Advanced Multi-Physics Sensor Utilizing Molecular Fingerprinting for Production Logging Tool

S. Maity, Muhammad Abrar Manzar, H. Al-Shabibi, Jana Jindan, Mohamed Larbi Zeghlache
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Abstract

Knowledge of fluid density along with phase measurement are extremely important for reducing the variance in estimating the flow profile from the production logging tool (PLT). When both oil and water are produced simultaneously, induced reflectance measurement derived from the optical refractive index is not effective. This is mainly due to phase persistence behaviour of the optical sensor caused by the coating of the previous phases. The most effective way to characterize such flow is to measure the fluid's fluorescence along with refractive index and density. In this paper, a novel solution is presented using a piezo helm resonator sensor with simultaneous and congruent measurements of fluid mass density, viscosity and sound speed.
先进的多物理场传感器利用分子指纹生产测井工具
流体密度和相位测量的知识对于减少从生产测井工具(PLT)估计流动剖面的差异非常重要。当油和水同时开采时,由光学折射率导出的诱导反射率测量是无效的。这主要是由于前相涂层引起的光学传感器的相位持续行为。表征这种流动最有效的方法是测量流体的荧光、折射率和密度。本文提出了一种利用压电盔谐振器传感器同时测量流体质量密度、粘度和声速的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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