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首页> 外文期刊>Journal of Fluid Mechanics >Slurry flow, gravitational settling and a proppant transport model for hydraulic fractures
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Slurry flow, gravitational settling and a proppant transport model for hydraulic fractures

机译:液力裂缝的泥浆流,重力沉降和支撑剂传输模型

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The goal of this study is to analyse the steady flow of a Newtonian fluid mixed with spherical particles in a channel for the purpose of modelling proppant transport with gravitational settling in hydraulic fractures. The developments are based on a continuum constitutive model for a slurry, which is approximated by an empirical formula. It is shown that the problem under consideration features a two-dimensional flow and a boundary layer, which effectively introduces slip at the boundary and allows us to describe a transition from Poiseuille flow to Darcy's law for high proppant concentrations. The expressions for both the outer (i.e. outside the boundary layer) and inner (i.e. within the boundary layer) solutions are obtained in terms of the particle concentration, particle velocity and fluid velocity. Unfortunately, these solutions require the numerical solution of an integral equation, and, as a result, the development of a proppant transport model for hydraulic fracturing based on these results is not practicable. To reduce the complexity of the problem, an approximate solution is introduced. To validate the use of this approximation, the error is estimated for different regimes of flow. The approximate solution is then used to calculate the expressions for the slurry flux and the proppant flux, which are the basis for a model that can be used to account for proppant transport with gravitational settling in a fully coupled hydraulic fracturing simulator.
机译:这项研究的目的是分析在通道中混合了球形颗粒的牛顿流体的稳定流动,以模拟在水力压裂中重力沉降的支撑剂运输模型。这些进展基于浆料的连续本构模型,该模型可以通过经验公式进行近似。结果表明,所考虑的问题具有二维流动和边界层的特征,这有效地在边界处引入了滑移,并允许我们描述高支撑剂浓度时从泊瓦伊流向达西定律的过渡。外部(即在边界层外部)和内部(即在边界层内部)溶液的表达式都是根据颗粒浓度,颗粒速度和流体速度获得的。不幸的是,这些解决方案需要积分方程的数值解,结果,基于这些结果开发用于水力压裂的支撑剂输送模型是不可行的。为了降低问题的复杂性,引入了一种近似解决方案。为了验证该近似值的使用,针对不同的流态估计了误差。然后,将近似解用于计算浆液通量和支撑剂通量的表达式,这是可用于在完全耦合的水力压裂模拟器中通过重力沉降解释支撑剂运输的模型的基础。

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