Probability-Based Design and Life Cycle Assessment of a Spun Concrete Pole

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Štěpánek, Petr
Laníková, Ivana
Šimůnek, Petr

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Mark

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Atlantis Press
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Abstract

This contribution compares concrete structure design results obtained via the partial reliability factor method and using a probability-based method. The Monte Carlo simulation method, modified by the Latin Hypercube Sampling method, was used to calculate the reliability of a designed structure. Economic and ecological aspects (acquisition costs, CO2 and SO2 emissions and embodied energy associated with the concrete member through the production, utilization and demolition stages of its life cycle) were taken into account when assessing the quality of the design. An example of a designed structure – a prestressed spun concrete pole manufactured from reinforced concrete – is presented.
This contribution compares concrete structure design results obtained via the partial reliability factor method and using a probability-based method. The Monte Carlo simulation method, modified by the Latin Hypercube Sampling method, was used to calculate the reliability of a designed structure. Economic and ecological aspects (acquisition costs, CO2 and SO2 emissions and embodied energy associated with the concrete member through the production, utilization and demolition stages of its life cycle) were taken into account when assessing the quality of the design. An example of a designed structure – a prestressed spun concrete pole manufactured from reinforced concrete – is presented.

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Advances in Engineering Research. 2015, vol. 19, p. 76-81.
http://www.atlantis-press.com/php/pub.php?publication=icsmme-15

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Peer-reviewed

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en

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Except where otherwised noted, this item's license is described as Creative Commons Attribution-NonCommercial 4.0 International
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