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| 1 | Multi-object approach and its appfication to adaptive water management under climate change显示文摘This paper addresses issues on adaptive water management under the impact of climate change.Based on a set of comprehensive indicators of water system,a decision making approach of multi-objects is developed and applied to quantify water adaptive management for the demands of water sustainable use,water environmental protection and eco-water requirement under the climate change.For this study in China,two key indicators are proposed,namely(1) the water resources vulnerability(V) that was represented by integrated sensitivity(S) and resilience(C) of climate change impact on water resources,and(2) the sustainability of socio-economy and water environment,marked by DD,that is integrated scaler of socio-economic development(EG) based on the amount of GDP and the water environment and relative eco-system quality(LI).To find a reasonable solution for adaptive water management,a multi-objective decision making model of adaptive water management is further developed and the multi-objective model was transformed into an integrated single optimization model through developing an integrated measure function,called as VDD=DD/V.This approach has been applied to adaptive water resources planning and management for case study of China with new policy,called as the strict management of water resources based on three red line controls,i.e.,the control of total water use by the total water resources allocation,the control of lower water use efficiency by the water demand management and the control of the total waste water load by water quality management in the Eastern China Monsoon Region that covers major eight big river basins including Yangtze River,Yellow River,Haihe River and Huaihe River.It is shown that the synthetic representation of water resource vulnerability and socio-economic sustainability by the integrated objective function(VDD) and integrated decision making model are workable and practicable.Adaptive management effect of the criterion compliance rate and water use efficiency are more appreciable through new water policy of the three red line controls,which can reduce 21.3% of the water resources vulnerability(V) and increase 18.4% of the sustainability of socioeconomy and water environment(DD) for the unfavorable scenario of climate change in 2030. | HONG Si XIA Jun CHEN Junxu WAN Long NING Like SHI Wei | 2017 | Journal of Geographical Sciences2017,27,3: | 5 |
| 2 | Sensitivity and vulnerability of water resources in the arid Shiyang River Basin of Northwest China显示文摘The sensitivity and vulnerability of water resources to climate change is difficult to assess. In this study, we used a conceptual hydrologic model to investigate the sensitivity of streamflow to climate change. We also proposed a framework to evaluate the vulnerability of water resources in arid regions. We applied this framework to a case study of the Shiyang River Basin in Northwest China. Results showed that the precipitation and streamflow in Shiyang River Basin exhibited no significant trends of change from 1956 to 2010. In the past five decades, however, the temperature increased significantly by 0.37°C per decade. According to the sensitivity assessment, a 10% increase in precipitation and a 1°C increase in temperature altered mean annual streamflow by averages of 14.6% and –0.5%, respectively, from 1988 to 2005. In the 2000s, the calculated vulnerability of water resources in Shiyang River Basin was more than 0.95, indicating severe vulnerability. The increase in the amount of precipitation and the implementation of water-saving measures can reduce the vulnerability of water resources in the future; if precipitation increases by 10% per decade and the use of irrigation water decreases by 15% in the 2030s, the evaluated value of water resources vulnerability will be reduced to 0.79. However, the region remains highly vulnerable. The proposed framework for vulnerability assessment can be applied to the arid regions in Northwest China, and the results of our efforts can identify adaptation strategies and improve the management of water resources in such regions. | Long WAN Jun XIA HongMei BU Si HONG JunXu CHEN LiKe NING | 2014 | Journal of Arid Land2014,6,6: | 4 |
| 3 | Runoff of arid and semi-arid regions simulated and projected by CLM-DTVGM and its multi-scale fluctuations as revealed by EEMD analysis显示文摘Runoff is a major component of the water cycle,and its multi-scale fluctuations are important to water resources management across arid and semi-arid regions.This paper coupled the Distributed Time Variant Gain Model(DTVGM)into the Community Land Model(CLM 3.5),replacing the TOPMODEL-based method to simulate runoff in the arid and semi-arid regions of China.The coupled model was calibrated at five gauging stations for the period 1980–2005 and validated for the period 2006–2010.Then,future runoff(2010–2100)was simulated for different Representative Concentration Pathways(RCP)emission scenarios.After that,the spatial distributions of the future runoff for these scenarios were discussed,and the multi-scale fluctuation characteristics of the future annual runoff for the RCP scenarios were explored using the Ensemble Empirical Mode Decomposition(EEMD)analysis method.Finally,the decadal variabilities of the future annual runoff for the entire study area and the five catchments in it were investigated.The results showed that the future annual runoff had slowly decreasing trends for scenarios RCP 2.6 and RCP 8.5 during the period 2010–2100,whereas it had a non-monotonic trend for the RCP 4.5 scenario,with a slow increase after the 2050 s.Additionally,the future annual runoff clearly varied over a decadal time scale,indicating that it had clear divisions between dry and wet periods.The longest dry period was approximately 15 years(2040–2055)for the RCP 2.6 scenario and 25 years(2045–2070)for the RCP 4.5 scenario.However,the RCP 8.5 scenario was predicted to have a long dry period starting from 2045.Under these scenarios,the water resources situation of the study area will be extremely severe.Therefore,adaptive water management measures addressing climate change should be adopted to proactively confront the risks of water resources. | NING Like XIA Jun ZHAN Chesheng ZHANG Yongyong | 2016 | Journal of Arid Land2016,8,4: | 4 |
| 4 | Genetic diversity of wheat gene pool of recurrent selection assessed by mierosatel lite markers and morphological traits 显示文摘 | Jiancheng Liu Like Liu Ning Hou | 2007 | Euphytica2007,155,: | 1 |