长江流域资源与环境 >> 2013, Vol. 22 >> Issue (11): 1339-.

• 生态环境 • 上一篇    下一篇

鄱阳湖流域水文效应对气候变化的响应

李云良|张 奇|李相虎|姚静   

  1. (中国科学院南京地理与湖泊研究所湖泊与环境国家重点实验室|江苏 南京 210008)
  • 出版日期:2013-10-20

HYDROLOGICAL EFFECTS OF POYANG LAKE CATCHMENT IN RESPONSE TO CLIMATE CHANGES

LI Yunliang, ZHANG Qi, LI Xianghu, YAO Jing   

  1. (State Key Laboratory of Lake Science and Environment,Nanjing Institute of Geography and Limnology,Chinese Academy of Sciences,Nanjing 210008,China
  • Online:2013-10-20

摘要:

以鄱阳湖流域为研究区,以地表地下耦合的分布式水文模型WATLAC为模拟工具,探讨流域水资源对气候变化的响应。水文模型以2000~2008年为模拟期,以流域河道日径流量来率定(2000~2005年)与验证模型(2006~2008年)并取得了满意的模拟效果。基于此,假定未来气候变化情景方案,通过径流量、土壤蒸发量和基流量来探讨气候变化对流域水资源的影响。结果表明,径流量与基流量对降雨变化有着较强的敏感性,而土壤蒸发量对温度变化的敏感性较强。在降雨一定条件下,水文变量均与气温变化近似呈线性关系;在气温情景一定条件下,水文变量均与降雨变化呈非线性关系。随着降水的减少,气温对径流、土壤蒸发和基流的影响也随之减弱;气温对上述变量的显著影响主要表现在降水增加的情况下。相同的气温变化情景下,降水增加比降水减少对径流量的影响更加显著,降水减少比降水增加对土壤蒸发量与基流量的影响更加显著,表明降水变化对水文变量有着不同程度和方向的影响作用

Abstract:

We used the Poyang lake catchment as study area in this paper.The distributed hydrological model WATLAC was used to explore the catchment hydrological effects in response to climate changes.We used the observed river discharges of five subcatchments to calibrate and validate the hydrological model in simulation period from 2000 to 2008.Results showed that the simulation effects were good.Thereafter,the river discharge,soil evaporation and base flow were used as objective variables of sensitivity analysis to investigate the hydrological response to proposed climate change scenarios.Results showed that the catchment discharge and base flow were sensitive to precipitation changes.The soil evaporation was relatively sensitive to temperature changes.Under the condition of specified precipitation scenarios,these hydrological variables had linear relationship with the temperature changes.Under the condition of specified temperature scenarios,the relationship between the hydrological variables and the precipitation changes was nonlinear.The significant influences of temperature change on the hydrological variables were mainly associated with the increased precipitation.Under the same temperature change scenarios,the increased precipitation had more significant influence on discharge compared with the decreased precipitation.Whereas the decreased precipitation had more significant influence on soil evaporation and base flow than the increased precipitation,which indicated that the precipitation changes played an important role in causing different effects of hydrological variables.We have successfully applied a large scale distributed hydrological model in the Poyang lake catchment.This model was used to study the hydrological effects in response to possible climate changes.More importantly,this study provided a solid scientific basis for regional water resources management and flood regulation

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