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The effects of channel heights ranging from 0.5 to 3.0 mm are investigated by CFD.
The asymmetric flames, in particular, vanish for channel heights roughly less than twice the laminar flame thickness.
Optimal values of the additional parameters are determined and discussed for varied diffusion coefficients and channel heights.
Solutions are presented for several channel heights at various operating conditions, and for gas flow in upward and downward direction.
The steady state condition of propagating CP is shown to be controlled by channel heights, surface chemistry, and co-ion mobility instead of the reservoir condition.
Channel heights of h= 2, 4, and 7 mm, and inflow velocities in the range 0.3⩽UIN⩽1100cm/s are investigated.
Similar(39)
The channel height is fixed at 500 μm.
The observed parameters are channel angle, channel height and channel length.
With a fixed baffle length of one quarter of channel height (H), ratios of baffle interval to channel height (RB = L/H) between 1 and 4 are considered.
The effect of finite channel height is investigated in both cases.
The parameters considered in this study are electrode length and separation (channel height).
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