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首页> 外文期刊>Ecological informatics: an international journal on ecoinformatics and computational ecology >Assessing the effect of the Three Gorges reservoir impoundment on spawning habitat suitability of Chinese sturgeon (Acipenser sinensis) in Yangtze River, China
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Assessing the effect of the Three Gorges reservoir impoundment on spawning habitat suitability of Chinese sturgeon (Acipenser sinensis) in Yangtze River, China

机译:评估三峡水库蓄水对中华Chinese在长江中产卵的适宜性的影响

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摘要

The Chinese sturgeon (Acipenser sinensis), a kind ofmaricolous anadromousmigratory fish species, is endangered and protected in China. Historical spawning habitats were distributed in the lower reaches of Jinsha River and the upper reaches of Yangtze River. Since the establishment of the Gezhouba water conservancy pivot in 1981, the migratory route of Chinese sturgeon spawning was blocked. Therefore, the fish was forced to propagate in a new spawning ground which was mainly distributed in the 4-km-long mainstream from Gezhouba Dam to Miaozui in the middle Yangtze River. After water storage and power generation of the Three Gorges reservoir (TGR) in 2003, the propagation of Chinese sturgeon has been impacted gradually. According to field surveys, the fish used to spawn twice a year before TGR impoundment, but only once happened after that. Besides, the spawning scale is also declining with each passing year. In order to simulate and evaluate the effect of TGR impoundment on spawning habitats of Chinese sturgeon, with consideration of their reproductive characteristics, an eco-hydrodynamic model was established by coupling a two-dimensional hydrodynamic model and a fuzzy fish habitat module based on fuzzy logic inference. Flow fields at the studied site in an impoundment scenario and an assumed no impoundment scenario were simulated with the 2D hydrodynamic model. Afterwards, by linking hydrodynamic conditions to the expert knowledge base, the fuzzy habitat model used fuzzy logic inference to compute habitat suitability of the Chinese sturgeon. In addition, the approach was used to propose a suitable instream flow range during the propagation period for Chinese sturgeon. The results indicated that the suitable instream flowneeded for Chinese sturgeon spawning in middle Yangtze River should be between 10,000m3/s and 17,000m3/s and it also showed that after TGRwas put into pilot impoundment operation at the designed water level of 175 m, the habitat suitability has decreased significantly in October. Besides, thewater temperature of spawning habitat increased to a higher level in propagation period due to the impoundment of the TGR. All these alterations have had imposed tremendous impacts on the propagation of Chinese sturgeon. Therefore, adjusting impoundment schedule of the TGR to recover the water flow over spawning habitat in October is a crucialway to improve the habitat suitability. Furthermore, the presentedmethod also provides a theoretical basis for further research on the assessment of habitat suitability of aquatic species at amicro-habitat scale.
机译:中华urge(Acipenser sinensis)是一种有毒的无性迁徙鱼类,在中国受到威胁和保护。历史产卵栖息地分布在金沙江下游和长江上游。自1981年建立葛洲坝水利枢纽以来,中华st产卵的迁徙路线被封锁。因此,鱼被迫在新的产卵场繁殖,该产卵场主要分布在从葛洲坝大坝到长江中游苗嘴的4公里长的主流中。自2003年三峡水库(TGR)蓄水并发电以来,中华st的繁殖已逐渐受到影响。根据现场调查,该鱼过去每年在TGR蓄水之前产卵两次,但此后仅发生一次。此外,产卵规模也逐年下降。为了模拟和评估TGR蓄水对中华st产卵栖息地的影响,并考虑其繁殖特性,结合二维水动力模型和基于模糊逻辑的模糊鱼类栖息地模块,建立了生态水动力模型。推理。使用二维流体动力学模型模拟了在蓄水方案和假定没有蓄水方案的情况下研究现场的流场。然后,通过将水动力条件与专家知识库联系起来,模糊栖息地模型使用模糊逻辑推理来计算中华st的栖息地适宜性。此外,该方法还被用来为中华st繁殖期间提出合适的河道流量范围。结果表明,长江中游中华Chinese产卵的适宜入流应在10,000m3 / s至17,000m3 / s之间,并且还表明,TGR在设计水位175m进行试点蓄水操作后, 10月的栖息地适应性已大大降低。此外,由于TGR的蓄积,产卵栖息地的水温在繁殖期升高到较高水平。所有这些改变对中华st的繁殖产生了巨大影响。因此,调整TGR的蓄水时间表以恢复十月份产卵栖息地的水流是提高栖息地适宜性的关键途径。此外,本文提出的方法还为进一步研究以微生境规模评价水生物种的生境适宜性提供了理论基础。

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