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The resulting theory for THM behaviour of the fluid saturated porous medium has a wide range of applications related to geo-environmental engineering.
The short-term response, which is in the range of 100 200 s, is governed by the transient behaviour of the fluid dynamics and is discussed in detail.
It is shown that this approach does not require the calculation of a virtual inner radius nor a priori assumption of the rheological behaviour of the fluid mixed.
Depending on the Reynolds number and the non-Newtonian behaviour of the fluid, we found that the flow is composed of several toroidal vortices.
The dynamic behaviour of the fluid is simulated by means of a classical convective and impulsive mass model, for which a discrete three-dimensional schematization is originally implemented in the finite element analysis.
The complexity of heat transfer in the system lies on the highly three dimensional behaviour of the fluid flow and the large disparity between characteristic length scales to be considered.
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A detailed parametric study is conducted, focusing on the combined effects of the electric parameters, viscoelastic medium, initial stress, surface stress, Knudsen number (Kn) and small scale on the wave propagation behaviour of the fluid-conveying SWBNNT.
The design of such processes is ultimately linked to the confined behaviour of the fluids in question at reservoir conditions, which is largely controlled by interfacial forces.
These changes are a function of the detailed phase behaviour of the fluids and their physical properties as well as the properties of the porous medium itself.
We demonstrate the efficacy of the new remedial approach through simple numerical experiments for different electrical behaviour of the fluids over a range of permittivity ratios.
Among the constitutive equations developed from the continuum mechanics viewpoint, the second-order Rivlin-Ericksen model is generally preferred because it describes the real behaviour of the fluids with sufficient accuracy, and also because its application is not very cumbersome.
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behaviour of the oil
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behaviour of the system
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