首页> 外文会议>2014 International Conference on fractional differentiation and its applications >Time-fractional nonlinear gas transport equation in tight porous media: An application in unconventional gas reservoirs
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Time-fractional nonlinear gas transport equation in tight porous media: An application in unconventional gas reservoirs

机译:致密多孔介质中的时分形非线性气体传输方程:在非常规气藏中的应用

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The prospects of meeting the future's high energy demands lie in the exploration of unconventional hydrocarbon reservoirs, of which the shale gas and the tight gas are two important resources. The deep understanding of such reservoirs is crucial to the economical recovery of such energy resources. With the advancement in the technological sides, such as, hydraulic fracturing and horizontal drilling, new mathematical models are needed that can precisely capture the complexity of the physical phenomena and can describe the flow of gas through the natural and induced fractures. The performance and future behavior of such reservoirs can be enhanced through careful modeling. We develop a new mathematical model based on time fractional derivative combined with the consideration of various flow regimes and a nonlinear treatment of reservoir parameters. The model describes the transport of gas in tight porous media (such as shale formations). The derivation of the model is done by using the mass balance equation and momentum conservation equation (basically modified time-fractional form of Darcy's law) which incorporates the properties of tight porous media and accounts on the previous behavior. We find the pressure equation by considering that the rock properties, such as, permeability, viscosity, porosity, are pressure dependent. The pressure equation can be used to study the pressure distribution in the reservoir.
机译:满足未来高能源需求的前景在于非常规油气藏的勘探,其中页岩​​气和致密气是两个重要资源。对此类储层的深入了解对于此类能源的经济开采至关重要。随着技术方面的进步,例如水力压裂和水平钻井,需要新的数学模型来精确捕获物理现象的复杂性,并能够描述天然气通过自然裂缝和诱发裂缝的流动。可以通过仔细建模来增强此类油藏的性能和未来行为。我们基于时间分数导数并结合各种流态和储层参数的非线性处理,开发了一个新的数学模型。该模型描述了气体在致密多孔介质(如页岩地层)中的传输。通过使用质量平衡方程和动量守恒方程(达西定律的基本修正时间分数形式)完成模型的推导,该方程结合了紧密多孔介质的特性并考虑了以前的行为。通过考虑岩石特性(例如渗透率,粘度,孔隙率)与压力有关,可以找到压力方程。压力方程可用于研究储层中的压力分布。

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