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The case n = 1 is used for the modeling of turbulent boundary layer flow (Peddieson [31]).
The relevance of the results to laminar flamelet modeling of turbulent combustion also is discussed.
Implications for flamelet modeling of turbulent flames with local extinction are discussed.
CFD modeling of turbulent free surface flows has become an important tool in the design of ship hulls.
In this study, we develop a method for accurate and efficient sensitivity calculation in PDF modeling of turbulent combustion.
Implications of the present understanding on the modeling of turbulent flames through the concept of laminar flamelets are discussed.
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The complexities of the work led him to the development of new methods of computing, which were specifically devised to help with the difficulties of creating mathematical models of turbulent flow situations.
Two models of turbulent combustion are tested.
A model of turbulent drag reduction in a pipe is developed.
We also used the following k-ε model of turbulent flow to calculate Reynolds stress (6 where is the turbulent energy dissipation, and δ ij is the Kronecker delta.
A model of turbulent mixing and reaction was first built up.
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