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宇宙射线响应测量方法研究

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γ辐射剂量率测量是辐射环境监测工作的重要部分,宇宙射线响应值的扣除对 γ辐射剂量率测量的准确性起着至关重要的作用.为解决现阶段宇宙射线响应测量中常用的带压舱石的玻璃钢船、小木船等测量载体的不足,引入浮筒平台、冰面等宇宙射线响应测量载体,开展了在不同测量载体、不同测量场景下各仪器宇宙射线响应值的测量及其影响的因素分析.结果表明,高气压电离室宇宙射线响应测量值范围为 33.4~41.4 nGy/h,塑料闪烁体探测器宇宙射线响应测量值范围为 8.7~12.6 nGy/h;各仪器宇宙射线响应测量值为:玻璃钢船>冰面≥小木船≈浮筒平台.综合来看,浮筒平台是目前最有效、便捷且经济的测量载体.
Research on measurement methods of cosmic ray response
Measurement of gamma radiation dose rate is an important part of radiation environment monitoring work,and the deduction of cosmic ray response value plays a crucial role in the accuracy of the measurement of gamma radiation dose rate.To address the limitations of the pressure-hull glass fiber boats and small wooden boats commonly used in current cosmic ray response measurement,this study introduces floating platforms and ice surfaces as measurement platforms for cosmic ray response measurement and conducts measurements of the cosmic ray response values of various instruments under different measurement platforms and scenarios.The results show that the measured cosmic ray response of high pressure ionization chamber ranges from 33.4 to 41.4 nGy/h,and that of the plastic scintillator detector ranges from 8.7 to 12.6 nGy/h.The measured cosmic ray response values of each instrument follow the following rules:glass steel ship>ice surface≥small wooden ship≈buoy platform.Overall,the new buoy platform is the most effective,convenient and economical measurement platform available.

cosmic ray responsegamma radiation dose ratemeasurement platformbuoy platformice surfacefrp ship

廖宇航、曹龙生、杨阳、吴佳俊、刘弓冶

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生态环境部辐射环境监测技术中心,国家环境保护辐射环境监测重点实验室,浙江省辐射环境安全监测重点实验室,杭州 310012

宇宙射线响应 γ辐射剂量率 测量载体 浮筒平台 冰面 玻璃钢船

2025

辐射防护
中国核学会辐射防护分会

辐射防护

北大核心
影响因子:0.4
ISSN:1000-8187
年,卷(期):2025.45(1)