Hydrological simulation and uncertainty analysis using the improved TOPMODEL in the arid Manas River basin, China

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作者
Lianqing Xue
Fan Yang
Changbing Yang
Guanghui Wei
Wenqian Li
Xinlin He
机构
[1] Hohai University,Hydrology and Water Resources College
[2] Shihezi University,Jackson School of Geosciences
[3] University of Texas at Austin,undefined
[4] Tarim River Basin Administration,undefined
[5] Hohai University Wentian College,undefined
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Understanding the mechanism of complicated hydrological processes is important for sustainable management of water resources in an arid area. This paper carried out the simulations of water movement for the Manas River Basin (MRB) using the improved semi-distributed Topographic hydrologic model (TOPMODEL) with a snowmelt model and topographic index algorithm. A new algorithm is proposed to calculate the curve of topographic index using internal tangent circle on a conical surface. Based on the traditional model, the improved indicator of temperature considered solar radiation is used to calculate the amount of snowmelt. The uncertainty of parameters for the TOPMODEL model was analyzed using the generalized likelihood uncertainty estimation (GLUE) method. The proposed model shows that the distribution of the topographic index is concentrated in high mountains, and the accuracy of runoff simulation has certain enhancement by considering radiation. Our results revealed that the performance of the improved TOPMODEL is acceptable and comparable to runoff simulation in the MRB. The uncertainty of the simulations resulted from the parameters and structures of model, climatic and anthropogenic factors. This study is expected to serve as a valuable complement for widely application of TOPMODEL and identify the mechanism of hydrological processes in arid area.
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