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Hydraulic Complexity Metrics for Evaluating In-Stream Brook Trout Habitat

机译:用于评估溪流鳟鱼栖息地的液压复杂性指标

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摘要

A two-dimensional hydraulic model (River2D) was used to investigate the significance of flow complexity on habitat preferences of brook trout (Salvelinus fontinalis) in the high-gradient Staunton River in Shenandoah National Park, Virginia. Two 100-m reaches were modeled where detailed brook trout surveys (10-30-m resolution) have been conducted annually since 1997. Spatial hydraulic complexity metrics including area-weighted circulation and kinetic energy gradients (KEG) were calculated based on modeled velocity distributions. These metrics were compared to fish density in individual habitat complexes (10-30-m subreaches) to evaluate relationships between fish location and average flow complexity. In addition, the fish density was compared to additional habitat variables including percent cascade (CS), pool (PL) and riffle, and in-stream (ISC_N) and riparian cover. There were negative correlations between modeled mean velocity (VEL) and maximum depth (MAXD) and fish density; however, there were no statistically significant correlations between KEGs or area-weighted circulation and fish density. Fish density was negatively correlated to ISC_N and positively correlated to the percent of the channel dominated by protruding boulders (BD) and CS. The structural complexity of cascade habitat and areas with protruding boulders creates complex flow patterns indicating that flow complexity plays an important role in brook trout habitat preferences at the local scale. Linear discriminate analysis was used to further investigate the relationships between habitat variables and fish density. Using backward stepwise variable selection, the final explanatory model contained the BD, ISC_N, MAXD, PL, and VEL variables. These observations indicate that at a coarse spatial scale hydraulic complexity may be an important component in fish habitat preferences; however, other habitat variables cannot be ignored and the hydraulic complexity metrics calculated using 2D modeling results were not explanatory. While spatial hydraulic complexity metrics provide quantifiable measures for evaluating stream restoration project impacts on in-stream habitat quality, the relationships between fish density and hydraulic complexity were not straightforward. This is likely due in part to modeling limitations in this high-gradient complex stream. Further research is needed at a range of spatial scales, stream types, and fish species to fully investigate the use of hydraulic complexity metrics to quantify in-stream habitat.
机译:使用二维水力模型(River2D)来研究弗吉尼亚州谢南多厄国家公园高坡度斯坦顿河上的水流复杂性对溪鳟(Salvelinus fontinalis)栖息地偏好的重要性。自1997年以来,每年对两个100米的河段进行建模,其中每年进行详细的溪鳟调查(分辨率为10-30米)。基于建模的速度分布,计算了空间水力复杂性指标,包括面积加权环流和动能梯度(KEG) 。将这些指标与单个栖息地综合体(10-30米子范围)中的鱼类密度进行比较,以评估鱼类位置与平均流量复杂性之间的关系。此外,将鱼的密度与其他栖息地变量进行了比较,包括级联百分比(CS),池百分比(PL)和浅滩,以及流中(ISC_N)和河岸覆盖率。建模的平均速度(VEL)与最大深度(MAXD)和鱼类密度之间存在负相关;但是,KEG或面积加权环流与鱼类密度之间无统计学意义的相关性。鱼的密度与ISC_N负相关,而与凸石(BD)和CS占主导地位的河道百分比正相关。梯级生境和巨石突出区域的结构复杂性造成了复杂的水流模式,表明水流复杂性在当地规模的小鳟鱼生境偏好中起着重要作用。线性判别分析用于进一步研究生境变量与鱼类密度之间的关系。使用向后逐步选择变量,最终的解释模型包含BD,ISC_N,MAXD,PL和VEL变量。这些观察结果表明,在粗糙的空间尺度上,水力复杂性可能是鱼类栖息地偏好的重要组成部分。但是,其他生境变量不能忽略,使用2D建模结果计算的水力复杂性指标也不能解释。尽管空间水力复杂性指标为评估河流恢复项目对河内栖息地质量的影响提供了可量化的措施,但鱼类密度与水力复杂性之间的关系并不简单。这可能部分归因于此高梯度复杂流中的建模限制。需要在一系列空间尺度,溪流类型和鱼类物种方面进行进一步研究,以充分研究水力复杂性指标对溪流栖息地的量化。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2010年第12期|p.1067-1076|共10页
  • 作者单位

    Dept.of Civil Engineering, St. Anthony Falls Laboratory, Univ. of Minnesota, 2 3rd Ave. SE, Minneapolis, MN 55408 Dept. of Biological Systems Engineering, Virginia Tech, 200 Seitz Hall (0303), Blacksburg, VA 24061;

    rnDept.of Biological Systems Engineering, Virginia Tech, Blacksburg, VA 24061;

    rnDept.of Fisheries and Wildlife Science, Virginia Tech, Blacksburg, VA 24061;

    rnBaker Environmental Hydraulics Laboratory, Dept. of Civil and Environmental Engineering, Virginia Tech, Blacksburg, VA 24061;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aquatic habitats; hydraulic models; two-dimensional models; mountain streams; boulders;

    机译:水生生境;水力模型二维模型;山间溪流巨石;
  • 入库时间 2022-08-18 00:21:51

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