1980•Journal of the Structural DivisionRequires access

Probability Model for Design Live Loads

Philip L Chalk, Ross B. Corotis

Open publisher page 98 citations

Abstract

Extensive floor load data are utilized in a probabilistic design model for building live loads. Results from most major live load surveys are employed to derive representative loading parameters for several common occupancy types. Simulation is used to verify a number of probabilistic models describing the stochastic nature of the live load components. Area dependent sustained and transient load processes comprise the total load. The mode by which the maximum total load (or design load) is reached during the lifetime of a structure is not known with certainty. A probabilistic model is developed that accounts for the relative likelihood of occurrence of each mode, and is used to obtain example design loads corresponding to the mean of the lifetime maximum total load. For most occupancy types considered these loads are in reasonable agreement with present building code values.

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What this paper is about

Extensive floor load data are utilized in a probabilistic design model for building live loads. Results from most major live load surveys are employed to derive representative loading parameters for several common occupancy types. Simulation is used to verify a number of probabilistic models describing the stochastic nature of the live load components. Area dependent sustained and transient load processes comprise the total load. The mode by which the maximum total load (or design load) is reached during the lifetime of a structure is not known with certainty. A probabilistic model is developed that accounts for the relative likelihood of occurrence of each mode, and is used to obtain example design loads corresponding to the mean of the lifetime maximum total load. For most occupancy types considered these loads are in reasonable agreement with present building code values.

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Available abstract

Extensive floor load data are utilized in a probabilistic design model for building live loads. Results from most major live load surveys are employed to derive representative loading parameters for several common occupancy types. Simulation is used to verify a number of probabilistic models describing the stochastic nature of the live load components. Area dependent sustained and transient load processes comprise the total load. The mode by which the maximum total load (or design load) is reached during the lifetime of a structure is not known with certainty. A probabilistic model is developed that accounts for the relative likelihood of occurrence of each mode, and is used to obtain example design loads corresponding to the mean of the lifetime maximum total load. For most occupancy types considered these loads are in reasonable agreement with present building code values.

Key concepts: Probabilistic logic, Structural load, Occupancy, Design load, Building code, Mode (computer interface), Structural engineering, Statistical model

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