear facilities because of some problems in obtaining source positions on an interior surface during pipe decommissioning. By utilizing the characteristic that LRAD detects alphas by collecting air-driving ions, this article applies a method to localize the radioactive source by ions' fluid property. By obtaining the ion travel time and the airspeed distribution in the pipe, the source position can be determined. Thus this method overcomes the ion's lack of periodic characteristics. Experimental results indicate that this method can approximately localize the source inside the pipe. The calculation results are in good agreement with the experimental results. Long-range alpha detectors (LRADs) are attracting much attention in the decommissioning of nuclear facilities because of some problems in obtaining source positions on an interior surface during pipe decommissioning. By utilizing the characteristic that LRAD detects alphas by collecting air-driving ions, this article applies a method to localize the radioactive source by ions' fluid property. By obtaining the ion travel time and the airspeed distribution in the pipe, the source position can be determined. Thus this method overcomes the ion's lack of periodic characteristics. Experimental results indicate that this method can approximately localize the source inside the pipe. The calculation results are in good agreement with the experimental results.
出处 《Chinese Physics C》 SCIE CAS CSCD 2013年第8期50-54,共5页 中国物理C(英文版)
基金 Supported by National Science Fund for Distinguished Young Scholars of China (41025015) National Natural Science Foundation of China (41274108, 41274109) Technological Innovation Research Team Foundation of Sichuan Province (2011JTD0013)
关键词 LRAD source position ion travel time airspeed LOCALIZATION LRAD, source position, ion travel time, airspeed, localization
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