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Real-Time Downhole pH Measurement Using Optical Spectroscopy

机译:使用光谱实时测量井下pH

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A new downhole pH sensor has been developed to provide an in-situ pH measurement of formation water at reservoir conditions, and results are presented for two wells in the Norwegian Sea. The measurement technique, for use with wireline formation sampling tools, uses pH-sensitive dyes that change color according to the pH of the formation water. To make a real-time pH measurement, the dye is injected into the formation fluid being pumped through the tool flowline, and the relevant visible wavelengths in an optical detector are used to record the dye signal and calculate pH with 0.1 unit accuracy.The pH of a formation fluid alters as the sample is brought to surface from the high temperature and pressure conditions downhole, owing to acid gases and salts coming out of solution and changes in water chemistry equilibria. To get an accurate pH, the measurement has to be made downhole at reservoir conditions. Unlike potentiometric methods where fouling of electrode surfaces by oil and mud is a potential problem, the dye technique is robust because the dye is isolated from the formation fluid and is injected into the sample only when a measurement is made. The technique has been successfully applied to both oil-based and water-based drilling muds, with successful measurements even in mixed oil/water flows. Multiple measurements of pH at a single sampling station demonstrate that the method is robust and repeatable. These measurements have been compared with numerical simulations using a multiphase chemical equilibrium model that uses laboratory analysis of collected water samples as input.pH is a key parameter in water chemistry and is critical for corrosion and scale studies. Accurate downhole pH measurement allows more accurate selection of appropriate completion materials and more effective planning for scale treatment and inhibition.
机译:已开发出一种新的井下pH传感器,以在储层条件下对地层水进行原位pH测量,并给出了挪威海中两口井的结果。与电缆地层采样工具一起使用的测量技术使用的pH敏感染料会根据地层水的pH值而改变颜色。为了进行实时pH测量,将染料注入通过工具流水线泵送的地层流体中,并使用光学检测器中的相关可见波长记录染料信号并以0.1单位精度计算pH。 由于样品中的酸性气体和盐从溶液中逸出以及水化学平衡的变化,地层流体的pH值会随着样品从井下的高温和高压条件带到地面而发生变化。为了获得准确的pH值,必须在储层条件下进行井下测量。与电位计法不同,在电位计法中油和泥会污染电极表面,这是一个潜在的问题,而染料技术则是可靠的,因为染料与地层流体隔离,仅在进行测量时才注入样品中。该技术已成功应用于油基和水基钻探泥浆,即使在油/水混合流中也能成功进行测量。在单个采样站上对pH进行多次测量表明,该方法是可靠且可重复的。这些测量值已与使用多相化学平衡模型的数值模拟进行了比较,该模型使用实验室对收集到的水样进行分析作为输入。 pH是水化学中的关键参数,对于腐蚀和水垢研究至关重要。准确的井下pH测量可以更准确地选择合适的完井材料,并且可以更有效地计划水垢处理和抑制作用。

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