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    高温高压实验约束下西湖凹陷花港组致密储层岩石物理建模与甜点响应特征

    Rock physics modeling and sweet spot characterization of tight reservoirs in the Huagang Formation, Xihu sag, constrained by high-temperature and high-pressure experiments

    • 摘要: 岩石物理模型是连接储层物性参数与弹性参数的桥梁,然而传统岩石物理建模通常是在常温常压条件下进行的,忽略了地层温度、压力对岩石物理性质的影响。研究储层条件下(高温、高压)孔隙度、含水饱和度等物性参数与地震参数之间的关系,对于储层甜点的精确识别及定量解释具有极为重要的意义。以西湖凹陷X区块花港组致密砂岩储层为研究对象,选取5口井共55块岩心样品,开展了常温常压和高温高压条件下的干燥岩石速度与孔隙度测量,并分析了变饱和度条件下的岩石速度变化。相较于传统的常温常压实验,在高温高压岩石物理实验约束下,实现了原状地层条件下储层弹性参数的高精度模拟,拟合了岩石基质、干岩石骨架以及饱和岩石弹性参数之间的响应关系,搭建了基于KT模型与WPH模型的岩石物理建模方法流程,最终明确了花港组致密砂岩储层甜点的岩石物理响应特征,制作了岩石物理量版并厘定了甜点敏感弹性参数。结果表明:基于KT模型与WPH模型的岩石物理模型对西湖凹陷花港组致密砂岩储层具有较高的模拟精度,花港组纵、横波速度曲线重构误差小于5%;甜点敏感参数为纵横波速度比,当纵横波速度比小于1.65时可有效指示甜点。

       

      Abstract: Rock physics models serve as a bridge connecting reservoir properties and elastic parameters. However, conventional rock physics modeling is usually carried out under normal temperature and pressure conditions, ignoring the influence of in-situ temperature and pressure on petrophysical properties. Understanding the relationships between petrophysical parameters, e.g., porosity and water saturation, and seismic parameters under in-situ reservoir conditions (high temperature and high pressure) is of great significance for the accurate identification and quantitative interpretation of sweet spots. The case study deals with the tight sandstone reservoirs of the Huagang Formation in Block X of the Xihu sag, and uses 55 core samples from 5 wells for dry rock velocity and porosity measurements under ambient and high-temperature and high-pressure conditions, followed by the analysis of velocity variations with changing saturation. Under the constraint of high-temperature and high-pressure rock physics experiments, this study calibrates the relationships among the elastic parameters of the rock matrix, dry rock skeleton, and saturated rock under in-situ conditions, and establishes a rock physics modeling workflow based on the KT and WPH models. Furthermore, it identifies the rock physics response characteristics of sweet spots in the tight sandstone reservoirs of the Huagang Formation, constructs rock physics templates, and determines the diagnostic elastic parameters for sweet spot identification. The results show that the rock physics model based on the KT and WPH models achieves high reconstruction accuracy for the tight sandstone reservoirs of the Huagang Formation, with the reconstructed P-wave and S-wave velocity errors less than 5%. The diagnostic sweet-spot parameter is the P-wave to S-wave velocity ratio, and a ratio below 1.65 can effectively indicate sweet spots.

       

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