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Development of a portable graphite calorimeter for radiation dosimetry

机译:开发用于辐射剂量测定的便携式石墨量热仪

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We developed and performance-tested a portable graphite calorimeter designed to measure the absolute dosimetry of various beams including heavy-ion beams, based on a flexible and convenient means of measurement. This measurement system is fully remote-controlled by the GPIB system. This system uses a digital PID (Proportional, Integral, Derivative) control method based on the LabVIEW software. It was possible to attain stable conditions in a shorter time by this system. The standard deviation of the measurements using the calorimeter was 0.79 at a dose rate of 0.8 Gy/min in 17 calorimeter runs for a (60)Co photon beam. The overall uncertainties for the absorbed dose to graphite and water of the (60)Co photon beam using the developed calorimeter were 0.89 and 1.35, respectively. Estimations of the correction factors due to vacuum gaps, impurities in the core, the dose gradient and the radiation profile were included in the uncertainties. The absorbed doses to graphite and water irradiated by the (60)Co photon beam were compared with dosimetry measurements obtained using three ionization chambers. The absorbed doses to graphite and water estimated by the two dosimetry methods agreed within 0.1 and 0.3, respectively.
机译:我们开发了一种便携式石墨量热仪,并对其进行了性能测试,该量热仪基于灵活方便的测量方法,旨在测量各种光束(包括重离子光束)的绝对剂量测定。该测量系统完全由GPIB系统远程控制。该系统采用基于LabVIEW软件的数字PID(比例、积分、微分)控制方法。通过该系统可以在更短的时间内获得稳定的条件。在 (60)Co 光子束的 17 次量热仪运行中,在 0.8 Gy/min 的剂量率下,使用量热仪测量的标准偏差为 0.79%。使用开发的量热仪,(60)Co光子束对石墨和水的吸收剂量的总体不确定性分别为0.89%和1.35%。由于真空间隙、堆芯中的杂质、剂量梯度和辐射分布而产生的校正因子的估计被包括在不确定性中。将(60)Co光子束照射的石墨和水的吸收剂量与使用三个电离室获得的剂量测量值进行了比较。通过两种剂量法估计的对石墨和水的吸收剂量分别在0.1%和0.3%以内。

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