致密储层解水新药剂的研制

Amjed Hassan, M. Mahmoud, Abdulaziz Al-Majed, O. Alade, A. Al-Nakhli, M. Bataweel, Salaheldin Elktatany
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引用次数: 4

摘要

在石油工业中,从非常规油藏中开采油气面临着巨大的挑战。致密储层的特点是低渗透率,这减少了油气流入井筒。由于水堵塞会增加井筒周围的含水饱和度,最终降低油气的相对渗透率,因此被认为是致密储层的潜在危害问题。需要进行酸压裂或水力压裂以消除损害并提高地层导流能力。本文的目的是提出一种利用热化学处理技术去除致密地层水堵塞的新技术。在储层条件下产生压力和热量的化学物质被用来从致密岩心样品中去除水库。进行了岩心注水实验、毛细管压力测量和核磁共振测量,并进行了常规岩心分析。量化了热化学处理对提高地层产能的影响。通过评价化学处理前后孔隙几何形态,分析热化学注入对岩石完整性的影响。热化学处理导致芯的电导率显著提高。核磁共振表明,由于热化学驱,岩心样品中产生了微小的裂缝。毛细管压力测量结果表明,化学处理后毛细管压力降低55.6%。研究结果表明,水堵塞是致密气藏的一大挑战。向致密样品中注入热化学流体可显著降低毛细力,从而消除水积聚。因此,岩石导电性显著增强。该研究提供了一种使用环保化学物质去除致密地层水堵塞的新方法。在井下产生热量和压力的化学物质被用来制造微小的裂缝。该处理能够消除致密砂岩岩心中的水堵塞,并通过降低毛细力来提高产能指数。
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Development of A New Chemical Treatment for Removing Water Blockage in Tight Reservoirs
In petroleum industry, great challenges are associated with producing hydrocarbon from unconventional reservoirs. Tight reservoirs are characterized with low permeability which reduces the hydrocarbon flow into the wellbore. Water blockage is considered as a potential damage issue in tight reservoirs due to increasing the water saturation around wellbore region and eventually decreasing the relative permeability of hydrocarbons. Acid fracturing or hydraulic fracturing are required to remove the damage and enhance the formation conductivity. The objective of this paper is to propose a new technique to remove the water blockage from tight formations using thermochemical treatment. Chemicals that generate pressure and heat at reservoir conditions are used to remove the water bank from tight core samples. Coreflooding experiments, capillary pressure and NMR measurements were conducted as well as routine core analysis. The impact of thermochemical treatment on improving the formation productivity was quantified. The effect of thermochemical injection on rock integrity was analyzed by evaluating the pore geometry before and after the chemical treatment. Thermochemical treatment resulted in a significant improvement in the core conductivity. NMR indicated that, tiny fractures were created in the core samples due the thermochemical flooding. Capillary pressure measurements showed that, the capillary pressure was reduced by 55.6% after the chemical treatment. The results of this study highlight that water blockage is great challenge in tight gas reservoirs. Injecting thermochemical fluids into tight samples reduces the capillary forces significantly, which leads to remove the water accumulation. Therefore, considerable enhancement was observed in the rock conductivity. This study provides a novel approach for removing the water blockage from tight formations using environmentally friendly chemicals. Chemicals that generate heat and pressure at downhole conditions were used to create tiny fractures. This treatment was able to remove the water blockage from tight sandstone cores and improve the productivity index by reducing the capillary forces.
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