Experimental Research on the Gas Hydrate Based on T2 and T1–T2 Low Field NMR Technique

J. Liu, Y. Fan, X. Ge, D. Xing, T. Qiu
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Abstract

Summary We conducted the T2 and T1–T2 low field NMR experiment to detect the formation and dissociation process of the methane gas hydrate in sedimentary rocks and artificial cores. Based on our investigations. (1)The gas hydrate forms preferentially in large pores and it is easier for the gas hydrate to reach the equilibrium state than for samples with small pore diameter and grain size. (2)The gas hydrate volume is positively correlated with the porosity, but there is no obvious relationship between the gas hydrate saturation and the porosity. (3)The spectrum distributions move towards the fast relaxation domain with the growth of gas hydrate, because the generated gas hydrate occupies the large pore and accelerate the relaxation rate. (4) It is easier for the gas hydrate in the sample of high porosity and large pore size to dissociate than that in the sample of low porosity and small pore size. (5) T1–T2 spectrum gives new perspective of the porous media, which helps us to discriminate complex components that cannot be interpreted only by the T2 spectrum.
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基于T2和T1-T2低场核磁共振技术的天然气水合物实验研究
通过T2和T1-T2低场核磁共振实验,探测沉积岩和人工岩心中甲烷天然气水合物的形成和解离过程。根据我们的调查。(1)气体水合物优先在大孔隙中形成,相对于孔径小、粒度小的样品更容易达到平衡状态。(2)天然气水合物体积与孔隙度呈正相关,但天然气水合物饱和度与孔隙度关系不明显。(3)随着天然气水合物的生长,谱分布向快速弛豫域移动,这是因为生成的天然气水合物占据了较大的孔隙,加速了弛豫速率。(4)高孔隙度、大孔径样品中的天然气水合物比低孔隙度、小孔径样品中的水合物更容易解离。(5) T1-T2谱为研究多孔介质提供了新的视角,有助于我们区分仅用T2谱无法解释的复杂组分。
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