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An experimental investigation of head loss through a triangular V- shaped screen

机译:通过三角 V形屏幕进行头部损失的实验研究

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摘要

class="kwd-title">Keywords: Triangular trash screen, Head losses, Experimental hydraulics, Channel, Open channel flow class="head no_bottom_margin" id="ab010title">AbstractCommon traditional screens (screens perpendicular and vertical to the flow direction) face extensive problems with screen blockage, which can result in adverse hydraulic, environmental, and economic consequences. Experimentally, this paper presents an advanced trash screen concept to reduce traditional screen problems and improve the hydraulic performance of screens. The traditional screen is re-developed using a triangular V shape with circular bars in the flow direction. Triangular V-shaped screen models with different angles, blockage ratios, circular bar designs, and flow discharges were tested in a scaled physical model. The analyses provide promising results. The findings showed that the head loss coefficients were effectively reduced by using the triangular V-shaped screens with circular bars (α < 90°) in comparison with the traditional trash screen (α = 90). Additionally, the results indicated that the head loss across the screen increased with increasing flow discharge and blockage ratio. The losses considerably increase by large percentages when the screen becomes blocked by 40%. Low head losses were recorded at low screen angles for the circular bars. A new head loss equation is recommended for triangular screens with circular bars.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:三角形垃圾筛,压头损失,实验液压,通道,明渠流量 class =“ head no_bottom_margin“ id =” ab010title“>摘要常见的传统滤网(与流动方向垂直和垂直的滤网)面临着滤网堵塞的广泛问题,这可能导致不利的水力,环境和经济后果。通过实验,本文提出了一种先进的垃圾筛概念,以减少传统的筛问题并提高筛的水力性能。传统的滤网是使用三角形V形重新开发的,在流动方向上带有圆棒。在缩放的物理模型中测试了具有不同角度,堵塞率,圆棒设计和流量排放的三角V型筛模型。这些分析提供了有希望的结果。研究结果表明,与传统的垃圾筛网(α= 90)相比,使用带圆棒的三角形V形筛网(α<°90°)可有效降低人头损失系数。另外,结果表明,通过筛头的水头损失随着流量排放和堵塞率的增加而增加。当屏幕被40%阻塞时,损耗会大大增加。在圆棒的低屏幕角度下记录到了低水头损失。对于带圆棒的三角形筛网,建议使用新的水头损失公式。

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