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Flow Field Analysis and Structure Optimization of the Suction Nozzle for Road Sweeper

机译:道路清扫器吸入喷嘴的流场分析及结构优化

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As a key component of airstream system equipped in the road sweeper, the structure of the suction nozzle determines its internal flow field distribution, which affects the dust-sucking efficiency to a great degree. This research is aiming to determine a better suction nozzle structure. Starting with an analysis of the one used in a certain type of road sweeper, the initial model of the suction nozzle is established, and the internal flow field is simulated with typical computational fluid dynamics (CFD) software named FLUENT. Based on the simulation results, the dust-sucking capability of the initial structure is evaluated from the aspects of pressure and velocity distribution. Furthermore, in order to explore the influence of different structural parameters on the flow field distribution within the suction nozzle, models with different cavity heights and shoulder angles are established, and Univariate Method is utilized to analyze the contrast models. The model with chamfering is also studied in the same way. Based on these simulation results, an optimized scheme of the initial structure is proposed. Moreover, the simulation of two-phase flow in the optimized structure is completed on the basis of discrete phase model (DPM), the particle trajectory is tracked and the result shows a significantly better dust-sucking effect with a more reasonable pressure field and velocity field in comparison with the initial model. Through present researches, the structure of the suction nozzle is expected to be improved, and it also provides a design reference for the development of high efficiency road sweepers.
机译:作为装备在道路扫地机的气流系统的关键部件,吸嘴的结构决定了其内部流场分布,这会影响灰尘吸尘效率到大程度。该研究旨在确定更好的吸嘴结构。从分析开始,在某种类型的道路扫地机中,建立了吸嘴的初始模型,并用名为Fluent的典型计算流体动力学(CFD)软件模拟内部流场。基于仿真结果,从压力和速度分布的方面评估初始结构的灰尘吸收能力。此外,为了探讨不同结构参数对吸嘴内的流场分布的影响,建立了具有不同腔高和肩部角度的模型,并且利用单变量方法来分析对比度模型。具有倒角的模型也以相同的方式研究。基于这些仿真结果,提出了初始结构的优化方案。此外,基于离散相位模型(DPM)完成了优化结构中的两相流的模拟,跟踪粒子轨迹,结果显示了具有更合理的压力场和速度的显着更好的灰尘效果与初始模型相比的字段。通过目前的研究,预计吸嘴的结构将得到改善,它还为高效道路扫描的发展提供了一种设计参考。

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