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Optimization of Energy Window for Gamma Densitometer Based Backscatter Method in Oil Industry

机译:石油工业中基于伽马密度计的反向散射方法的能量窗口优化

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In this paper, we describe the results of various calculations performed for a design of the interference gauges that use the gamma-ray backscattering method with different scatter windows. The Pb barrier as shielding placed between 4 mCi Cs-137 sealed radioactive source and a NaI (Tl) scintillation detector (1 inch in diameter-2 inch in height). Upon interaction with the material the scattered radiation, due to Compton process, was measured by NaI(Tl) detector. Using Compton scattered photons and review of the scattered photons in substance, by measuring of gamma-ray photons distributed, the density of materials can be obtained accurately. The results present for different scatter energy windows which 39-273 and 39-390 keV scatter windows have the best Delta X, STD and signal to noise.
机译:在本文中,我们描述了针对使用带有不同散射窗口的伽马射线反向散射方法的干涉仪设计进行的各种计算的结果。作为屏蔽层的Pb屏障位于4 mCi Cs-137密封放射源和NaI(Tl)闪烁检测器(直径1英寸,高度2英寸)之间。在与材料相互作用时,通过NaI(Tl)检测器测量归因于康普顿过程的散射辐射。使用康普顿散射光子并检查散射光子的实质,通过测量所分布的伽马射线光子,可以准确地获得材料的密度。针对不同的散射能量窗口(39-273和39-390 keV散射窗口具有最佳Delta X,STD和信噪比)显示的结果。

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