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The combustor inlet wall temperatures are shown to be within an acceptable range, even without the cooling air that was required for conventional combustors.
The inlets were placed in the inlet wall and the openings were 0·49 m from the ceiling with an incline angle of 20° pointing upward to the ceiling.
The HLR of the insulation layers with optimal thicknesses is reduced by 9.50% than that of the uniform ones, and this value decreases with the increase in dimensionless inlet wall temperature.
When the jet impinged on the opposite wall (Fig. 5), the flow was re-directed from a horizontal to a vertical direction inducing counter-clockwise circulations that consist mainly of vertical two-dimensional circulation cells in the back half of the tank (opposite the inlet wall).
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In traditional reactors with well-mixed inlet streams, parasitic gas-phase reactions between the two precursors may lead to the formation of stable adducts that can condense on cool inlet walls, thus reducing the film growth efficiency.
The effects of hydrogen addition, inlet temperature, wall thermal conductivity and wall thickness on the flame-wall coupling of the propane/air flames in a meso-scale tube are numerically investigated using a two dimensional model along with the detailed chemical mechanism.
The non-dimensional parameters related to the angle and radius of curvature of the inlet plenum wall, and diameter of the inlet pipes were selected as design variables for the optimization.
The reactor was found to be nearly isothermal with the largest temperature gradient between the inlet and wall temperatures occurring at a distance 0 0.05 m in the z direction.
Furthermore, we confirm the observation, from prior work on the simpler geometries that there exists a limiting Rew beyond which there is no fully developed flow for the inlet channels (wall suction).
Using low porosity and small mean cell size in the inlet near-wall region for the receiver with composite porous structure can reduce the solid temperature gradient and increase the mean fluid outlet temperature.
A volumetric solar receiver with composite porous structure is proposed, where a porous foam with different pore parameters from that in the other region of receiver is placed in the inlet near-wall region.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com