首页> 外文期刊>Journal of the American Water Resources Association >HYDRODYNAMIC CONTROL OF AN EMERGENT AQUATIC PLANT (SCIRPUS ACUTUS) IN OPEN CHANNELS1
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HYDRODYNAMIC CONTROL OF AN EMERGENT AQUATIC PLANT (SCIRPUS ACUTUS) IN OPEN CHANNELS1

机译:露天CHANNELS1中新兴水生植物(SCIRPUS ACUTUS)的水动力控制

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ABSTRACT:Control of emergent aquatic plants such as tule (Scirpus acutusMuhl.; Bigel.) is of direct interest to managers of surface waters in Western North America. Where conditions of water velocity and depth occur that permit this and similar species to colonize and grow, their clonal habit may restrict, or even block, open channels within several seasons after their establishment. Fortunately, sufficient flow depth and velocity naturally prevent these plants from growing into and blocking channels. We investigated physical constraints for tule stem growth with the ultimate intent to apply this knowledge in rehabilitating 60 miles of the diverted Owens River in Eastern California, presently choked with emergent growth. Bending stress resulting from hydrodynamic drag on tule stems was found to induce lodging; permanent deformation and consequent loss of function. The depth‐velocity envelope describing this process (at 95 percent confidence) isuD/d= 12.8 where u = average velocity acting upon the stem (m/s), D = local depth of flow (m), and d = tule stem diameter at the point of attachment (m). Maintaining a discharge or reconfiguring a channel so this critical depth‐velocity‐stem diameter envelope is exceeded (predictable using flow models) through the summer growing period should prevent encroachment into an active ch
机译:摘要:防治水生植物如郁金香(Scirpus acutusMuhl.;比格尔。是北美西部地表水管理者的直接利益。如果出现水流速度和深度条件,允许该物种和类似物种定殖和生长,它们的克隆习性可能会在它们建立后的几个季节内限制甚至阻塞开放的渠道。幸运的是,足够的水流深度和流速自然可以防止这些植物生长并阻塞通道。我们研究了图勒茎生长的物理限制,最终目的是将这些知识应用于修复东加州 60 英里的改道欧文斯河,目前因紧急生长而窒息。研究发现,由流体动力阻力对薄纱茎产生的弯曲应力会引起倒伏;永久性变形和随之而来的功能丧失。描述该过程的深度-速度包络线(置信度为 95%)为 isuD/d= 12.8,其中 u = 作用在茎上的平均速度 (m/s),D = 局部水流深度 (m),d = 附着点处的图勒茎直径 (m)。在整个夏季生长期保持排放或重新配置通道,以超过这个临界深度-速度-茎直径包络线(使用流量模型可预测),应防止侵占活动通道

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