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Improving gross count gamma-ray logging in uranium mining with the NGRS probe

机译:用NGRS探针改善铀矿山矿山的总计伽马射线测井

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摘要

AREVA Mines and the Nuclear Measurement Laboratory of CEA Cadarache are collaborating to improve the sensitivity and precision of uranium concentration measurement by means of gamma ray logging. The determination of uranium concentration in boreholes is performed with the Natural Gamma Ray Sonde (NGRS) based on a NaI(Tl) scintillation detector. The total gamma count rate is converted into uranium concentration using a calibration coefficient measured in concrete blocks with known uranium concentration in the AREVA Mines calibration facility located in Bessines, France. Until now, to take into account gamma attenuation in a variety of boreholes diameters, tubing materials, diameters and thicknesses, filling fluid densities and compositions, a semi-empirical formula was used to correct the calibration coefficient measured in Bessines facility. In this work, we propose to use Monte Carlo simulations to improve gamma attenuation corrections. To this purpose, the NGRS probe and the calibration measurements in the standard concrete blocks have been modeled with MCNP computer code. The calibration coefficient determined by simulation, 5.3 s-1.ppmU-1 ± 10%, is in good agreement with the one measured in Bessines, 5.2 s-1.ppmU-1. Based on the validated MCNP model, several parametric studies have been performed. For instance, the rock density and chemical composition proved to have a limited impact on the calibration coefficient. However, gamma self-absorption in uranium leads to a nonlinear relationship between count rate and uranium concentration beyond approximately 1% of uranium weight fraction, the underestimation of the uranium content reaching more than a factor 2.5 for a 50 % uranium weight fraction. Next steps will concern parametric studies with different tubing materials, diameters and thicknesses, as well as different borehole filling fluids representative of real measurement conditions.
机译:AREVA MINES和CEA CADARACHA的核测量实验室正在合作以通过伽马射线测井来提高铀浓缩测量的敏感性和精度。基于Nai(TL)闪烁检测器,用天然γ射线Sonde(NGRS)进行钻孔中铀浓缩的测定。使用在位于法国宾夕法尼亚州的AREVA矿山校准设施中,使用在混凝土块中测量的校准系数将总γ计数率转化为铀浓浓度。到目前为止,要考虑到各种钻孔直径,管材,直径和厚度,填充流体密度和组合物的伽马衰减,使用半经验公式来校正在Bessines设施中测量的校准系数。在这项工作中,我们建议使用Monte Carlo模拟来改善伽马衰减校正。为此目的,NGRS探头和标准混凝土块中的校准测量已经用MCNP计算机代码建模。通过仿真确定的校准系数,5.3 S-1.PPMU-1±10%与BESSINES中测量的一致性良好,5.2 S-1.PPMU-1。基于经过验证的MCNP模型,已经进行了几项参数研究。例如,岩石密度和化学组成证明对校准系数产生有限的影响。然而,铀中的γ自吸收导致计数率和铀浓度之间的非线性关系超过约1%的铀体重级分,铀含量低于溶于50%铀体重级分的铀含量。下一步将涉及具有不同管材,直径和厚度的参数研究,以及代表实际测量条件的不同钻孔填充流体。

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