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CAM 곡선 개선에 의한 차량용 공조기의 소음 저감 평가

Title
CAM 곡선 개선에 의한 차량용 공조기의 소음 저감 평가
Other Titles
Evaluation for Noise Reduction of the HVAC by Modification of CAM Curve
Author
오재응
Keywords
공조기시스템; 복소음향인텐시티법; 소음원 검출; 액티브인텐시티; 리액티브인텐시티; 상호상관스펙트럼; 벡터선도; 소음 저감; HVAC; Complex Acoustic Intensity Method; Source Identification; Active Intensity; Reactive Intensity; Cross Spectrum; Vector Flow; Noise Reduction
Issue Date
2011-09
Publisher
한국소음진동공학회
Citation
한국소음진동공학회 논문집, 2011, 21(9), P.787-797
Abstract
The noise in a vehicle is an important factor for customers purchasing a car. Particularly, reduction of the noise that is generated from HVAC(heating, ventilation and air conditioning) is very important since it has considerable effects on interior noise. In general, identification of noise source is crucial to reduce noise level. The complex acoustic intensity method is widely used to obtain the accurate measurement and identification of noise source. Therefore, in the previous study, noise source of HVAC was identified through experimental approach using the complex acoustic intensity method. In this study, we are intended to confirm reduced level of noise by comparing the result between before and after modification of cam curve that is based on identified noise source of HVAC. It is found out that noise source of HVAC are motor and cam area using the complex acoustic intensity method in the previous study. We performed experiments to compare noise level between before and after modification of cam curve. Especially, it can be seen that complex acoustic intensity method using both active and reactive intensity is vital in devising a strategy for comparison to noise level. Also, the vector flow of acoustic intensity was investigated to identify sound intensity distributions and energy flow in the near field of HVAC.
URI
http://koreascience.or.kr/article/ArticleFullRecord.jsp?cn=SOJDCM_2011_v21n9_787
ISSN
1598-2785; 2287-5476
DOI
10.5050/KSNVE.2011.21.9.787
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > MECHANICAL ENGINEERING(기계공학부) > Articles
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