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Evaluation and Analysis of Flow over Arced Weirs Using Traditional and Response Surface Methodologies

机译:使用传统和响应面方法评估和评估弧形堰上的水流

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This paper experimentally studies the hydraulic characteristics of arced weirs located in a reservoir. The accuracy and ability of the response surface methodology (RSM), especially central composite design (CCD), to describe the hydraulic performance of this type of weir is validated using experimental data. The discharge coefficient of arced weirs is presented as a function of headwater ratio (Ho/P) and magnification ratio (L/W) using both traditional and response surface methodologies. The results indicate that like the traditional methodology, RSM-CCD introduces an acceptable model to determine the discharge coefficient of the arced weirs, but it requires a much lower number of experiments. The results show that the discharge coefficient of an arced weir decreases by increasing Ho/P and L/W [or arc angle ()]. In addition, compared to a linear weir, the efficiency of an arced weir can increase up to 50%. Finally, based on the experimental results, a method is introduced for designing the in-reservoir arced weirs. (C) 2017 American Society of Civil Engineers.
机译:本文通过实验研究了位于水库中的弧形堰的水力特性。使用实验数据验证了响应面方法(RSM),尤其是中央复合设计(CCD)描述此类堰的水力性能的准确性和能力。使用传统方法和响应面方法,将弧形堰的排放系数表示为水源比(Ho / P)和放大率(L / W)的函数。结果表明,与传统方法一样,RSM-CCD引入了可接受的模型来确定弧形堰的放电系数,但所需的实验次数却少得多。结果表明,通过增加Ho / P和L / W [或电弧角()],弧形堰的排放系数降低。此外,与线性堰相比,弧形堰的效率最高可提高50%。最后,根据实验结果,介绍了一种设计库内弧形堰的方法。 (C)2017年美国土木工程师学会。

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