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The wind load decreases as the parapet height increases.
By increasing the reinforcing index, the first crack load decreases and ultimate strength slightly increases.
The results showed that the coupled tensile load decreases the torsional stiffness and failure load.
Therefore, as the vapor load decreases, the throughput can be increased.
Results indicate that the critical buckling load decreases when piezoelectric effect is considered.
From the numerical analysis, it is observed that buckling load decreases when the debond size increases.
Whereas the critical scratching load decreases at first and then increases again.
The critical load decreases gradually and tends to the minimum with the effect of the tension section.
The analysis also indicates that the ultimate load decreases linearly with increasing deviator spacing, provided that failure happens at midspan.
This implies that, i.e., the critical load of a laminated glass beam subject to constant compressive load decreases with time as well as with temperature.
It is found that maximum main bearing load and web bending stress increase with increasing balancing rate, and average main bearing load decreases with increasing balancing rate.
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