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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >The Effects of Pipe Geometry on Fluid Flow in a Muon Collider Particle Production System
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The Effects of Pipe Geometry on Fluid Flow in a Muon Collider Particle Production System

机译:Muon Collider粒子生产系统中管道几何形状对流体流动的影响

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摘要

Liquid mercury has been investigated as a potential high-Z target for the production of muon particles for the Muon Collider project. This paper investigates the dynamics of mercury flow in a design of the target delivery system, with the objective of determining pipe configurations that yield weak turbulence intensities at the exit of the pipe. Eight curved pipe geometries with various half-bend angles and with/without nozzles in the exit region are studied. A theoretical analysis is carried out for steady laminar incompressible flow, whereby the terms representing the curvature effects are examined. Subsequent simulations of the turbulent flow regime in the pipes are based on a realizable k - ε Reynolds-Averaged Navier-Stokes (RANS) equations approach. The effects of half-bend angles and the presence of a nozzle on the momentum thickness and turbulence intensity at the exit plane of the curved pipe are discussed, as are the implications for the target delivery pipe designs.
机译:液态汞已被研究为Muon Collider项目生产μ子粒子的潜在高Z靶标。本文研究了目标输送系统设计中的汞流动动力学,目的是确定在管道出口处产生弱湍流强度的管道配置。研究了八个弯曲管的几何形状,这些几何形状具有不同的半弯曲角度,并且在出口区域带有/不带有喷嘴。对稳定的层状不可压缩流进行了理论分析,从而检验了代表曲率效应的项。管道中湍流状态的后续模拟基于可实现的k-ε雷诺平均Navier-Stokes(RANS)方程方法。讨论了半弯角和喷嘴的存在对弯管出口平面处的动量厚度和湍流强度的影响,以及对目标输送管设计的影响。

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