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Application of the Morris algorithm for sensitivity analysis of the REALM model for the Goulburn irrigation system

机译:Morris算法在古尔本灌溉系统REALM模型敏感性分析中的应用

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The REALM modelling shell is widely used in Australia as a water allocation modelling tool. It has been used to develop the Goulburn System Model (GSM) of the Goulburn, Broken, Loddon and Campaspe Rivers in northeastern Victoria. REALM represents the river and irrigation system as a network of storages and carriers. The model has been optimised to best represent the water harvesting and allocation for use by water management authorities. The model is analysed to assess the sensitivity of a subset of the model outputs, to a subset of the system parameters. The New Morris algorithm uses sampling paths generated in the space of the parameters, to generate points at which the model is run (to generate the model outputs). These model runs are then used to estimate the first and second-order effects of the parameters on the outputs. The results illustrate the mild linkage of the Goulburn and Broken systems, and the Broken system also shows differences between minimum and average outflows. The Goulburn is more sensitive to some of the numerical convergence parameters used in the allocation software, while the Broken is less sensitive to these factors. The numerical convergence factors also lead to important second-order effects.
机译:REALM建模外壳在澳大利亚被广泛用作水分配建模工具。它已被用于开发维多利亚州东北部的古尔本河,布罗肯河,罗登河和坎帕斯佩河的古尔本系统模型(GSM)。 REALM将河流和灌溉系统表示为存储和运输网络。该模型已经过优化,可以最好地表示水的收集和分配,供水管理机构使用。分析模型以评估模型输出子集对系统参数子集的敏感性。 New Morris算法使用在参数空间中生成的采样路径来生成运行模型的点(以生成模型输出)。然后使用这些模型运行来估计参数对输出的一阶和二阶影响。结果表明,Goulburn和Broken系统存在温和联系,而Broken系统还显示了最小流出量和平均流出量之间的差异。 Goulburn对分配软件中使用的某些数字收敛参数更敏感,而Broken对这些因素不那么敏感。数值收敛因子还导致重要的二阶效应。

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