• 제목/요약/키워드: acoustic field analysis

검색결과 306건 처리시간 0.042초

예혼합실을 갖는 연소-노즐 시스템의 음향장 해석 (Acoustic Field Analysis of a Combustor-nozzle System with a Premixing Chamber)

  • 윤명곤;김진아;김대식
    • 한국추진공학회지
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    • 제21권5호
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    • pp.46-53
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    • 2017
  • 본 논문은 "예혼합실+노즐+연소실"의 3단으로 구성된 예혼합 가스터빈 연소기의 열음향모델을 제시한다. 음향장의 동적특성은 화염섭동을 입력으로 화염면에서의 속도를 출력으로 하는 음향전달함수로 표현되었다. 음향전달함수의 극점들을 분석함으로서 음향장의 공진주파수는 각 단 사이의 면적비, 그리고 음향파가 각 단을 왕복 운동하는 3개 주파수들의 조합으로 주어짐을 보였다. 극점을 나타내는 함수의 형태를 분석하여 3단 연소기의 여러 파라미터가 변함에 따라서 공진주파수가 어떻게 변하는가에 대하여 해석적으로 분석하였고 문헌의 실험결과와 일치함을 확인하였다.

Development of indirect EFBEM for radiating noise analysis including underwater problems

  • Kwon, Hyun-Wung;Hong, Suk-Yoon;Song, Jee-Hun
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제5권3호
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    • pp.392-403
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    • 2013
  • For the analysis of radiating noise problems in medium-to-high frequency ranges, the Energy Flow Boundary Element Method (EFBEM) was developed. EFBEM is the analysis technique that applies the Boundary Element Method (BEM) to Energy Flow Analysis (EFA). The fundamental solutions representing spherical wave property for radiating noise problems in open field and considering the free surface effect in underwater are developed. Also the directivity factor is developed to express wave's directivity patterns in medium-to-high frequency ranges. Indirect EFBEM by using fundamental solutions and fictitious source was applied to open field and underwater noise problems successfully. Through numerical applications, the acoustic energy density distributions due to vibration of a simple plate model and a sphere model were compared with those of commercial code, and the comparison showed good agreement in the level and pattern of the energy density distributions.

판토그라프 주변의 유동 및 소음 특성에 관한 연구 (A Study on Aerodynamic and Aeroacoustic Characteristics around Pantograph)

  • 유승원;민옥기;박춘수;정흥채
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2000년도 춘계학술대회 논문집
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    • pp.529-536
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    • 2000
  • This paper describes the analysis of aerodynamics and the prediction of airflow induced noise around simplified pantograph. First, computational fluid dynamics (CFD) is conducted far several model to evaluate linear/nonlinear flow field characteristics due to high speed flow and the CFD results support the computational aeroacoustics. The accurate prediction of the aeroacoustic analysis is necessary for designers to control and reduce the airflow induced noise. We adopt the acoustic analogy based on Ffowcs Williams- Hawkings (FW-H) equation and predict aeroacoustic noise.

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파수-주파수 분석을 통한 고압 배관 내 수축 확장 노즐의 유동 소음원에 대한 수치적 연구 (Numerical investigation into flow noise source of a convergent-divergent nozzle in high pressure pipe system using wavenumber-frequency analysis)

  • 구가람;이송준;김극수;정철웅
    • 한국음향학회지
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    • 제36권5호
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    • pp.314-320
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    • 2017
  • 일반적으로 감압밸브는 고압 가스에 의한 배관 파손을 방지하기 위해 설치된다. 그러나 감압 밸브를 지나면서 발생하는 급격한 압력 저하는 음향파의 형태로 전파되는 큰 음향 에너지를 발생 시키며, 하류 방향으로 전파되면서 배관의 벽면을 진동시키는 가진원으로 작용하여 배관의 파손을 유발한다. 따라서, 본 연구에서는 단순 수축-확장 배관을 대상으로 LES(Large-Eddy Simulation)기법과 파수-주파수 분석을 통해 유동장 내 비압축성 압력섭동과 압축성 압력 섭동을 분리하고, 밸브 유동에 의한 내부 유동소음을 예측하였다. 수치해석의 수렴성을 향상시키기 위해 먼저 정상상태 Reynolds-Averaged Navier-Stokes 방정식을 해석하여, 고정확도의 비정상 LES해석의 초기 값으로 활용하였으며, 비정상 유동장 결과로부터 파수-주파수 분석을 실시하였다. 파수-주파수 분석을 통해 비압축성 압력섭동과 압축성 압력섭동을 분리하였으며, 이를 통해 배관 내 음향유기진동에 의한 소음원 정보를 정확히 제공할 수 있음을 확인하였다.

수중익형 주변 유동장에서의 공동현상과 유동소음에 대한 수치적 연구 (Numerical Investigation of Cavitation Flow Around Hydrofoil and Its Flow Noise)

  • 김상현;정철웅;박원규;설한신
    • 한국소음진동공학회논문집
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    • 제26권2호
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    • pp.141-147
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    • 2016
  • Underwater cavitation is one of the most important issues because it causes not only vibration and erosion of submerged bodies but also significant flow noise problems. In this paper, flow noise due to cavitation flows around the NACA66 MOD hydrofoil is numerically investigated. The cavitation flow simulation is conducted using the Reynolds-Averaged Navier-Stokes equations based on finite difference methods. To capture the cavitation phenomena accurately and effectively, the homogeneous mixture model with the Merkle's cavitation model is applied. The predicted results are compared with available experimental data in terms of pressure coefficients and volume fraction, which confirms the validity of numerical results. Based on flow field analysis results, hydro-acoustic noise field due to the cavitation flow is predicted using the Ffowcs-Williams and Hawkings equation derived from the Lighthill's acoustic analogy. The typical lift dipole propagation patterns are identified.

경계요소 해석과 진동 실험을 이용한 단순 평판의 방사 음향 예측 (Estimation of sound radiation for a flat plate by using BEM and vibration experiment)

  • 김관주;김정태;최승권
    • 소음진동
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    • 제10권5호
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    • pp.843-848
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    • 2000
  • BEA(Boundary Element Analysis) based on Kirchhoff-Helmholtz integral equation is widely used in the prediction of sound radiation problems of vibrating structures. Accurate estimation of sound pressure distribution by BEA can be [possible if and only if dynamic behavior of the relating structure was described correctly. Another plausible method of sound radiation phenomena could be the NAH(Nearfield Acoustic Holography) method. NAH also based on the identical governing equation with BEA could be one of the best acoustic imaging schemes but it has disadvantages of the complexity of measurement and of the need of large amount of measuring points. In this paper, modal expansion method is presented for taking accurate dynamic data of the structures efficiently. This method makes use of vibration principle an arbitrary dynamic behavior of the structure is described by the summation of that structures mode shapes which can be calculated by FEA easily and accurately. Sound pressure field from a vibration flat plate is calculated using the combination of vibration signal on that flat plate from experiment, and of the natural mode shapes form FEA. When sound pressure field from vibration signal is calculated the importance of the phase information was emphasized.

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선체진동신호를 이용한 3차원 수중방사소음 패턴 산출에 대한 수치해석 연구 (A Numerical Analysis Study on the Estimation of the 3D Underwater Radiated Noise Pattern using the Hull Vibration Signals)

  • 이종주;강명환;한승진;배수룡;김재호;정우진
    • 한국소음진동공학회논문집
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    • 제24권10호
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    • pp.770-779
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    • 2014
  • In this study, a numerical estimation method for 3D underwater radiated noise pattern using hull vibration and total acoustic power of the vibrating structure in the far-field is proposed. The underwater radiated noise pattern is known to be predicted using the vibration signals and radiation efficiency of each surface patch. But it is very difficult to know radiation efficiency of each surface patch which is one of important factors to calculate the 3D underwater radiated noise pattern. Instead of using radiation efficiency of each patch, the underwater radiated noise level is modified with the total acoustic power of the vibrating structure. The suggested estimation method for underwater radiated noise pattern is discussed with numerical model.

경계배치법에 의한 근거리 음장 해석 기법 연구; 가중치를 갖는 선배열 음원의 최적 측정점 개수의 결정 (Study on Sound Field Analysis in Near-Field using Boundary Collocation Method; Decision of Optimum Points of Measurement for Line Array Sound Source with Weighting Value)

  • 김원호
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2000년도 춘계학술대회논문집
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    • pp.1752-1761
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    • 2000
  • This paper describes the far-field estimation using the near-field measurement data. Measurement in far-field region gives us the acoustical characteristics of the source but in general measurement is made in near-field such as acoustic water tank or anechoic chamber, so far-field acoustical characteristics of the source should be predicted from near-field data. In this case, the number of measurement points in the near field which relates to the accuracy of the predicted field and the amount of data processing, should be optimized. Existing papers say that measurement points is proportional to kL and depends on geometry and directivity of the source. But they do not give us any definite criterion for the required number of measurement points. Boundary Collocation Method which is one of the far-field prediction methods, is analyzed based on Helmholtz integral equation and Green function and it has been found that the number of measurement points is optimized as 0.54kL which is about one half of the existing results.

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유동안정성 및 유동소음을 고려한 팬터그래프 팬헤드 단면의 강건설계 (Robust Design of Pantograph Panhead Sections Considering Aerodynamic Stability and Noise)

  • 조운기;이종수
    • 한국소음진동공학회논문집
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    • 제13권2호
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    • pp.83-91
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    • 2003
  • Pantograph design Process must be considered in terms of stability of aerodynamics and reduction of aeroacoustics. Furthermore pantograph needs to be insensible to severe circumstance condition like typhoon, tunnel, a change of season. In this paper, robust design of panhead sections is conducted based on the Taguchi's design of experiment method. In the aeroacoustic noise analysis, an acoustic analogy using the Ffowcs Williams and Hawkings(FW-H) equation is used to calculate the flow induced sound pressure level in aeroacoustics. From the near-field CFD analysis data, the far-field noise is predicted at the positions of 25 m away from Pantograph. Based on aerodynamic(CFD) and aeroacoustic(FW-H) analysis data, the optimal sizing and Positioning of panhead elements are determined using robust design optimization method. Design parameters such as thickness, length and radius are controllable factors, while outdoor air temperature and atmospheric pressure are considered as uncontrollable factors in the context of Taguchi's approach. A number of CFD simulation and aeroacoustic analysis are performed based on orthogonal arrays. In this paper, two-step optimization method is used as a parameter design procedure. It is executed using signal to noise(S/N) ratio and analysis of means(ANOM) method. So Thus, an optimal level of design parameters Is extracted to minimize the disconnection ration between contact strips and catenary system, and reduce the far-field aeroacoustic noise.

유동안정성 및 유동소음을 고려한 판토그라프 팬헤드 단면의 강건설계 (Robust Design of Pantograph Panhead Sections Considering Aerodynamic Stability and Noise)

  • 조운기;이종수
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2001년도 추계학술대회논문집 II
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    • pp.1235-1241
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    • 2001
  • Pantograph design process must be considered in terms of stability of aerodynamics and reduction of aeroacoustics. Furthermore Pantograph needs to be insensible to severe circumstance condition like typhoon, tunnel, a change of season. In this paper, robust design of panhead sections is conducted based on the Taguchi's design of experiment method. In the aeroacoustic noise analysis, an acoustic analogy using the Ffowcs Williams and Hawkings (FW-H) equation is used to calculate the flow induced sound pressure level. From the near-field CFD analysis data, the far-field noise is predicted at the positions of 25m away from panhead contact strips. Based on aerodynamic (CFD) and aeroacoustic (FW-H) analysis data, the optimal sizing and positioning ofpanhead elements are determined using robust design optimization method. Design parameters such as thickness, length and radius are controllable factors, while outdoor air temperature and atmospheric pressure are considered as uncontrollable factors in the context of Taguchi's approach. A number of CFD simulation and aeroacoustic analysis are performed based on orthogonal arrays. Using a parameter design procedure associated with signal-to-noise (SIN) ratio and sensitivity analysis, an optimal level of design parameters are extracted to minimize the disconnection ratio between contact strips and catenary system, and reduce the far-field aeroacoustic noise.

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