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Experimental and Numerical Study on the Transient Flow Behavior in Gasoline Refueling System

瞬态(计算机编程) 热流体 汽油 燃烧 机械 汽油直喷 流量(数学) 瞬变流 环境科学 材料科学 核工程 工程类 计算机科学 化学 传热 废物管理 物理 电气工程 物理化学 操作系统 浪涌 传热系数
作者
Chenlin Zhu,Yan Zhao,Zhitao Jiang,Jiafeng Xie,Lifang Zeng,Lijuan Qian
出处
期刊:Frontiers in Heat and Mass Transfer [Global Digital Central]
卷期号:22 (1): 107-127
标识
DOI:10.32604/fhmt.2023.044433
摘要

Efficient and secure refueling within the vehicle refueling systems exhibits a close correlation with the issues concerning fuel backflow and gasoline evaporation.This paper investigates the transient flow behavior in fuel hose refilling and simplified tank fuel replenishment using the volume of fluid method.The numerical simulation is validated with the simplified hose refilling experiment and the evaporation simulation of Stefan tube.The effects of injection flow rate and injection directions have been discussed in the fuel hose refilling part.For both the experiment and simulation, the pressure at the end of the refueling pipe in the lower located nozzle case is 30% higher than that in the upper located nozzle case at a high flow rate, and the backflow phenomenon occurs at the lower filling mode.The fluid will directly flush into the first pipe elbow, changing the flow pattern from bubble flow to slug flow, which results in low-frequency and high-amplitude flow pressure fluctuations.A hexane refueling system, consisting of a refueling pipe, fuel tank and a vapor return line, is analyzed, in which hexane evaporation is considered.At the early refueling period, a higher refueling rate will lead to more obvious splashing, which leads to a higher average mass of hexane vapor and pressure in the tank.Two optimized fuel tank designs are examined.The lower fuel tank filling port exhibits significantly lower vapor hexane in the fuel tank compared to the other design, resulting in a reduction of 200 Pa in the peak pressure in the tank, which contributes to a substantial reduction of gasoline loss during tank filling.
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