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Probabilistic framework for robust optimal code calibration through minimization of the lifecycle cost and its uncertainty
Seismic design codes strive to strike a balance between construction cost and seismic losses. To this end, current codes calibrate design provisions to the accepted practice. However, the literature demonstrat...
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Article
A proposed fractional dynamic system and Monte Carlo-based back analysis for simulating the spreading profile of COVID-19
This paper presents a dynamic system for estimating the spreading profile of COVID-19 in Thailand, taking into account the effects of vaccination and social distancing. For this purpose, a compartmental networ...
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Article
Ramifications of blind adoption of load and resistance factors in building codes: reliability-based assessment
This paper presents a probabilistic approach to reveal the negative consequences of overlooking code calibration when adopting the provisions of nonindigenous building codes in design. A taxonomy of the nation...
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Article
Structural reliability approach to analysis of probabilistic seismic hazard and its sensitivities
This paper presents a new probabilistic framework for seismic hazard assessment and hazard sensitivity analysis. Hazard in this context means the probability of exceeding a measure of ground shaking intensity,...
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Article
Probabilistic seismic hazard analysis of Iran using reliability methods
Structural reliability methods are employed in this paper for nationwide probabilistic seismic hazard analysis of Iran and in-depth seismic hazard and hazard sensitivity analysis of Downtown Tehran. The compan...
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Article
The effect of soil–structure interaction on the seismic risk to buildings
This paper studies the effect of soil–structure interaction (SSI) on the seismic risk estimates of buildings. Risk, in this context, denotes the probability distribution of seismic monetary loss due to structu...