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Mean surface pressure data from numerical simulation are compared with experimental ones.
An experimental study of a scaled commercial system was conducted to investigate the mean surface pressure distributions and uplift force at different speeds.
The effects of upstream turbulence in the atmospheric boundary layer flow on the mean surface pressure distribution within the separated flow above a typical low-rise building roof are investigated experimentally.
Open image in new window Fig. 3 Mean surface pressure coefficient distribution on face-A (angle-0°).
Open image in new window Fig. 4 Mean surface pressure coefficient distribution on face-C (angle-0°).
The resulting mean surface pressure is only 0.6% of that of Earth (101.3 kPa).
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An earlier study by Haarsma et al. (2005) linked the increase in Sahelian rainfall with the increase in surface air temperature over the Sahara, which, in turn, lowers the mean surface low pressure over this area.
A plus means that the surface pressure increase was above 5 mN.m−1 after 60 minutes of interaction, a minus means that during the same period of time, the surface pressure increase did not exceed 2 mN.m−1.
Results are presented for the mean force coefficients, surface pressure coefficients and Strouhal numbers on a square section cylinder at varying angle of incidence.
Measurements of mean longitudinal and spanwise surface pressure were performed.
Comparisons of the mean velocity profiles and surface pressure distributions between the numerical predictions and the measurements show good agreement.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com