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Development of improved deep learning models for multi-step ahead forecasting of daily river water temperature
Published 2025-12-01“…Engineering Applications of Computational Fluid Mechanics…”
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A novel approach for large-scale hybrid mesh generation on distributed systems
Published 2024-12-01“…Engineering Applications of Computational Fluid Mechanics…”
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Investigation of Flow Through Centrifugal Pump Impellers Using Computational Fluid Dynamics
Published 2003-01-01Get full text
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Longitudinal dispersion of tracer particles in a channel bounded by Porous media using slip condition
Published 1984-01-01Get full text
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Two-Dimensional Numerical Study on the Migration of Particle in a Serpentine Channel
Published 2018-01-01Get full text
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Chemical Migration and Emulsification of Surfactant-Polymer Flooding
Published 2019-01-01Get full text
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Mechanism of Surfactant Enhancement of CO2 Displacement Recovery in Interlayer Shale Oil Reservoirs
Published 2022-01-01Get full text
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Thermoelectric convection in a planar capacitor: theoretical studies and experiments in parabolic flights
Published 2023-02-01Get full text
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Numerical Simulation of the Transitional and Unsteady Flow through a Low Pressure Turbine
Published 2007-01-01Get full text
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A Semianalytical Production Prediction Model and Dynamics Performance Analysis for Shale Gas Wells
Published 2021-01-01Get full text
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Physical Simulation of Colayer Water Flooding in Low Permeability Carbonate Reservoir in Middle East
Published 2017-01-01Get full text
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The Application of REV-LBM Double Mesh Local Refinement Algorithm in Porous Media Flow Simulation
Published 2022-01-01Get full text
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Industrial CFD and Fluid Modelling in Engineering
Published 2025-01-01“…<i>Fluids</i> is proud to present the Special Issue “Industrial CFD and Fluid Modelling in Engineering”, a carefully curated collection of pioneering research that underscores the transformative role of Computational Fluid Dynamics (CFD) in addressing the challenges of industrial fluid mechanics [...]…”
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Error estimates for scalar conservation laws by a kinetic approach
Published 2006-01-01“…We use the kinetic approach of Perthame and Tadmor (1991) to calculate the error estimates for general scalar conservation laws governing problems in gas dynamics or fluid mechanics in general. The Kružkov and Kuznetsov techniques are generalized to this method, and an error bound of order ε (where ε is the mean free path) is obtained.…”
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