Article ID Journal Published Year Pages File Type
5763729 Advances in Water Resources 2017 9 Pages PDF
Abstract

•An asymmetry measure is applied to detect and quantify temporal irreversibility.•The asymmetry in rainfall is demonstrated for different climates and time scales.•The influence of temporal irreversibility is shown for combined sewer systems.•Its influence can be larger and contrary to real time controlled sewer systems.

A property of natural processes is temporal irreversibility. However, this property cannot be reflected by most statistics used to describe precipitation time series and, consequently, is not considered in most precipitation models. In this paper, a new statistic, the asymmetry measure, is introduced and applied to precipitation enabling to detect and quantify irreversibility. It is used to analyze two different data sets of Singapore and Germany. The data of both locations show a significant asymmetry for high temporal resolutions. The asymmetry is more pronounced for Singapore where the climate is dominated by convective precipitation events. The impact of irreversibility on applications is analyzed on two different hydrological sewer system models. The results show that the effect of the irreversibility can lead to biases in combined sewer overflow statistics. This bias is in the same order as the effect that can be achieved by real time control of sewer systems. Consequently, wrong conclusion can be drawn if synthetic time series are used for sewer systems if asymmetry is present, but not considered in precipitation modeling.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Earth-Surface Processes
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