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The oxyfuel combustion characteristics have been investigated numerically for stagnation flow conditions inside a membrane reactor.
The particle deposition mechanism in a plane stagnation flow is investigated analytically and numerically.
The concept makes use of the stagnation flow of two opposed jets in a closed circuit.
A stagnation flow is used to demonstrate several theoretical and numerical aspects of the model.
A two-dimensional or axisymmetric stagnation flow impinges on a plate moving in its own plane.
A numerical study of a turbulent premixed flame stabilized by a stagnation flow is presented.
In so doing I derive useful approximate closed form solutions for both planar and axisymmetric stagnation flow.
The extent of the spatial shift was quantified by comparing one-dimensional stagnation flow and two-dimensional axisymmetric simulations.
Flow inside this boundary can be studied using MHD models and is a type of stagnation flow.
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A stagnation-flow reactor is used to measure catalytic activity.
1D laminar stagnation-flow models are generally employed to investigate the catalytic combustion characteristics in this experimental configuration.
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