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Maximum floor velocity and floor temperature difference were fitted well with different parameters.
Type of grit removal is horizontal with surface velocity and tank floor velocity of 0.45 and 0.3 m/s, respectively.
Structural response parameters used to characterize demands on structural and nonstructural systems are absolute floor acceleration, absolute floor velocity, and interstorey drift ratio (IDR).
Peak absolute floor velocity results were omitted as the mean values are comparable over the building height, with a ULS mean of 4.2 m/s and a SLS mean of 2.5 m/s.
Results of airflow pattern, centerline velocity and centerline temperature decay, velocity and temperature profile, airflow boundary layer and thermal boundary layer growth, floor velocity, and floor temperature difference were analyzed to establish semi-empirical prediction equations.
Accurate assessment of the seismic performance of buildings and the computation of direct and indirect economic losses resulting from earthquake shaking requires the use of analysis procedures that reliably predict distributions of peak structural response quantities, including story drift, floor velocity, and floor acceleration.
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Seismic analyses results show the effectiveness of the proposed frame to enhance structural and non-structural performance by significantly reducing residual drifts and inelastic deformations, and by reducing drifts, total floor accelerations and total floor velocities.
It is shown that the Rayleigh damping model, when used in combination with assumptions commonly used in engineering practice, typically leads to overestimations of mean peak floor accelerations, peak floor velocities, and interstory drift ratio demands with respect to those computed using the damping model inferred from the recorded data.
The optimization problem is formulated as a structural weight minimization, with time-varying constraints on floor displacements, velocities, accelerations, or floor drifts, and structural member combined stresses.
Second, for targets on the floor, arm azimuth velocity is highly correlated with pointing elevation.
Take the stand off of the high velocity floor fan.
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