KAJIAN RANCANG BANGUN ALAT UKUR DEBIT AMBANG LEBAR DENGAN VARIASI KEMIRINGAN HILIR

R. Risman, Warsiti Warsiti, W. Wasino, Mawardi Mawardi, Tedjo Mulyono
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Abstract

The modeling of broad crested weirs is expected to facilitate understanding, especially the behavior of the flow flowing through the measuring instrument. The flow behavior under consideration is hydraulic behavior, measurement accuracy, and discharge curve. In addition, there is a relationship between discharge and water level upstream and downstream of the spillway, as well as the relationship of the variation of discharge flowing through the broad crested weirs to the loss of energy height. From the results of this study, it was found that there was a relationship between discharge and water level upstream, downstream, water level above the threshold, and energy loss for wide-threshold spillway. The modeling of the broad crested weirs assumes that the Froude number that occurs in the model is the same as the Froude number that occurs in the field. So that the scale of discharge, time, velocity and volume will be able to represent the actual conditions in the field. The scale of length, width, and height of the prototype is 1: 100. The methodology used is to carry out testing in the hydraulics laboratory by varying Q1, Q2, Q3, Q4, …. Qn, to obtain variations in water level upstream and downstream of the broad crested weirs. From the results of the study, it was found that the energy loss was relatively small with a trend of Y = 101.66x2 - 0.7359x + 0.0017 with the slope of the broad crested weirs downstream is 1:2, Y = 467.84x2 - 1.7816x + 0.0022 for slope of the broad crested weirs downstream is 1:1.5, and Y = -1140,4x2 + 0.6383x + 0.0077 with the slope of the broad crested weirs downstream is 1:1 where Y is the energy loss in meters and X is the discharge in m3/sec.
宽顶堰的建模有望促进理解,特别是流经测量仪器的水流的行为。考虑的流动特性是水力特性、测量精度和流量曲线。此外,泄洪道上下游水位与流量有一定的关系,宽顶堰流量变化与能高损失也有一定的关系。从研究结果可以看出,宽阈值溢洪道的流量与上游水位、下游水位、阈值以上水位和能量损失之间存在一定的关系。宽顶堰的建模假设模型中出现的弗劳德数与现场出现的弗劳德数相同。使放电的尺度、时间、速度和体积能够代表现场的实际情况。原型的长、宽、高比例为1:10 0。所使用的方法是通过改变Q1, Q2, Q3, Q4, ....在水力学实验室进行测试Qn,得到宽顶堰上游和下游的水位变化。从这项研究的结果,它是发现,能量损失相对较小的趋势Y = 101.66 x2 - 0.7359 X + 0.0017宽顶堰下游的斜率是1:2,Y = 467.84 x2 - 1.7816 X + 0.0022坡的宽顶堰下游1:1.5,X和Y = -1140 4 x2 + 0.6383 + 0.0077,宽顶堰下游的斜率是1:1,Y是米和X的能量损失是立方米/秒的放电。
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