通过DAP溶液强化碳酸盐地层水力裂缝导流能力

Y. Samarkin, M. Aljawad, A. Amao, T. Sølling, K. Al-Ramadan, S. Abu-Khamsin, S. Patil, M. AlTammar, K. Alruwaili
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引用次数: 5

摘要

水力压裂作业涉及在低渗透地层中形成导电通道,以最大限度地提高油气产量。主要挑战之一是在高闭合应力下保持裂缝导流能力,特别是在软地层中。然而,通过提高断口表面硬度,可以维持长期的裂缝导流能力。本研究的目标是通过方解石转变为更硬的羟基磷灰石矿物来强化碳酸盐岩。在本研究中,石灰岩、白垩和白云岩岩石标本在室温条件下用1M的磷酸二铵(DAP)溶液处理3天。采用压痕法(布氏硬度法)测定处理前后岩石试样的硬度,评价DAP的强化效果。用SEM-EDS技术研究了处理后样品的矿物学变化。磷酸盐矿物的形成是在处理过的样品中实现的,它们在扫描电镜图像中清晰可见。结果表明,石灰石和白垩样品与DAP溶液反应强烈,表现为岩样内部新形成矿物丰度丰富。白云石与DAP溶液反应较弱,产生分离的磷矿物。通过与文献报道的其他磷矿物的形态比较,鉴定形成的矿物为羟基磷灰石(莫氏硬度为5)。用DAP溶液处理后,岩石的强度得到了提高。处理后,白垩样品的布氏硬度增加了30%,而石灰石样品的硬度增加了13%。所提出的碳酸盐岩强化技术可应用于水力压裂,旨在解决常见的软地层问题(例如,砾石破坏、支撑剂嵌入),导致酸/支撑裂缝的导流能力降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydraulic Fracture Conductivity Sustenance in Carbonate Formations Through Rock Strengthening by DAP Solution
Hydraulic fracturing operations involve generating conductive pathways in low permeability formations to maximize hydrocarbons production. One of the main challenges is maintaining fracture conductivity under high closure stresses, especially in soft formations. However, long–term fracture conductivity can be sustained through fracture surface hardness improvement. This research targets the strengthening of carbonate rocks via the transformation of calcite into the harder hydroxyapatite mineral. In this study, limestone, chalk, and dolomite rock specimens were treated with 1M solution of diammonium phosphate (DAP) for 3 days at room temperature conditions. Rock samples’ hardness was measured by indentation (Brinell hardness) technique before/after the treatment to assess the strengthening effect of DAP. The changes in the mineralogy in treated samples were studied by SEM-EDS technique. The formation of phosphate minerals was achieved in treated samples, and they were clearly seen in the SEM images. The results have shown that both limestone and chalk samples reacted strongly with DAP solution, which was expressed in terms of rich abundance in newly formed minerals inside rock specimens. The reaction between dolomite and DAP solution was observed to be weak which resulted in generation of isolated phosphate minerals. The formed minerals were identified as hydroxyapatite (5 hardness in the Mohs scale) after comparing their morphology with other phosphate minerals reported in the literature. Treatment of the rocks by DAP solution resulted in improvement of their strength. The Brinell hardness of the chalk specimen was increased by 30% after the treatment, whereas in the case of the limestone sample, a 13% increment in hardness was achieved. The proposed carbonate rock strengthening technique can be applied in hydraulic fracturing It is intended to solve common soft formations problems (e.g., asperities failure, proppant embedment) causing acid/propped fractures’ conductivity reduction.
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