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Case Study: Application of a Viscoelastic Surfactant-Based CO2-Compatible Fracturing Fluid in the Frontier Formation, Big Horn Basin, Wyoming

机译:案例研究:基于粘弹性表面活性剂的与CO2兼容的压裂液在怀俄明州大霍恩盆地的边境地层中的应用

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摘要

CO2 based fluids are commonly used to fracture stimulate formations with low reservoir pressure as well as formations that are more sensitive to water treatments (high capillary pressure, swelling clays etc). In particular, the Frontier Formation located in Bighorn Basin, Wyoming, has seen a variety of stimulation fluids used over the past years with varying degrees of success. When dealing with water sensitive formations, a common practice has been to use oilbased fluids. However, fluids of this nature can have detrimental effects on gas zones with low reservoir pressure and this might be the reason for erratic well performance of previously treated Frontier completions. It has also been determined that oil-based fluids can alter the reservoir wettability and hence cause formation damage. With this in mind and considering the environmental and economical benefits of using a water-based fracturing fluid, a novel viscoelastic surfactant based, CO2-compatible, high foam quality (>60%) fluid was proposed as the main fracturing fluid. This paper will discuss the first application of this visco-elastic based fluid on wells in Park County, Wyoming. This paper will discuss stimulation with the new fluid and how pin-point pressure measurement enabled the operator to make informed decisions to define fracturing/completion strategy. We also present the additional benefits of incorporating existing dipole sonic tool information to calibrate “in-situ” stress, Young’s Modulus and Poisson’s ratio. Finally, a production history match is conducted on wells treated with the new fluid.
机译:基于CO2的流体通常用于压裂低储层压力的地层以及对水处理更敏感的地层(高毛细管压力,膨胀的粘土等)。特别是,怀俄明州比格霍恩盆地的边境地层在过去几年中使用了各种增产液,并取得了不同程度的成功。在处理对水敏感的地层时,通常的做法是使用油基流体。但是,这种性质的流体会对储层压力低的气层产生不利影响,这可能是先前处理过的Frontier完井井筒井眼表现不稳定的原因。还已经确定,油基流体可以改变储层的润湿性,从而引起地层破坏。考虑到这一点,并考虑到使用水基压裂液的环境和经济利益,提出了一种新型的基于粘弹性表面活性剂,CO2相容,泡沫质量高(> 60%)的流体作为主要压裂液。本文将讨论这种粘弹性流体在怀俄明州帕克县的井中的首次应用。本文将讨论使用新流体进行的增产,以及精确的压力测量如何使操作员能够做出明智的决定来定义压裂/完井策略。我们还展示了结合现有偶极声波工具信息来校准“原位”应力,杨氏模量和泊松比的其他好处。最后,在用新流体处理过的井上进行生产历史匹配。

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