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Exploiting Partial Convexity of Pump Characteristics in Water Network Design

机译:水网络设计中泵特征的局部凸性

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The design of water networks consists of selecting pipe connections and pumps to ensure a given water demand to minimize investment and operating costs. Of particular importance is the modeling of variable speed pumps, which are usually represented by degree two and three polynomials approximating the characteristic diagrams. In total, this yields complex mixed-integer (non-convex) nonlinear programs. This work investigates a reformulation of these characteristic diagrams, eliminating rotating speed variables and determining power usage in terms of volume flow and pressure increase. We characterize when this formulation is convex in the pressure variables. This structural observation is applied to design the water network of a high-rise building in which the piping is tree-shaped. For these problems, the volume flow can only attain finitely many values. We branch on these flow values, eliminating the non-convexities of the characteristic diagrams. Then we apply perspective cuts to strengthen the formulation. Numerical results demonstrate the advantage of the proposed approach.
机译:水网络的设计包括选择管道连接和泵,以确保给定的水需求最小化投资和运营成本。特别重要的是变速泵的建模,其通常由两个和三个多项式表示近似特征图。总共产生复杂的混合整数(非凸)非线性程序。该工作调查了这些特征图的重构,消除了旋转速度变量和在体积流量和压力增加方面确定功率使用。当该配方在压力变量中凸起时,我们表征。该结构观察应用于设计一种高层建筑的水网络,其中管道是树形的。对于这些问题,卷流只能获得最多的值。我们在这些流量值上分支,消除了特征图的非凸起。然后我们施加视角削减以加强配方。数值结果证明了所提出的方法的优点。

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