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    • 4. 发明申请
    • Methods For Producing Fluids From Geological Formation
    • 地质形成液体生产方法
    • US20130289961A1
    • 2013-10-31
    • US13825058
    • 2011-09-20
    • Indranil RayRichard E. LewisOliver Clinton MullinsColin LongfieldBruce MacKayPaul GeorgeRashmi Bhanulal BhavsarChris Wilkinson
    • Indranil RayRichard E. LewisOliver Clinton MullinsColin LongfieldBruce MacKayPaul GeorgeRashmi Bhanulal BhavsarChris Wilkinson
    • G01V9/00
    • G01V9/00E21B47/00E21B49/00
    • Embodiments disclosed herein relate to reservoir characterization techniques and methods for accurately predicting scale tendencies of formation fluids, developed with the newly discovered phenomena that extreme downhole conditions affect the properties of reservoir fluids, including both the brine and dense hydrocarbon gas phases. In one aspect, there is disclosed a method for producing fluids from a geological formation. The method comprises inputting at least one property of a geological formation into an equation of state (EOS) model. The EOS model accounts for bound water, a high temperature effect on the brine and a high temperature effect on the dense gas phase. The EOS model is solved to determine a character of fluids contained in the geological formation, and inputting a production condition or a plurality of production conditions into the EOS model. A character of the fluids is determined based on the determined character of the fluids in the geological formation and the input production conditions. The solution can be output to a display device. Planning of the production of fluids from the geological formation can be performed. Production conditions can be controlled or adjusted.
    • 本文公开的实施例涉及用于准确地预测地层流体的尺度倾向的储层表征技术和方法,该新技术用新发现的现象开发出极端井下条件影响储层流体的性质,包括盐水和致密烃气相。 一方面,公开了一种从地质层产生流体的方法。 该方法包括将地质构造的至少一个属性输入到状态方程(EOS)模型中。 EOS模型考虑了结合水,对盐水具有高温作用,对致密气相具有高温作用。 解决EOS模型,以确定地质构造中含有的流体特性,并将生产条件或多个生产条件输入到EOS模型中。 基于地质构造中的流体的确定特征和输入生产条件来确定流体的特征。 该解决方案可以输出到显示设备。 可以对地质地层中的流体进行规划。 生产条件可以控制或调整。