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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Fluid-mechanic interactions between a pipe flow having circumferential pressure variations and a piezometer ring
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Fluid-mechanic interactions between a pipe flow having circumferential pressure variations and a piezometer ring

机译:具有周向压力变化的管道流和压力计环之间的流体力学相互作用

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摘要

Purpose - This paper aims to investigate and understand the fluid mechanics of piezometer rings, a device frequently encountered in engineering practice. Design/methodology/approach - The investigation, implemented by numerical simulation, is based on turbulent flow in a pipe with a 90-degree bend. The pipe Reynolds numbers ranged from approximately 50,000 to 200,000. Two rings, with different dimensions, were investigated. Each ring consisted of four radially deployed straight segments of tubing which connect the pipe to a surrounding circular ring. The interconnections between the pipe and the ring were situated at 90-degree intervals around the circumference of the pipe. Findings - The focus was directed to optimal circumferential locations of the radial connections, the optimal circumferential locations for accurate pressure measurements and the pressure drop penalty incurred by the use of a piezometer ring. For both of the investigated piezometer ring configurations, it was found that measurement locations situated just beyond the points of intermediate circumferential pressure variations were suitable for determining accurate values. The pressure drop was seen to increase because of the presence of the ring. For the smaller ring configuration, the increase in relative pressure drop was on the order 15 per cent, whereas the larger ring configuration lead to a 10 per cent increase. Originality/value - This is the first attempt known to the authors to investigate and understand the fluid mechanics of piezometer rings.
机译:目的-本文旨在研究和理解测压环的流体力学,测压环是工程实践中经常遇到的一种装置。设计/方法/方法-通过数值模拟进行的研究基于弯曲90度的管道中的湍流。雷诺管的数量范围从大约50,000到200,000。研究了具有不同尺寸的两个环。每个环由四个径向展开的直管段组成,这些管段将管子连接到周围的圆形环上。管和环之间的互连围绕管的圆周以90度的间隔放置。发现-重点是径向连接的最佳圆周位置,进行精确压力测量的最佳圆周位置以及使用压力计环引起的压降损失。对于两个研究的测压环结构,发现刚好位于中间圆周压力变化点之外的测量位置适合确定精确值。由于环的存在,发现压降增加。对于较小的环形结构,相对压降的增加约为15%,而较大的环形结构导致相对压力下降的10%。原创性/价值-这是作者已知的第一次尝试研究和理解测压环的流体力学。

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