WANG Lei, ZHANG TianBao, YIN ShuoHui. RESEARCH ON VEHICLE INTELLIGENT FRAGRANCE FLUID SIMULATION AND NOISE REDUCTION[J]. Journal of mechanical strength , 2024, 46(6): 1311-1317.
DOI:
WANG Lei, ZHANG TianBao, YIN ShuoHui. RESEARCH ON VEHICLE INTELLIGENT FRAGRANCE FLUID SIMULATION AND NOISE REDUCTION[J]. Journal of mechanical strength , 2024, 46(6): 1311-1317. DOI: 10.16579/j.issn.1001.9669.2024.06.006.
RESEARCH ON VEHICLE INTELLIGENT FRAGRANCE FLUID SIMULATION AND NOISE REDUCTION
摘要
国内现有的小型化车载智能香氛装置普遍存在风量小、噪声大等问题
导致用户体验感不佳。针对上述问题
首先
基于Catia软件设计了一款小型化车载智能香氛装置。其次
基于计算流体力学(Computational Fluid Dynamics
CFD)方法对车载智能香氛装置进行流场仿真分析
并使用改进风路和改进风口大小的方法优化风量。优化后的风量为1.2 m3/h
较优化前提升了16.7%
验证了优化方法的可行性。最后
基于西门子Simcenter Test-lab系统
对车载智能香氛装置进行降噪研究
提出了采用隔离振动源与调节电动机细分的方案来降低噪声。试验结果表明
整机噪声减小了5.61 dB(A)
验证了降噪方法的有效性。所用的结构设计方法、风量优化方法
以及降噪技术方案
对车载电子领域的产品开发具有很强的借鉴意义。
Abstract
The existing miniaturized vehicle intelligent fragrance devices in China generally have problems such as small air volume and high noise
resulting in poor user experience.In view of the above problems
firstly
a miniaturized vehicle intelligent fragrance device based on Catia software was designed.Secondly
based on the computational fluid dynamics(CFD)method
the flow field simulation analysis of the vehicle intelligent fragrance device was carried out
and the air volume was optimized by improving the air path and the size of the air outlet.The optimized air volume is 1.2 m3/h
which is 16.7% higher than that before optimization
which verifies the feasibility of the optimization method.Finally
based on Siemens Simcenter Testlab system
the noise reduction of the vehicle intelligent fragrance devices was studied.The scheme of isolating vibration source and adjusting motor subdivision was proposed to reduce noise.The experimental results show that the noise of the whole machine is reduced by 5.61 dB(A)
which verifies the effectiveness of the noise reduction method.The structural design method
air volume optimization method and noise reduction technology scheme provide a strong reference for product development in the field of vehicle electronics.