• 제목/요약/키워드: 1 m Air-borne noise

검색결과 4건 처리시간 0.029초

대형 디젤엔진의 소음 개선에 대한 기초 연구 (Basic Study on the Performance Improvement of HD Diesel Engine)

  • 김규철;이삼구;주봉철;노병준
    • 한국자동차공학회논문집
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    • 제9권1호
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    • pp.181-188
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    • 2001
  • The evaluation of the noise for the an existing engine was carried out to improve the current noise level. The applied techniques were 1m air-borne noise, combustion noise analysis, torsional analysis at the front pulley and sound pressure intensity. In addition, the evaluation of the possibility to the noise reduction by means of wrapping the parts was performed to propose the detailed information in engine design. In view of the obtained results, the following countermeasures were recommended to reduce the current noise level through the above methods. Furthermore, in order to assess the influence of combustion noise on the overall engine noise, the noise test was also performed by the change of intake air temperature up to 5$0^{\circ}C$ in steps of 1$0^{\circ}C$. Finally, the fixed design specifications to reduce the engine noise will be decided in consideration of the test data for proto type engine.

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PROCESS OF DESIGNING BODY STRUCTURES FOR THE REDUCTION OF REAR SEAT NOISE IN PASSENGER CAR

  • Kim, K.C.;Kim, C.M.
    • International Journal of Automotive Technology
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    • 제8권1호
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    • pp.67-73
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    • 2007
  • This study analyzes the interior noise that is generated during acceleration of a passenger car in terms of car body structure and panel contribution. According to the transfer method, interior noise is classified into structure-borne noise and air-borne noise. Structure-borne noise is generated when the engine's vibration energy, an excitation source, is transferred to the car body through the engine mount and the driving system and the panel of the car body vibrates. When structure-borne noise resonates in the acoustic cavity of the car interior, acute booming noise is generated. This study describes plans for improving the car body structure and the panel form through a cause analysis of frequency ranges where the sound pressure level of the rear seat relative to the front seat is high. To this end, an analysis of the correlation between body attachment stiffness and acoustic sensitivity as well as a panel sensitive component analysis were conducted through a structural sound field coupled analysis. Through this study, via research on improving the car body structure in terms of reducing rear seat noise, stable performance improvement and light weight design before the proto-car stage can be realized. Reduction of the development period and test car stage is also anticipated.

선박의 장비 공기소음이 수중소음에 미치는 영향 (Effect of Airborne Noise from Ship Machinery on Underwater Noise)

  • 김현실;김재승;김봉기;김상렬;이성현
    • 대한조선학회논문집
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    • 제48권6호
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    • pp.569-574
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    • 2011
  • In research vessels or naval ships, airborne noise from machineries such as diesel engine is the major source of underwater noise at low speed. In this paper, effect of engine noise on underwater noise is studied by considering two paths; sound radiation from hull plate and direct airborne noise transmission through hull plate. SEA (Statistical energy analysis) is used to predict hull plate vibration induced by engine noise, where SEA model consists of only two subsystems; engine room air space and hull plate. The pressure level in water is calculated from sound radiation by plate. Engine noise transmission through hull plate is obtained by assuming plane wave propagation in air-limp plate-water system. Two effects are combined and compared to the measurement, where speaker is used as a source in engine room and sound pressure levels in engine room and water are measured. The hydrophone is located 1 m away from the hull plate. It is found below 1000 Hz, prediction overestimates underwater sound pressure level by 5 to 12 dB.

남극 킹조지섬 포케이드 빙하의 헬리콥터 및 지상 레이다 탐사 (Helicopter-borne and ground-towed radar surveys of the Fourcade Glacier on King George Island, Antarctica)

  • 김기영;이주한;홍명호;홍종국;손호웅
    • 지구물리와물리탐사
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    • 제13권1호
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    • pp.51-60
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    • 2010
  • 남극 킹조지섬 포케이드 빙하의 저면 지형과 내부 모습을 규명하기 위해서 2006년 11월에 4개 조사측선을 따라 헬리콥터 및 지상 레이다(GPR) 탐사를 실시하였다. 혼합위상인 단채널 지상 GPR 자료에 적용한 신호 역대합, f-k 구조보정 속도분석, 유한차분 깊이구조보정 등의 처리과정을 통하여 수직 분해능 향상, 속도함수 추출, 선명한 깊이영상 작성 등을 효과적으로 수행하였다. 헬리콥터 GPR 자료의 경우, 구조보정속도는 공기와 얼음의 2층모델을 가정한 평균제곱근속도로 구하였다. GPR 단연은 울퉁불퉁한 빙저면, 빙하 내부의 미끄러짐면, 운집된 산란잡음 등의 특징적 모습을 보여준다. 기반암까지의 최대 깊이는 포케이드 빙하와 목지들로우스키 빙하 사이의 경계능선 남동사면에 인접한 빙하 골짜기에서 79 m가 넘는다. 빙하 기저수 위에 복잡한 형태의 굴과 수 m의 폭을 갖는 독립된 빈 공간들의 존재를 지상 GPR 자료로부터 해석하였다. 빙하 중단 부근의 GPR 영상은 포토소만의 빙산 형성기작과 관련된 미끄러짐면, 단열, 단층 등의 구조를 보여준다.