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Five operating conditions of jet-to-crossflow pressure ratio are studied for both nonreactive and reactive flows.
According to the investigation of various conditions of jets, important phenomena of flow field and some effective jet conditions are found.
The erosion progression was fast in the conditions of small jet diameter and large concrete inclination angle, and it was significantly faster in the erosion by metallic melt jet than by oxidic melt jet.
In this study, the characteristics of the various jet conditions of a counterflowing jet on a cone surface were investigated numerically to improve performance of the jet on heat reduction at the surface of a nose.
The injection condition of the jet was optimized and the introduction of compressive residual stress into stainless steel was demonstrated using the jet.
On the condition of same jet pressure difference, improving ambient pressure from 8 MPa to 20 MPa, the stagnation pressure and ambient temperature increases by 46.52%, 2.55%, respectively.
CH4/CO2 reforming over La2NiO4 and 10%NiO/CeO2 La2O3 catalysts under the condition of supersonic jet expansion was studied via direct monitoring of the reactants and products using the sensitive technique of cavity ring-down spectroscopy.
In this paper, the mechanism of CO and CO2 formation for a CH4/H2 fuel mixture is studied under MILD combustion condition of a jet in hot coflow (JHC) burner.
It turns out that the increasing the preheated air temperature decreases the limiting minimum flow rate effectively to simulate well the ideal condition of miniaturization of jet flame.
The impact of burned gases on flame stabilization is analyzed under the conditions of a laboratory jet flame in vitiated coflow.
To this end a series of experimental tests have been performed, in order to measure the current flowing through the water stream, under different conditions of nozzle design, jet shape, water pressure and stream length.
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