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논문 기본 정보

자료유형
학술저널
저자정보
저널정보
한국지역학회 지역연구 지역연구 제6권 제1호
발행연도
1990.6
수록면
57 - 68 (12page)

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초록· 키워드

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The purpose of this study is to develop the models to predict the noise PCE (Passenger Car Equivalence) of large running vehicles through noise prediction models. The noises were measured at the distance of 7.5 M, 11.0 M, and 14.5 M from the noise source with test vehicles running at the speed of 40㎞/ h, 60㎞/ h, and 80㎞/ h while normal traffic were detoured. Total noise levels were measured while vehicles were running at given speeds. Engine noise level was considered as the noise of its idle running at the three vehicle speeds shown above friction . noise level was ascertained by moving the vehicle at given speeds without the engin operating. The noise prediction models for each noise source were developed by factors which affect to the each noise level. As a result of this paper, the reduction of total vehicle noise by increasing the distance to the noise source from 10 M to 15 M is as much as that by dropping its speed from 60㎞ / h to 40㎞ / h. Also, the reduction of PCE of total noise of large vehicle by making the noise source far from 8 M to 15 M is equivalent to that by reducing its speed from 80㎞ / h to 60㎞ / h. Engine noise PCE, which is in range between 65 and 160, is larger than friction noise PCE which is in range 3.5 and 5.5. Engin noise is the main noise of the large vehicles while friction noise is that of the small vehicles. Machine noise for large vehicles, and engin noise for small vehicles should be tightly controlled to reduce the vehicle noise. A low noise engine and tire, and the shape of vehicle body are needed to be developed to reduce noise further.

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UCI(KEPA) : I410-ECN-0101-2018-030-003617393