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首页> 外文期刊>Journal of natural gas science and engineering >Pore-fluid characterizations and microscopic mechanisms of sedimentary rocks with three-dimensional NMR: Tight sandstone as an example
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Pore-fluid characterizations and microscopic mechanisms of sedimentary rocks with three-dimensional NMR: Tight sandstone as an example

机译:三维NMR沉积岩的孔隙液特征和微观机制:纯砂岩作为示例

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摘要

Pore-fluid is directly related to the reservoir quality. Three-dimensional (3D) nuclear magnetic resonance (NMR) can be used for charactering pore-fluid due to its sensitivity to fluid components saturated in sedimentary rocks. In this paper, taken a tight sandstone as an example, investigating pore-fluid characterizations and microscopic mechanisms through 3D NMR. Firstly, a commonly used 3D NMR pulse sequence, tri-window pulse sequence, in actual oilfield was presented and its data processing workflow was exhibited briefly. Then, random-walk method was modified to simulate the pulse sequence measurements at different pore-fluid cases in tight sandstone, such as pure water case, oil-water case, and gas-water case. Finally, pore-fluid 3D NMR responses were exhibited and their microscopic mechanisms were explored. The results show that 3D NMR can identify different fluid components saturated in sedimentary rocks; wetting fluid saturation directly affect wetting fluid relaxation time, but the non-wetting fluid relaxation information is independent of fluid saturation; wetting fluid has an obvious restricted diffusion as a lower saturation; an obvious difference between gas signal and water or oil signal in two-dimensional relaxation spectra due to high longitudinal to transverse relaxation time ratio of pore gas. These simulations provide a theoretical basis for interpreting 3D NMR macroscopic responses, which should be helpful for pore-fluid identifying in tight oil and gas reservoirs.
机译:孔隙流体与储层质量直接相关。三维(3D)核磁共振(NMR)可用于表现孔隙流体,由于其对沉积岩石中的流体部件的敏感性。在本文中,以紧密的砂岩为例,通过3D NMR调查孔隙流体特征和微观机制。首先,提出了一种常用的3D NMR脉冲序列,实际油田中的三窗脉冲序列,并简要展现了其数据处理工作流程。然后,改性随机步行方法以模拟不同砂岩中不同孔隙流体盒的脉冲序列测量,例如纯净水箱,油水壳和气体水箱。最后,展示了孔隙流体3D NMR响应,并探讨了它们的显微机制。结果表明,3D NMR可以识别沉积岩石中饱和的不同流体组分;润湿液体饱和直接影响润湿流体松弛时间,但无润湿的流体松弛信息与流体饱和度无关;润湿液具有明显的限制扩散作为较低饱和度;由于高纵向纵向松弛时间比的高纵向松弛时间比孔气气信号和水中的水信号和水或油信号与孔气气的横向弛豫时间率为明显的差异。这些模拟为解释3D NMR宏观反应提供了理论依据,这应该有助于识别在紧的油气储层中的孔隙流体。

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