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A new type of experimentally proposed in situ heat/gas clean foam fracturing fluid system

机译:一种新型的实验提出,原位热/气体清洁泡沫压裂液系统

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When cold fluid is injected into low-temperature, low-pressure, low-permeability reservoirs containing wax-bearing heavy oil, cryogenic paraffin deposition and heavy oil condensation will occur, thus damaging the formation. Moreover, the formation pressure coefficient is low and the working fluid flowback efficiency is low, which affects the fracturing stimulation effect. Therefore, an in situ heat/gas clean foam fracturing fluid system is proposed. This system can ensure that conventional fracturing fluid can create fractures and carry proppant in the reservoir, generate heat in situ to avoid cold damage, reduce the viscosity, and improve the fluidity of crude oil. The in situ heat fracturing fluid generates a large amount of inert gas while generating heat, thus forming foam-like fracturing fluid, reducing fluid loss, improving proppant-carrying performance, improving gel-breaking performance, effectively improving crack conductivity, and is clean and environmentally friendly. Based on the improved existing fracturing fluid system, in this paper, a new type of in situ heat fracturing fluid system is proposed, and a system optimization evaluation is conducted through laboratory experiments according to the performance evaluation standard of water-based fracturing fluid. Compared with the traditional in situ heat fracturing fluid system, the fracturing fluid system proposed in this study generates a large amount of inert gas and form foam-like fracturing fluid, reduces fluid loss, enhances the proppant-carrying capacity and gel-breaking performance, improves crack conductivity, the gel without residue and that the gel-breaking liquid is clean and harmless.
机译:当冷流体注入低温,低压,含有蜡的低压性储存器时,会发生低温石蜡沉积和重油冷凝,从而损坏形成。此外,形成压力系数低,工作流体回收效率低,影响压裂刺激效果。因此,提出了一种原位热/气体清洁泡沫压裂流体系统。该系统可以确保传统的压裂液可以在储层中产生裂缝并携带支撑剂,以原位产生热量以避免冷损伤,降低粘度,提高原油的流动性。原位热压裂液产生大量的惰性气体,同时产生热量,从而形成泡沫状的压裂液,降低流体损失,提高支撑性能,提高凝胶断裂性能,有效提高裂缝导电性,并且是干净的环保。基于改进的现有压裂流体系统,本文提出了一种新型的原位热压裂流体系统,并通过实验室实验进行了系统优化评估,根据水基压裂液的性能评估标准进行了实验室实验。与传统的原位热压裂液系统相比,本研究中提出的压裂液系统产生大量的惰性气体,形成泡沫状压裂液,降低流体损失,提高了支撑剂的容量和凝胶破碎性能,改善裂缝电导率,凝胶没有残留物,凝胶破碎的液体清洁和无害。

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