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首页> 外文期刊>Transport in Porous Media >Porous Media Compressed-Air Energy Storage (PM-CAES): Theory and Simulation of the Coupled Wellbore-Reservoir System
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Porous Media Compressed-Air Energy Storage (PM-CAES): Theory and Simulation of the Coupled Wellbore-Reservoir System

机译:多孔介质压缩空气储能(PM-CAES):井筒-储层耦合系统的理论与模拟

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摘要

Expansion in the supply of intermittent renewable energy sources on the electricity grid can potentially benefit from implementation of large-scale compressed air energy storage in porous media systems (PM-CAES) such as aquifers and depleted hydrocarbon reservoirs. Despite a large government research program 30 years ago that included a test of air injection and production in an aquifer, and an abundance of literature on CAES mostly relevant to caverns, there remain fundamental questions about the hydrologic and energetic performance of PM-CAES. We have developed rigorous simulation capabilities for PM-CAES that include modeling the coupled wellbore-reservoir system. Through consideration of a prototypical PM-CAES wellbore-reservoir system representing a depleted hydrocarbon reservoir, we have simulated 100 daily cycles of PM-CAES. We find that (1) PM-CAES can store energy but that pervasive pressure gradients in PM-CAES result in spatially variable energy storage density in the reservoir, (2) the wellbore-reservoir storage component of PM-CAES is very efficient, (3) cap-rock and hydrologic seals along with proper sizing of the PM-CAES reservoir prevent excess pressure diffusion from being a problem, and (4) injection and production of air does not significantly mobilize residual liquid water in the reservoir.
机译:扩大间歇性可再生能源在电网上的供应量,可能会受益于在多孔介质系统(PM-CAES)(如含水层和贫油油气藏)中实施大规模压缩空气储能。尽管30年前政府进行了一项大型研究计划,其中包括对含水层中的空气注入和生产进行测试,以及大量与洞穴有关的有关CAES的文献,但对于PM-CAES的水文和能量性能仍然存在基本问题。我们为PM-CAES开发了严格的模拟功能,其中包括对耦合的井筒-储层系统进行建模。通过考虑代表贫化油气藏的典型PM-CAES井筒-储层系统,我们模拟了PM-CAES的100个日循环。我们发现(1)PM-CAES可以存储能量,但是PM-CAES中普遍存在的压力梯度会导致储层中能量存储密度的空间变化;(2)PM-CAES的井眼-储层存储组件非常有效,( 3)盖层岩石和水文密封以及适当尺寸的PM-CAES储层可以防止过大的压力扩散成为问题,并且(4)注入和生产空气不会显着地移动储层中的残留液态水。

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