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Algorithmic Design and Resilience Assessment of Energy Efficient High-Rise Water Supply Systems

机译:节能高层供水系统的算法设计和弹性评估

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High-rise water supply systems provide water flow and suitable pressure in all levels of tall buildings. To design such state-of-the-art systems, the consideration of energy efficiency and the anticipation of component failures are mandatory. In this paper, we use Mixed-Integer Nonlinear Programming to compute an optimal placement of pipes and pumps, as well as an optimal control strategy. Moreover, we consider the resilience of the system to pump failures. A resilient system is able to fulfill a predefined minimum functionality even though components fail or are restricted in their normal usage. We present models to measure and optimize the resilience. To demonstrate our approach, we design and analyze an optimal resilient decentralized water supply system inspired by a real-life hotel building.
机译:高层供水系统在所有高层建筑中提供水流和合适的压力。为了设计这种最先进的系统,必须考虑能源效率和预期组件故障。在本文中,我们使用混合整数非线性规划来计算管道和泵的最佳布置以及最佳控制策略。此外,我们考虑了系统应对泵故障的能力。即使组件发生故障或在正常使用中受到限制,弹性系统也能够实现预定义的最小功能。我们提出了可测量和优化弹性的模型。为了演示我们的方法,我们设计和分析了以现实生活中的酒店建筑为灵感的最佳弹性分散式供水系统。

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