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Low Viscosity Retarded Acid System: A Novel Alternative to Emulsified Acids

机译:低粘度延迟酸系统:一种新的乳化酸的替代品

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Acid systems are widely recognized by the oil and gas industry as an attractive class of fluids for efficient stimulation of carbonate reservoirs. One of the major challenges in carbonate acidizing treatments is adjusting the convective transport of acid deep into the reservoir while achieving a minimum rock face dissolution. Conventional emulsified acids are hindered by several limitations; low stability at high temperatures, a high viscosity that limits pumping rate due to frictional losses, the potential of formation damage, and the difficulty to achieve homogenous field-scale mixing. The objective of this paper is to introduce an engineered low-viscosity retarded acid system without the need for gelation by a polymer or surfactant, or emulsification by diesel. The proposed acid system combines the use of a strong mineral acid (i.e. hydrochloric acid “HCl”) with an organic compound that is highly soluble in the acid. It is based on reducing the free water in the system and, consequently, restricting the ionic separation of the proton from the acid. This results in a retardation behavior that is necessary to maintain a controlled reaction for the system used. The retardation behavior testing includes dissolution experiments, compatibility testing (using X-Ray Diffraction “XRD” and inductively coupled plasma “ICP”), coreflood study (at rates of 2 and 5 cm3 /min at 300o F and 3000 psi) and corrosion rate testing (conducted at 300o F). Finally, a reaction kinetics analysis (at disc rotational speeds of 250 rpm, 500 rpm, 700 rpm and 1500 rpm) was performed to evaluate the retarded acid performance. The new acid system showed 4 times reduction in the core weight loss due to dissolution in acid compared to plain 15wt% HCl. XRD and Computed Tomography (CT) scans illustrated the acid compatibility with dolomite by forming no precipitation that is attributed to the organic compound used in the system. The proposed acid can create a dominant wormhole pattern requiring only 0.53 Pore Volume (PV) of acid to achieve breakthrough in the Indiana limestone core. It is important to note that emulsified acids require 0.8 PV of fluid compared to 1.4 PV for 15 wt.% HCl acid package. The proposed system was determined to have negligible corrosion rate of 0.002 lb/ft after 4 hours exposure at 300 F. Reaction kinetics study proved the delayed acid reaction with calcite by an order of magnitude compared to 32 wt.% HCl. Conventional emulsified acids require expensive energization, through nitrogen (N2) or carbon dioxide (CO2), to overcome frictional losses and meet high injection rates requirement for fracturing and stimulation in deep formations. This novel system is characterized by having a low-viscosity and high thermal stability system that can be mixed on the fly. This approach addresses the main challenges of emulsified acid systems and will offer a cost-effective solution to cover a wide range of applications in matrix or fracturing applications, and high-temperature conditions that require a thermally-stable acid system.
机译:石油和天然气工业被广泛认识的酸系统是一种有吸引力的液体,以有效地刺激碳酸盐储层。碳酸盐酸化治疗中的主要挑战之一是调节酸深入储层的对流转运,同时实现最小的岩石面溶解。常规乳化酸受若干限制的阻碍;在高温下稳定性低,高粘度限制泵送率由于摩擦损失,形成损坏的潜力,以及实现均匀场尺度混合的难度。本文的目的是引入工程化的低粘度延迟酸系统,而无需通过聚合物或表面活性剂凝胶化,或通过柴油乳化。所提出的酸系统结合了强矿物酸(即盐酸“HCl”)的使用,其具有高度溶于酸的有机化合物。它基于减少系统中的自由水,从而限制质子的离子分离来自酸。这导致延迟行为,这是维持使用的系统的受控反应所必需的。延迟行为测试包括溶解实验,相容性测试(使用X射线衍射“XRD”和电感耦合等离子体“ICP”),CoreFlood研究(以3000 f和3000 psi为2和5cm 3 / min的速率)和腐蚀速率测试(在300O f下进行)。最后,进行了反应动力学分析(在250rpm,500rpm,700rpm和1500rpm的盘转速度下,以评估延迟的酸性。与普通的15wt%HCl相比,新的酸体系表明核重量损失降低了4倍。 XRD和计算机断层扫描(CT)扫描通过形成归因于系统中使用的有机化合物的沉淀而没有沉淀,扫描与白云石的酸相容性。所提出的酸可以产生占酸的主要虫洞图案,只需要0.53体积(PV)酸,以实现印第安纳石灰石核心的突破。重要的是要注意,乳化酸相比,加入0.8pV的流体,而15重量%。%HCl酸包装。在300°F的4小时暴露后,确定所提出的系统可忽略的腐蚀速率为0.002磅/英尺的腐蚀速率。反应动力学研究证明了与方解石的延迟酸反应相比,与32重量%。%HCl。常规的乳化酸需要昂贵的通电,通过氮(N 2)或二氧化碳(CO2),以克服摩擦损失,并满足深注射和刺激在深层的压裂和刺激的高注射率要求。该新颖系统的特征在于,具有可以在飞行中混合的低粘度和高热稳定性系统。该方法解决了乳化酸系统的主要挑战,并将提供经济有效的解决方案,以涵盖基质或压裂应用中的各种应用,以及需要热稳定的酸系统的高温条件。

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