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Quantitative analysis of neutron-capture gamma-ray energy spectra using direct demodulation

机译:使用直接解调对中子俘获伽马射线能谱进行定量分析

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Because of the effects of background and measurement environment and multiplet effects of different elements, high-precision analysis of mixed capture γ-ray energy spectra of complicated formations remains challenging for geochemical elemental logging. The direct demodulation (DD) method makes full use of the measured data information, enabling physical constraints to be rationally applied to the spectral analysis process, and can yield high-precision elemental content from poor-statistics, low signal-to-noise ratio, and disturbed data. We construct mixed formations of different sandstones and limestones, mixed formations of sandstone and anhydrite, and more complicated mixed formations of multiple lithologies and employ Monte Carlo numerical simulations to obtain the neutron-capture γ-ray energy spectra of these mixed formations. We then employ the DD method and the weighted-least-squares (WLS) method to analyze quantitatively such mixed spectra, respectively, and compare the results with the actual contents of formation elements. The results indicate that the DD method offers higher precision spectral analysis compared with the results of the WLS method. The results for the capture γ-ray energy spectra of the formation for two actual wells also indicate that the DD method can be useful for spectral analysis in actual application.
机译:由于背景和测量环境的影响以及不同元素的多重影响,复杂地层的混合捕获γ射线能谱的高精度分析对于地球化学元素测井仍然具有挑战性。直接解调(DD)方法充分利用了测得的数据信息,可以将物理约束合理地应用于光谱分析过程,并且可以从统计差,信噪比低,和受干扰的数据。我们构造了不同砂岩和石灰岩的混合岩层,砂岩和硬石膏的混合岩层,以及多种岩性的更复杂的混合岩层,并使用蒙特卡洛数值模拟获得了这些混合岩层的中子俘获γ射线能谱。然后,我们分别采用DD方法和加权最小二乘(WLS)方法分别对这种混合光谱进行定量分析,并将结果与​​地层元素的实际含量进行比较。结果表明,与WLS方法相比,DD方法提供了更高的光谱分析精度。对于两个实际井的地层捕获γ射线能谱的结果也表明DD方法可用于实际应用中的光谱分析。

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