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Method for modelling the production of hydrocarbons by a subsurface deposit which are subject to depletion

机译:模拟地下矿床开采碳氢化合物的方法

摘要

A method for forming a model simulating production, by an underground reservoir subject to depletion, of hydrocarbons comprising notably relatively high-viscosity oils. From laboratory measurements of the respective volumes of oil and gas produced by rock samples from the reservoir subject to depletion, and the relative permeabilities (Kr) of rock samples to hydrocarbons, a model of the formation and flow of the gas fraction is used to determine a volume transfer coefficient (hv) by means of an empirical function representing the distribution of nuclei that can be activated at a pressure P (function N(P)) which is calibrated with reference to the previous measurements. Considering that the nuclei distribution N(P) in the reservoir rocks is the same as the distribution measured in the laboratory, the numerical transfer coefficient corresponding thereto in the reservoir at selected depletion rates is determined using the gas fraction formation and flow model, which allows predicting the relative permeabilities in the reservoir and the production thereof which is useful for reservoir engineering. Method for forming a model allowing to simulate the production, by an underground reservoir subjected to depletion, of hydrocarbons comprising notably relatively high-viscosity oils. From laboratory measurements of the respective volumes of oil and gas produced by rock samples from the reservoir and subjected to depletion, and the relative permeabilities (Kr) of rock samples to hydrocarbons, a model of the formation and flow of the gas fraction is used to determine a volume transfer coefficient (hv) by means of an empirical function representing the distribution of nuclei that can be activated at a pressure P (function N(P)) which is calibrated with reference to the previous measurements. Considering that the nuclei distribution N(P) in the reservoir rocks is the same as the distribution measured in the laboratory, the numerical transfer coefficient corresponding thereto in the reservoir at selected depletion rates is determined using the gas fraction formation and flow model, which allows to predict the relative permeabilities in the reservoir and the production thereof. Applications notably reservoir engineering.
机译:一种形成模型的方法,该模型用于模拟由处于耗竭状态的地下油藏生产的烃,所述烃主要包括相对较高粘度的油。从实验室测量中,油藏中的岩石样品所消耗的石油和天然气的各自体积将受到消耗,以及岩石样品对烃的相对渗透率(Kr),可使用气体馏分的形成和流动模型来确定借助于经验函数表示体积传递系数(hv),该经验函数表示可以在参考先前测量值进行校准的压力P下激活的原子核分布(函数N(P))。考虑到储集层岩石中的核分布N(P)与实验室中测得的分布相同,因此在选定的消耗率下,在储层中相应的数值传递系数通过使用气体形成和流动模型来确定,这使得预测储层中的相对渗透率及其产量,这对储层工程很有用。形成模型的方法,该模型允许模拟地下油气藏的开采,该油气藏主要由相对高粘度的油组成。根据实验室测量,储层中的岩石样品产生的石油和天然气的体积分别经过消耗,以及岩石样品对碳氢化合物的相对渗透率(Kr),使用了该气体馏分的形成和流动模型。借助于经验函数确定体积传递系数(hv),该经验函数表示可以在参考先前测量值进行校准的压力P下激活的核分布(函数N(P))。考虑到储集层岩石中的核分布N(P)与实验室中测得的分布相同,因此在选定的消耗率下,在储层中相应的数值传递系数通过使用气体形成和流动模型来确定,这使得以预测储层中的相对渗透率及其产量。应用尤其是油藏工程。

著录项

  • 公开/公告号US2005165593A1

    专利类型

  • 公开/公告日2005-07-28

    原文格式PDF

  • 申请/专利权人 ROLAND LENORMAND;FABRICE BAUGET;

    申请/专利号US20040508206

  • 发明设计人 FABRICE BAUGET;ROLAND LENORMAND;

    申请日2003-03-17

  • 分类号G06G7/48;

  • 国家 US

  • 入库时间 2022-08-21 22:23:10

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