TWO PROCEDURE OF MODEL RELIABILITY BASED OPTIMIZATION FOR WATER DISTRIBUTION SYSTEMS

来源 :Journal of Hydrodynamics(Ser.B) | 被引量 : 0次 | 上传用户:nwpucoder
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Recently, considerable emphasis has been laid to the reliability based optimization model for water distribution systems. But considerable computational effort is needed to determine the reliability based optimal design of large networks, even of mid sized networks. In this paper, a new methodology is presented for the reliability analysis for water distribution systems. This methodology consists of two procedures. The first is that the optimal design is constrained only by the pressure heads at demand nodes, done in GRG2. Because the reliability constrains are removed from the optimal problem, a number of simulations do not need to be conducted, so the computer time is greatly decreased. Then, the second procedure is a linear optimal search procedure. In this linear procedure, the optimal results obtained by GRG2 are adjusted by the reliability constrains. The results are a group of commercial diameters of pipes and the constraints of pressure heads and reliability at nodes are satisfied. Therefore, the computer burden is significantly decreased, and the reliability based optimization is of more practical use. Recently, considerable emphasis has been laid to the reliability based optimization model for water distribution systems. Butfficient computational effort is needed to determine the reliability based optimal design of large networks, even of mid sized networks. In this paper, a new methodology is presented for the reliability analysis for water distribution systems. The first is that the optimal design is constrained only by the pressure heads at demand nodes, done in GRG2. Because the reliability constrains are removed from the optimal problem, a The second procedure is a linear optimal search procedure. The first procedure is a linear optimal search procedure. The results of this optimization are obtained by GRG2 are adjusted by the reliability constraints. are a group of commercial diameters of pipes and the constraints of pressure heads and reliability at nodes are sat Therefore, the computer burden is significantly decreased, and the reliability based optimization is more practical use.
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