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Optimization of Water Resource Systems Incorporating Earthquake Risk
This 3-part interdisciplinary report develops the computational methodology for the optimal network synthesis of a water distribution system in a region of seismic activity. A mathematical programming model is developed whose optimal solution indicates which links of the network are to be constructed, the optimal flow size of each constructed link, and the seismic intensity level each constructed link should be designed to withstand. New standards and procedures of earthquake resistive design and siting of lifeline facilities are needed which reflect the acceptable risk of fatalities, disruption of human activities and property damage. The standards and procedures should be developed through joint efforts among industry associations, professional society committees and research organizations, subject to evaluation by field testing in future earthquakes. The chief accomplishment was providing a procedure with which to incorporate seismic risk into the optimal planning of a large scale water resource system.
Optimization of Water Resource Systems Incorporating Earthquake Risk
This 3-part interdisciplinary report develops the computational methodology for the optimal network synthesis of a water distribution system in a region of seismic activity. A mathematical programming model is developed whose optimal solution indicates which links of the network are to be constructed, the optimal flow size of each constructed link, and the seismic intensity level each constructed link should be designed to withstand. New standards and procedures of earthquake resistive design and siting of lifeline facilities are needed which reflect the acceptable risk of fatalities, disruption of human activities and property damage. The standards and procedures should be developed through joint efforts among industry associations, professional society committees and research organizations, subject to evaluation by field testing in future earthquakes. The chief accomplishment was providing a procedure with which to incorporate seismic risk into the optimal planning of a large scale water resource system.
Optimization of Water Resource Systems Incorporating Earthquake Risk
J. A. Dracup (Autor:in) / C. M. Duke (Autor:in) / S. E. Jacobsen (Autor:in)
1976
49 pages
Report
Keine Angabe
Englisch
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