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Estimated Splash and Training Wall Height Requirements for Stepped Chutes Applied to Embankment Dams

机译:应用于堤坝的阶梯滑道的预计飞溅和训练壁高要求

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Aging embankment dams are commonly plagued with insufficient spillway capacity. To provide increased spillway capacity, stepped chutes are frequently applied as an overtopping protection system for embankment dams. Stepped chutes with sufficient length develop aerated flow. The aeration and flow turbulence can create a significant amount of splash over the stepped chute training wall if not appropriately accounted for in the design. Recommendations for stepped chute training wall height requirements are available in the literature with little to no supporting data available. Researchers at the USDA-Agricultural Research Service (ARS) Hydraulic Engineering Research Unit (HERU) in Stillwater, Oklahoma, conducted a series of tests in a near prototype scale stepped chute facility to quantify the maximum splash height, y(sp), expected from aerated flow and to provide design recommendations for training wall height necessary to minimize erosive splash over the wall. Data indicate the maximum ysp ranged between 1.1 and 3.7 times the critical flow depth (d(c)) and between 2.3 and 5.5 times the bulked flow depth (y(90)). For 0.035 <= h/d(c) < 0.4, the minimum training wall height required above the step edge downstream of the free-surface inception point, y(sw), is 1.4y(90). For 0.4 <= h/d(c) <= 1.1, y(sw) normalized by y(90) follows a simple power function of h/d(c). According to the data, an increase of ysw to approximately 2.0y(90) may be needed. These minimum training wall height requirements are recommended for use in skimming flow conditions ( i.e., 0.035 <= h/d(c) <= 1.1) for nonconverging stepped chutes with slopes ranging 10-30 degrees. (C) 2017 American Society of Civil Engineers.
机译:老化的堤坝通常受到溢洪道容量不足的困扰。为了提供更大的溢洪道流量,阶梯式溜槽经常被用作堤坝的防倾覆保护系统。具有足够长度的阶梯形滑槽会产生充气流。如果在设计中未适当考虑,通气和流动湍流会在阶梯式溜槽训练壁上产生大量飞溅。关于阶梯式溜槽训练壁高度要求的建议在文献中可用,几乎没有甚至没有可用的支持数据。位于俄克拉荷马州斯蒂尔沃特的美国农业部农业研究服务(ARS)水利工程研究组(HERU)的研究人员在接近原型规模的阶梯式溜槽设施中进行了一系列测试,以量化预期的最大飞溅高度y(sp)。加气流量并提供设计建议,以训练必要的壁高,以最大程度地减少侵蚀性飞溅在壁上的情况。数据表明最大ysp介于临界流量深度(d(c))的1.1到3.7倍之间,以及体积流量深度(y(90))的2.3到5.5倍之间。对于0.035 <= h / d(c)<0.4,自由表面起始点下游的台阶边缘y(sw)下游所需的最小训练壁高度为1.4y(90)。对于0.4 <= h / d(c)<= 1.1,由y(90)归一化的y(sw)遵循h / d(c)的简单幂函数。根据数据,可能需要将ysw增加到大约2.0y(90)。建议将这些最低训练壁高要求用于撇油流量条件(即0.035 <= h / d(c)<= 1.1),坡度为10-30度的不收敛阶梯式溜槽中。 (C)2017年美国土木工程师学会。

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