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Estimation of model parameters and properties for numerical simulation on geomechanical stability of gas hydrate production in the Ulleung Basin, East Sea, Korea

机译:韩国东海Ulleung盆地天然气水合物开采地质力学稳定性数值模拟的模型参数和属性估算

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摘要

The process of hydrate dissociation and production induced by depressurization incorporates intricate hydraulic, thermal, and mechanical phenomena. Thus, coupled thermal-hydraulic-mechanical (T-H-M) simulation is critically necessary to evaluate the geomechanical stability of hydrate production in hydrate-bearing sediments (HBS). However, methods of estimating the input model parameters and properties of the target reservoir, in particular in unconsolidated marine sediments, have received limited attention compared to studies on production simulators. The T-H-M properties of the marine sediments change considerably with depth, geological strata, and soil type of each layer. Therefore, it is important that representative layers and their corresponding T-H-M properties should be properly estimated to analyze the stability and productivity of methane gas recovery in the field. This study provides a comprehensive estimation for the model parameters and properties of unconsolidated marine sediments, based on vast data from field seismic surveys and laboratory experimental results with core samples, investigates empirical correlations between model parameters and methane hydrate saturation, and finally summarizes the estimated model parameters and properties, which can possibly be applied to on-going numerical research into stability assessment of the pilot gas hydrate (GH) production test, which is soon to be performed in the Ulleung basin. (c) 2017 Elsevier Ltd and INQUA. All rights reserved.
机译:减压引起的水合物分解和生成过程包含了复杂的水力,热力和机械现象。因此,热-水力-机械(T-H-M)耦合模拟对于评估含水合物沉积物(HBS)中水合物生产的地质力学稳定性至关重要。但是,与在生产模拟器上进行的研究相比,估计输入模型参数和目标储层(尤其是在未固结的海洋沉积物中)的属性的方法受到的关注有限。海洋沉积物的T-H-M特性随深度,地质层和每一层的土壤类型而变化很大。因此,重要的是应适当估算代表性层及其相应的T-H-M性质,以分析现场甲烷气回收的稳定性和生产率。这项研究基于野外地震调查的大量数据以及含岩心样本的实验室实验结果,为未固结海相沉积物的模型参数和性质提供了全面的估计,研究了模型参数与甲烷水合物饱和度之间的经验相关性,最后总结了估计的模型参数和特性,可能会用于正在进行的天然气水合物(GH)生产试验稳定性评估的数值研究,该试验很快将在Ulleung盆地进行。 (c)2017年爱思唯尔有限公司和INQUA。版权所有。

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