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The effect of combined proppants upon the fracture conductivity in tight gas reservoirs

机译:组合的支撑剂在狭长气藏中裂缝电导率的影响

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Sand and ceramic proppant are the most commonly used materials to keep fractures open during hydraulic fracturing. Ceramic proppant has higher hardness and sphericity than sand, but it is much more expensive. To reduce the cost, sands are pumped at the beginning to replace a portion of ceramic proppants, while ceramic proppants are pumped at the end to support the fracture outlet where the effective closure stress is large. However, the effective conductivity of the propped fracture varies with the ratio of these two types of proppants, and it is worthy of laboratory investigation to determine the optimal substitution ratio of sands for fields with different effective closure stresses. In this work, the fracture conductivity with various ratios of sands to ceramic proppants is evaluated by an API standard Fracture Conductivity Evaluation System (FCS-842) under different effective closure stresses. Experimental results show that the fracture conductivity of the propped fracture decreases with the effective closure stress due to the crushing of proppants, while the decreasing rate of fracture conductivity is proportional to the ratio of sands to ceramic proppants within the propped fracture. Two empirical models are further derived from the results, which can be used to forecast the performance of fracture conductivity at different effective closure stresses and sand ratios. The findings of this work can guide people to optimize the sand ratio in the slurry when hydraulically fracturing the reservoirs at different depths with different effective closure stresses.
机译:沙子和陶瓷支撑剂是最常用的材料,以在液压压裂期间保持裂缝的裂缝。陶瓷支撑剂的硬度和球形高于沙子,但它更昂贵。为了降低成本,在开始时泵送砂,以更换一部分陶瓷支撑剂,而陶瓷支撑剂在末端泵送以支撑有效的闭合应力大的裂缝出口。然而,额外的裂缝的有效电导率随着这两种类型的支撑剂的比例而变化,值得实验室调查,以确定具有不同有效闭合应力的砂岩的最佳替换比。在这项工作中,通过不同有效的闭合应力下的API标准断裂导电性评估系统(FCS-842)评估具有各种砂砂的裂缝导电性与陶瓷支撑剂进行评估。实验结果表明,由于支撑剂的破碎,所提骨折的断裂导电性随着有效的闭合应力而降低,而断裂导电性的降低率与诸如突出的骨折内的砂粘剂与陶瓷支撑剂的比例成比例。两种经验模型进一步来自结果,该结果可用于预测不同有效的闭合应力和砂比的断裂电导率的性能。这项工作的调查结果可以指导人们在用不同有效的闭合应力的不同深度液压压裂储存器时优化浆料中的砂比。

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