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A hydrologic index based method for determining ecologically acceptable water-level range of Dongting Lake

机译:基于水文指数的洞庭湖生态可接受水位范围确定方法

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摘要

Water-level fluctuation (WLF) is regarded as a key environmental factor for lake ecosystems. Keeping moderate WLFs approximating to its natural conditions is substantially essential to maintain its biodiversity and integrity. In this study, a hydrological index based method for determining ecologically acceptable water-level range (EAWLR) was illustrated by a case-study of Dongting Lake. This method was proposed based on a consideration of hydrological alterations induced by natural variability and human activity. It was during this process that two hydrological indices, the ratio flow deviation (RFD) and the amended annual proportional flow deviation (AAPFD), played vital roles in change point detection and the determination of EAWLR, respectively. The WLFs are closely related to species richness. The relationship between them follows a hump-backed curve and EAWLR serves as the hump part of the curve. The final results indicated that EAWLRs of Beijinggang, Nanzui and Chenglingji during flood season were 27.78-38.26 m, 25.19-38.45 m and 24.48-30.96 m, respectively, while those during non-flood season were 18.33-27.79 m, 17.68-29.19 m and 15.59-22.07 m, respectively. The response to the great flood in 1998 and the drought in 2006 of Dongting Lake region verified the rationality of the results. Within the EAWLR, ecosystems can operate normally and have stable community structures to resist external interference.
机译:水位波动(WLF)被认为是湖泊生态系统的关键环境因素。保持适度的WLF接近其自然条件对于维持其生物多样性和完整性至关重要。在这项研究中,以洞庭湖为例,说明了一种基于水文指数的生态可接受水位范围确定方法。提出该方法是基于对自然变异和人类活动引起的水文变化的考虑。正是在此过程中,两个水文指数,比率流量偏差(RFD)和修正的年度比例流量偏差(AAPFD),在变化点检测和EAWLR的确定中分别起着至关重要的作用。 WLF与物种丰富度密切相关。它们之间的关系遵循驼峰曲线,而EAWLR则是曲线的驼峰部分。最终结果表明,北京港,南嘴和城陵矶的EAWLRs分别在洪水季节为27.78-38.26 m,25.19-38.45 m和24.48-30.96 m,而在非洪水季节则为18.33-27.79 m,17.68-29.19 m和15.59-22.07 m。洞庭湖地区1998年特大洪水和2006年干旱的反应,验证了结果的合理性。在EAWLR中,生态系统可以正常运行,并具有稳定的群落结构以抵抗外部干扰。

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