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Zhou et al. [3] studied the nonlinear dynamical behavior of a horizontal Jeffcott rotor system with a transverse crack.
This paper introduces a new technique for interpreting pressures behavior of a horizontal well with multiple hydraulic fractures.
The current work investigates the experimental behavior of a horizontal rigid rotor interacting laterally with two types of backup bearings during run up testing.
The analytical model for the pressure behavior of a horizontal well intersecting partially penetrating multiple hydraulic fractures can be derived based on the solution for the diffusivity equation in the porous media.
A three dimensional numerical analysis model simulating the thermal behavior of a horizontal spiral-coil-loop heat exchanger was developed, and the accuracy of the model was verified through indoor thermal response tests.
Investigation of the effects of near-wall grid spacing for the SST-K-ω model and study of the aerodynamic behavior of a horizontal axis wind turbine are the two goals of this paper.
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The principal focus of this work is on pressure behaviors of a horizontal well intercepted by multiple non-planar fractures.
On the basis of the model, detailed analysis of the flow behavior of a fractured horizontal production well in heterogeneous reservoir are provided.
To seek reasonable method to simulate the behavior of a fill with horizontal drains, an elasto-visco-plastic FEM is applied in this paper.
The thermal behavior and evaporation rates of a horizontal shallow basin solar concentrator were modeled for design purposes and investigated experimentally in order to validate the model.
The aim of this article is to study by numerical simulation with the TRNSYS-COMIS software, the thermo-aeraulic behavior of a traditional house with a horizontal opening in the central space of the house, and in the city of Kenadsa (southwestern Algeria, hot dry climate).
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