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Effect of Fish Baffles on the Hydraulic Roughness of Slip-Lined Culverts

机译:鱼挡板对衬砌涵洞水力粗糙度的影响

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The use of fish baffles in HDPE slipliners is growing in popularity to improve hydraulic conditions for fish passage, yet little is known on how baffles affect the outlet-controlled discharge capacity of these types of culverts. To fill this gap in knowledge, roughness coefficients (Manning's n and friction factor f values) were experimentally determined for weir baffle, slotted weir baffle, and spoiler baffle configurations at four relative spacings (lambda(+) = 0.6, 1.2, 1.8, 2.4) and three values of relative roughness height (h(+) = 0.15, 0.10, 0.05). Relative roughness height (h(+) = h/D where D is the pipe diameter) was found to be the determinant geometric parameter affecting energy losses. Relative spacing (lambda(+) = lambda/D) was found to play an important secondary role. An analytical model was developed and analyzed to determine the effects of the following: roughness reduction (alpha = n(o)) between the Manning's coefficients of the host and baffle equipped slipline culvert; diameter reduction (beta = D/D-o) between the diameters of the host and slipline culverts; relative length (L+ = L/D); and inlet treatments (k(e)) on the hydraulic capacity of corrugated steel culverts after being sliplined with baffled high-density polyethylene (HDPE) culverts. Results demonstrate that many HDPE slipliner culverts can house baffles with a values in the range of 0.5 to 0.9. Design recommendations for the use of baffles in slipline culverts are discussed. (C) 2014 American Society of Civil Engineers.
机译:在HDPE衬板中使用鱼挡板以改善鱼通过的水力条件已变得越来越普遍,但对于挡板如何影响这些类型涵洞的出口控制排放能力知之甚少。为了填补这一知识空白,通过实验确定了堰板,开槽堰板和扰流板构型在四个相对间距(λ(+)= 0.6、1.2、1.8、2.4)下的粗糙度系数(Manning's n和摩擦系数f值) )和相对粗糙度高度的三个值(h(+)= 0.15、0.10、0.05)。相对粗糙度高度(h(+)= h / D,其中D为管道直径)是影响能量损耗的决定性几何参数。发现相对间距(lambda(+)= lambda / D)起着重要的次要作用。开发了一个分析模型并进行了分析,以确定以下影响:主机的Manning系数与装有挡板的滑线涵之间的粗糙度降低(alpha = n / n(o));主体和滑移线涵的直径之间的直径减小(β= D / D-o);相对长度(L + = L / D);折弯高密度聚乙烯(HDPE)涵洞滑行后,对波纹钢涵的水力容量进行了入口处理(k(e))。结果表明,许多HDPE衬砌涵洞可以容纳0.5至0.9范围内的挡板。讨论了在滑线涵洞中使用挡板的设计建议。 (C)2014年美国土木工程师学会。

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