Exact(30)
To simulate the long term hydrological performance of infiltration trenches two different models are employed.
Existing literature provides contradictory information about variation in potential green roof hydrological performance over time.
This paper presents a model of green roof long term and single event hydrological performance.
Therefore, this study aimed to evaluate the hydrological performance and cost-efficiency of 30 sand storage dams.
Statistical analysis of the continuous long term model simulations was used to quantify the hydrological performance of infiltration trenches.
However, there is very limited knowledge concerning the evolution of green roof hydrological performance with system age.
Similar(30)
In this paper we present the first assessment of the hydrological model performance and an analysis of the sensitivity of the model to input parameters.
The main goal was to identify proper sets of hydraulic parameters and to evaluate their relevance on hydrological model performance for irrigation management purposes.
This indicates that reanalysis can successfully compensate for deficiencies in the surface observation record and provide significantly better hydrological modelling performance.
Multi-model (ensemble, or committee) techniques have shown to be an effective way to improve hydrological prediction performance and provide uncertainty information.
Results highlight three important points: (i) Set-up of elevation bands over mountainous headwater improved hydrological simulation performance, even well downstream of the snow-dominated area.
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