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Roughness Manning Coefficient Variation in Irrigation Open Channels by Changing Width and Roughness Surface in the Armfield C4MKII Equipment

机译:通过在ARMFIELD C4MKII设备中改变宽度和粗糙度表面粗糙度射击灌溉开放通道的粗糙度变化

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Velocity in open channel depends inversely proportional to the roughness. This roughness is measured by "Manning friction coefficient n" and is selected arbitrarily for channels and hydraulics structures design, it is considered constant and depend onavailable information and designer experience. However, actually this coefficient depends on several factors. Nevertheless, constant n is used for both steady and unsteady flow. This work was done in the ARMFIELD C4MKII Channel device located in the Hydraulics Laboratory in the Irrigation Department at the Universidad Autonoma Chapingo having 5m length, 0.076m width, variable slope and acrylic walls with stainless steel bottom using rectangular cross section. Measurements were carried for flow rates from 1.35 to 0.44 l/s, slopes from 0.258-2.198%, bottom width from 0.076 to 0.0532m, measuring values of depth 0.01 m apart for all M2, S2 profiles in all conditions. Different channel flow surfaces were used from manufactured conditions to 1200 and 80 sandpaper and artificial grass. Computed data of n were done using discharge and depth values measured for different slopes, n value increases when the slope rises, n increases when width is reduced, but not clear for the smallest width bottom. The values of n were insensitive in smooth channels with some instabilities, however, strong roughness conditions (artificial grass) showed results with good agreement with those reported in the literature for pipes and channels. As a result, Designers computing hydraulic profiles M, S, C, H and A, must be cautious selecting n because they might be wrong finding erroneous profile lengths.
机译:开放通道的速度取决于与粗糙度成反比。这种粗糙度通过“曼宁摩擦系数n”来测量,并且任意为通道和液压结构设计选择,它被认为是恒定的并且取决于可利用的信息和设计者体验。然而,实际上这种系数取决于几个因素。然而,常数n用于稳定和不稳定的流量。这项工作是在位于灌溉部门的液压实验室的ARMFIELD C4MKII通道设备中完成,该工作在灌溉部门的灌溉部门的灌溉部门,在矩长,0.076米,可变坡度和丙烯酸墙上,使用矩形横截面。测量的流量率为1.35至0.44L / s,斜率为0.258-2.198%,底部宽度为0.076至0.0532M,为所有M2,S2型材分开的深度值0.01米,在所有条件下。使用不同的通道流动表面从制造条件到1200和80砂纸和人造草。 N的计算数据是使用针对不同斜率测量的放电和深度值完成的,当斜率升高时,n值增加,当宽度降低时,n增加,但对于最小宽度底部而言不清楚。 n的平滑通道中N的值不敏感,然而,一些不稳定性,强烈的粗糙条件(人造草)显示出与管道和渠道的文献报告的那些吻合良好的结果。结果,计算液压轮廓M,S,C,H和A的设计者必须是谨慎的选择n,因为它们可能是错误的发现错误的轮廓长度。

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