2002•Journal of the Society of Naval Architects of KoreaOpen access

The Flow Noise Characteristics on Hydrophone Installation Method in the Cavitation Tunnel

J.W. Ahn, Y.H. Park, Kyungseob Kim, J.T. Lee

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Abstract

기존의 소음계측 장치가 유동장 및 구조적 진동의 영향을 받을 수 있어 개선이 요구되었다. 새로이 설계된 2개의 Hydrophone Box에 수중청음기를 설치하여 성능을 검증하였으며, KRISO 캐비테이션 터널과 외국의 다른 캐비테이션 터널들과 배경소음 특성을 비교하였다. 현재의 실험결과로 미루어 프로펠러 캐비테이션 소음의 실선성능 예측이 가능하다고 사료되며, 저주파에서의 특성이 개선되었음을 알 수 있었다. As the existing noise measuring device was affected the flow-field and structural vibration directly, new experimental device was required. Two Hydrophone Boxes are designed and their performances are investigated. The noise level of the KRISO cavitation tunnel is compared with those of the other cavitation tunnels which have been designed for the noise study. The present experimental results show the possibility of the full-scale prediction for propeller cavitation noise and the improvement of the measurement performance at the range of low-frequency.

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기존의 소음계측 장치가 유동장 및 구조적 진동의 영향을 받을 수 있어 개선이 요구되었다. 새로이 설계된 2개의 Hydrophone Box에 수중청음기를 설치하여 성능을 검증하였으며, KRISO 캐비테이션 터널과 외국의 다른 캐비테이션 터널들과 배경소음 특성을 비교하였다. 현재의 실험결과로 미루어 프로펠러 캐비테이션 소음의 실선성능 예측이 가능하다고 사료되며, 저주파에서의 특성이 개선되었음을 알 수 있었다. As the existing noise measuring device was affected the flow-field and structural vibration directly, new experimental device was required. Two Hydrophone Boxes are designed and their performances are investigated. The noise level of the KRISO cavitation tunnel is compared with those of the other cavitation tunnels which have been designed for the noise study. The present experimental results show the possibility of the full-scale prediction for propeller cavitation noise and the improvement of the measurement performance at the range of low-frequency.

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Available abstract

기존의 소음계측 장치가 유동장 및 구조적 진동의 영향을 받을 수 있어 개선이 요구되었다. 새로이 설계된 2개의 Hydrophone Box에 수중청음기를 설치하여 성능을 검증하였으며, KRISO 캐비테이션 터널과 외국의 다른 캐비테이션 터널들과 배경소음 특성을 비교하였다. 현재의 실험결과로 미루어 프로펠러 캐비테이션 소음의 실선성능 예측이 가능하다고 사료되며, 저주파에서의 특성이 개선되었음을 알 수 있었다. As the existing noise measuring device was affected the flow-field and structural vibration directly, new experimental device was required. Two Hydrophone Boxes are designed and their performances are investigated. The noise level of the KRISO cavitation tunnel is compared with those of the other cavitation tunnels which have been designed for the noise study. The present experimental results show the possibility of the full-scale prediction for propeller cavitation noise and the improvement of the measurement performance at the range of low-frequency.

Key concepts: Hydrophone, Cavitation, Acoustics, Noise (video), Propeller, Water tunnel, Vibration, Flow (mathematics)

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