• Title/Summary/Keyword: 피스톤 음원

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Calculation of Mutual Radiation Impedance for Piston Sources with Spherical Type Baffle (구형 배플을 가진 피스톤 음원간의 상호 방사임피던스 계산)

  • Park Soon-Jong;Kim Moo-Joon;Kim Chun-Duck
    • Proceedings of the Acoustical Society of Korea Conference
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    • spring
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    • pp.439-442
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    • 2002
  • 구형 배플을 가진 피스톤 음원에 대한 방사임피던스 특성을 유한요소법과 하이브리드형 무한요소법을 사용하여 수치해석하였다. 강체 구형 배플에 있어서 피스톤 음원의 방사면 크기에 따른 자기방사임피던스 변화와 피스톤 음원간의 상호방사임피던스 변화를 고찰하였다. 방사면의 크기에 따라 자기방사임피던스 변화 및 음원간의 상호방사임피던스 변화를 검토한 결과 알려진 해석해와 일치하였다. 또한, 비강체 구형 배플의 특성 임피던스 변화에 따른 자기방사임피던스 및 음원간의 상호방사임피던스 특성 변화를 고찰하였다.

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Calculation of Radiation Impedance for Piston Sources on a Spherical Baffle (구형 배플상의 피스톤 음원에 대한 방사임피던스 계산)

  • 박순종;김무준;김천덕
    • The Journal of the Acoustical Society of Korea
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    • v.22 no.1
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    • pp.54-60
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    • 2003
  • The characteristics of radiation impedance for piston source on a spherical baffle are analyzed by algorithms which consists of Finite Element Method (FEM) and Hybrid type Infinite Element Method (HIEM). The results of self-radiation impedance for radiation angle and mutual radiation impedance between piston sources coincided with other reports on the spherical rigid baffle. For the spherical non-rigid baffles, the variations of self-radiation impedance and mutual-radiation impedance are identified. Therefore, these results can be applied to design and radiation characteristics analysis of acoustic transducers.

An Analysis of the Acoustical Source Characteristics in the Time-varying Fluid Machines (유체기계 덕트 내 시변 음원의 음향 특성에 관한 연구)

  • 장승호;이준신;이정권
    • The Journal of the Acoustical Society of Korea
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    • v.22 no.2
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    • pp.104-112
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    • 2003
  • The in-duct acoustical sources of fluid machines are often characterized by the source impedance and strength using the linear time-invariant model. However, negative resistances, which are physically unreasonable, have been found throughout various measurements of the source properties in IC-engines and compressors. In this paper, the effects of the time-varying nature of fluid machines on the source characteristics are studied analytically. For this purpose, the simple fluid machine consisting of a reciprocating piston and an exhaust is considered as representing a typical periodic, time-varying system and the equivalent circuits are analyzed. Simulated measurements using the analytic solutions show that the time-varying nature in the actual sources is one of the main causes of the negative source resistances. It is also found that, for the small magnitude of the time-varying component, the source radiates large acoustic power if the piston operates at twice the natural frequency of the static system. or integral submultiples of that rate.

Calculation of Radiation Impedance for Rectangular Piston Vibrators with Finite Baffle (유한배플의 영향을 고려한 정방형 진동면의 방사임피던스계산)

  • 김무준;김천덕;하강열
    • The Journal of the Acoustical Society of Korea
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    • v.19 no.7
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    • pp.3-6
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    • 2000
  • Because the generally reported radiation impedance has been calculated for vibrating surface with infinite baffle, the results have difficulties to apply for design of the real transducers with finite baffle. In this paper, with assuming a vibrating surface as a set of small point sources, a new calculation method for the vibrating surface with finite baffle is suggested by considering the effect of finite baffle on the source strength of each point source. As an example, the variation of self-radiation impedance for rectangular vibrating surface is calculated according to the size of baffle. The results show that the suggested method is useful.

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Analysis of flow speed distribution in the acoustic streaming generated by two piston sources (두 개의 피스톤음원으로부터 발생된 음향유동의 유속분포 해석)

  • Kim, Jungsoon;Jung, Jihee;Kim, Moojoon
    • The Journal of the Acoustical Society of Korea
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    • v.39 no.5
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    • pp.400-405
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    • 2020
  • To analyze the flow distribution formed by multiple acoustic sources, the distribution of acoustic streaming speed caused by an ultrasonic transducer composed of two identical piezoelectric vibrators was examined for various angles between the sound sources. In order to measure the distribution of the speed along the acoustic axis of the transducer, a simple measurement method using a droplet indicator having density similar to that of water is suggested. The simulation results calculated by a numerical method and experimental results showed a similar tendency, and the change of flow speed distribution with the intersection angle between acoustic beams radiated from two acoustic sources was analyzed.