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首页> 外文期刊>Computers & geosciences >EQUILGAS: Program to estimate temperatures and in situ two-phase conditions in geothermal reservoirs using three combined FT-HSH gas equilibria models
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EQUILGAS: Program to estimate temperatures and in situ two-phase conditions in geothermal reservoirs using three combined FT-HSH gas equilibria models

机译:EQUILGAS:使用三个组合的FT-HSH气体平衡模型估算地热储层温度和原位两相条件的程序

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Exploration and exploitation of geothermal resources require the estimation of important physical characteristics of reservoirs including temperatures, pressures and in situ two-phase conditions, in order to evaluate possible uses and/or investigate changes due to exploitation. As at relatively high temperatures (> 150 degrees C) reservoir fluids usually attain chemical equilibrium in contact with hot rocks, different models based on the chemistry of fluids have been developed that allow deep conditions to be estimated. Currently either in water-dominated or steam-dominated reservoirs the chemistry of steam has been useful for working out reservoir conditions. In this context, three methods based on the Fischer-Tropsch (FT) and combined H2S-H-2 (HSH) mineral-gas reactions have been developed for estimating temperatures and the quality of the in situ two-phase mixture prevailing in the reservoir. For these methods the mineral buffers considered to be controlling H2S-H-2 composition of fluids are as follows. The pyrite magnetite buffer (FT-HSH1); the pyrite-hematite buffer (FT-HSH2) and the pyrite-pyrrhotite buffer (FT-HSH3). Currently from such models the estimations of both, temperature and steam fraction in the two-phase fluid are obtained graphically by using a blank diagram with a background theoretical solution as reference. Thus large errors are involved since the isotherms are highly nonlinear functions while reservoir steam fractions are taken from a logarithmic scale. In order to facilitate the use of the three FT-HSH methods and minimize visual interpolation errors, the EQUILGAS program that numerically solves the equations of the FT-HSH methods was developed. In this work the FT-HSH methods and the EQUILGAS program are described. Illustrative examples for Mexican fields are also given in order to help the users in deciding which method could be more suitable for every specific data set. (C) 2015 Elsevier Ltd. All rights reserved.
机译:地热资源的勘探和开发需要估算储层的重要物理特征,包括温度,压力和原地两相条件,以便评估可能的用途和/或调查由于开采而引起的变化。由于在相对较高的温度(> 150摄氏度)下,储层流体通常会在与热岩石接触时达到化学平衡,因此已经开发了基于流体化学性质的不同模型,可以估算深层条件。当前,无论是在水为主的储层还是蒸汽为主的储层中,蒸汽的化学性质对于确定储层条件都是有用的。在这种情况下,已经开发出了三种基于费-托(FT)和H2S-H-2(HSH)矿物-气体混合反应的方法,用于估算储层中普遍存在的温度和原位两相混合物的质量。 。对于这些方法,被认为可控制H2S-H-2流体成分的矿物缓冲剂如下。黄铁矿磁铁矿缓冲液(FT-HSH1);黄铁矿-赤铁矿缓冲液(FT-HSH2)和黄铁矿-硫铁矿缓冲液(FT-HSH3)。当前,从这样的模型中,通过使用空白图以背景理论解作为参考,以图形方式获得两相流体中的温度和蒸汽分数的估计。由于等温线是高度非线性函数,而储层中的蒸汽分数是从对数标度中提取的,因此涉及较大的误差。为了方便使用这三种FT-HSH方法并最大程度地减小了视觉插值误差,开发了EQUILGAS程序,该程序可以对FT-HSH方法的方程进行数值求解。在这项工作中,描述了FT-HSH方法和EQUILGAS程序。还给出了墨西哥字段的说明性示例,以帮助用户确定哪种方法更适合每个特定的数据集。 (C)2015 Elsevier Ltd.保留所有权利。

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