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Topology Optimization of Robust District Heating Networks

机译:鲁棒的区域供热网络的拓扑优化

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Large district heating networks greatly benefit from topological changes brought by the construction of loops. The overall effects of malfunctions are smoothed, making existing networks intrinsically robust. In this paper, we demonstrate the use of topology optimization to find the network layout that maximizes robustness under an investment constraint. The optimized design stems from a large ground structure that includes all the possible looping elements. The objective is an original robustness measure, that neither requires any probabilistic analysis of the input uncertainty nor the identification of bounds on stochastic variables. Our case study on the Turin district heating network confirms that robustness and cost are antagonist objectives: the optimized designs obtained by systematically relaxing the investment constraint lay on a smooth Pareto front. A sudden steepness variation divides the front in two different regions. For small investments topological modifications are observed, i.e., new branches appear continuously in the optimized layout as the investment increases. Here, large robustness improvements are possible. However, at high investments no topological modifications are visible and only limited robustness gains are obtained.
机译:大型区域供热网络极大地受益于环路建设带来的拓扑变化。故障的整体影响得以消除,从而使现有网络具有固有的鲁棒性。在本文中,我们演示了使用拓扑优化来查找在投资约束下可最大化鲁棒性的网络布局。优化的设计源自包含所有可能的回路元件的大型地面结构。目标是原始的鲁棒性度量,既不需要对输入不确定性进行任何概率分析,也不需要标识随机变量的界限。我们对都灵区域供热网络的案例研究证实,稳健性和成本是对立的目标:通过系统地放松投资约束而获得的优化设计位于平稳的Pareto前沿。陡峭的突然变化将前部分成两个不同的区域。对于小型投资,会观察到拓扑结构的修改,即随着投资的增加,新分支在优化布局中连续出现。在此,可以大大提高鲁棒性。但是,在高投资下,看不到拓扑修改,并且只能获得有限的鲁棒性。

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