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Dive into the research topics where Jean-François Dietiker is active.

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Featured researches published by Jean-François Dietiker.


Volume 1C, Symposia: Fundamental Issues and Perspectives in Fluid Mechanics; Industrial and Environmental Applications of Fluid Mechanics; Issues and Perspectives in Automotive Flows; Gas-Solid Flows: Dedicated to the Memory of Professor Clayton T. Crowe; Numerical Methods for Multiphase Flow; Transport Phenomena in Energy Conversion From Clean and Sustainable Resources; Transport Phenomena in Materials Processing and Manufacturing Processes | 2014

Code Verification for Multiphase Flows Using the Method of Manufactured Solutions

Christopher J. Roy; Jean-François Dietiker; Mehrdad Shahnam; Rahul Garg

Code verification is the process of ensuring, to the degree possible, that there are no algorithm deficiencies and coding mistakes (bugs) in a computational fluid dynamics (CFD) code. In order to perform code verification, the Method of Manufactured Solutions (MMS) is a rigorous technique that can be used in the absence of exact solution to the problem. This work addresses major aspects of performing code verification for multiphase flow codes using the open-source, multiphase flow code MFIX which employs a staggered-grid and a modified SIMPLE-based algorithm. Code verification is performed on 2D and 3D, uniform and stretched meshes for incompressible, steady and unsteady, single-phase and two-phase flows using the two-fluid model of MFIX. Currently, the algebraic gas-solid exchange terms are neglected as these can be tested via unit-testing. The no-slip wall, free-slip wall, and pressure outflow boundary conditions are verified for 2D and 3D flows. A newly-developed curl-based manufactured solution for 3D divergence free flows is introduced. Temporal order of accuracy during unsteady calculations is also assessed. Techniques are introduced to generate manufactured solutions that satisfy the divergence-free constraint during the verification of the incompressible governing equations. Manufactured solutions with constraints due to boundary conditions as well as due to divergence-free flow are derived in order to verify the boundary conditions. Use of staggered grid and SIMPLE-based algorithm for numerical computations in MFIX requires specific issues to be addressed while performing MMS-based code verification. Lessons learned during this code verification exercise are discussed.Copyright


Chemical Engineering Science | 2012

MFIX simulation of NETL/PSRI challenge problem of circulating fluidized bed

Tingwen Li; Jean-François Dietiker; Mehrdad Shahnam


Chemical Engineering Science | 2011

Cartesian grid simulations of bubbling fluidized beds with a horizontal tube bundle

Tingwen Li; Jean-François Dietiker; Yongmin Zhang; Mehrdad Shahnam


Chemical Engineering Science | 2014

Comparison of full-loop and riser-only simulations for a pilot-scale circulating fluidized bed riser

Tingwen Li; Jean-François Dietiker; Lawrence J. Shadle


Powder Technology | 2013

Cartesian grid simulations of gas–solids flow systems with complex geometry

Jean-François Dietiker; Tingwen Li; Rahul Garg; Mehrdad Shahnam


Chemical Engineering Science | 2015

A 2.5D computational method to simulate cylindrical fluidized beds

Tingwen Li; Sofiane Benyahia; Jean-François Dietiker; Jordan Musser; Xin Sun


Journal of Verification, Validation and Uncertainty Quantification | 2017

The Effect of Grid Resolution and Reaction Models in Simulation of a Fluidized Bed Gasifier Through Nonintrusive Uncertainty Quantification Techniques

Mehrdad Shahnam; Jean-François Dietiker; Arun K. Subramaniyan; Jordan Musser


Industrial & Engineering Chemistry Research | 2016

Nonintrusive Uncertainty Quantification of Computational Fluid Dynamics Simulations of a Bench-Scale Fluidized-Bed Gasifier

Mehrdad Shahnam; Jordan Musser; Arun K. Subramaniyan; Jean-François Dietiker


Chemical Engineering Journal | 2016

Hydrodynamics of gas–solids flow in a bubbling fluidized bed with immersed vertical U-tube banks

Vikrant Vijay Verma; Tingwen Li; Jean-François Dietiker; William A. Rogers


International Journal of Multiphase Flow | 2016

Code verification for multiphase flows using the method of manufactured solutions

Christopher J. Roy; Jean-François Dietiker; Mehrdad Shahnam; Rahul Garg; Jordan Musser

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Mehrdad Shahnam

United States Department of Energy

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Jordan Musser

United States Department of Energy

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Xin Sun

Pacific Northwest National Laboratory

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Canhai Lai

Pacific Northwest National Laboratory

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William A. Rogers

United States Department of Energy

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