• Title/Summary/Keyword: acoustical study

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HIGH SPEED TRAIN NOISE ABATMENT : IMPORTANT PARAMETERS AND CASE STUDY

  • Clairbois, J.P.;Houtave, P.;Weyers, E.;Trefois, V.
    • Proceedings of the Acoustical Society of Korea Conference
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    • 1994.06a
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    • pp.722-727
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    • 1994
  • In two previous papers [1], [2], we presented the validity of a method that calculated the Leq values along High Speed Train (TGV in french) lines from the level/time evolution of moving trains. Tanks to this method, it is now possible to compute specific time-related effects such as interactions between train bodies and close obstacles. This paper lists important parameters to be considered within TGV studies and presents the various levels of study, starting from the research of the best traject (extensive studies), passing through noise impact studies (intensive studies) of the chosen traject to the dimensionning of antinoise devices (final design), and all this to guarantee precise respect of noise criteria. A theoretical comparison study conducted on about 80 different types of antinoise devices including earthberms and noise barriers of different forms, dimensions and materials is also presented. At last a "final design" study using all benefits of the method (full 3D and time representation) is presented.presented.

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Effect of Demographic and Attitudinal Factors on Annoyance Responses in the Vicinity of Kimpo Airport in Seoul, Korea (김포공항 주변 거주민의 소음에 대한 성가심(annoyance) 반응에 영향을 미치는 변수에 관한 연구)

  • Son, Jin-Hee;Oh, Seung-Hwan;Chang, Seo-Il;Lee, Kun
    • Survey Research
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    • v.11 no.2
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    • pp.29-44
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    • 2010
  • The aim of this study was to determine principal non-acoustical factors for noise annoyance in the vicinity of Kimpo Airport in Seoul, Korea. Noise annoyance was estimated using self-reported annoyance scale. We have conducted a social survey aiming to identify the main sound sources, evaluate the annoyance and analyse the main effects of noise on people. Acoustical and non-acoustical variables are expected to greatly affect annoyance responses. This study divided acoustical variables into aircraft, road traffic and neighboring noises, and non-acoustical variables into demographic, situational and attitudinal variables. The study performed multiple regression analysis to determine the influences each variable has on annoyance responses. Acoustical variables affect noise annoyance to aircraft and neighboring noise except road traffic noise. For road traffic and neighboring noise annoyance was affected by non-acoustical variable, insulation by housing type. For aircraft noise, main noise source of this area, annoyance was affected by acoustical variable and some non-acoustical variables, mainly exposure time.

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A Study on the Defect length Measurement of Titanium Weld Zone Considering Acoustical Anisotropy (음향 이방성을 고려한 티타늄 용접부의 결함길이 측정에 관한 연구)

  • Park, Hee-Dong;Yun, In-Sik;Yi, Won
    • Journal of the Korean Society for Precision Engineering
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    • v.28 no.9
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    • pp.1070-1077
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    • 2011
  • This study intends to assess the defect in the weld zone of titanium grade 2 plate in terms of acoustical anisotropy based on the angle beam method. Depending on the rolling direction, the ratio of wave velocity was found to be 1.08 and the difference in the angle of refraction was more than seven degrees, confirming the presence of acoustical anisotropy. Thus for measuring the length of defect in the weld zone of the titanium plate (thickness of 10mm), the distance amplitude characteristics curves of titanium, TDACC-R and TDACC-T were constructed for the measurements in consideration of the acoustical anisotropy on CRT of the ultrasonic testing equipment. As a result, when the distance amplitude characteristics curve corresponds to the rolling direction, the length of defect was close to the actual measurement within 1mm and when different, the difference was found to be over 4mm. It was affirmed that the acoustical anisotropy should be taken into consideration when measuring the length of defects in the weld zone of the titanium plate with the presence of acoustical anisotropy.

An Acoustical Study of English Word Stress Produced by Americans and Koreans

  • Yang, Byung-Gon
    • Speech Sciences
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    • v.9 no.1
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    • pp.77-88
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    • 2002
  • Acoustical correlates of stress can be classified as duration, intensity and fundamental frequency. This study examined the acoustical differences in the first two syllables of stressed English words produced by ten American and Korean speakers. The Korean subjects scored very high on the TOEFL. They read at a normal speed a fable from which the acoustical parameters of eight words were analyzed. In order to make the data comparison meaningful, each parameter was collected at 100 dynamic time points proportional to the total duration of the two syllables. Then the ratio of the parameter sum of the first rime to that of the second rime was calculated to determine the relative prominence of the syllables. Results showed that the durations of the first two syllables were almost comparable between the Americans and Koreans. However, statistically significant differences showed up in the diphthong pronunciations and in the words with the second syllable stressed. Also, remarkably high r-squared values were found between pairs of the three acoustical parameters, which suggests that either one or a combination of two or more parameters may account for the prominence of a syllable within a word.

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Effect of Acoustical Excitation and Flame Stabilizer on a Diffusion Flame Characteristics (음향가진과 보염기형상이 확산화염의 특성에 미치는 영향)

  • Jeon, C.H.;Chang, Y.J.
    • Journal of the Korean Society of Combustion
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    • v.3 no.1
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    • pp.1-10
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    • 1998
  • Lots of techniques are adopted for a flame stabilization and a high-load combustion. But the techniques being used were passive control method which have to change combustor shape like pilot flame, flame stabilizer, pressure profile, etc. Active control method which is not necessary to transform its shape is employed. Acoustical excitation is broadly used for its convenience in changing frequency and intensity. Both acoustical excitation and flame stabilizers were adopted to study their relationship. So, we investigated flammability limits. Flame visualization. And mean temperature in the condition of various frequencies, intensities, and flame stabilizers. As a consequence, flammability limit were advanced in acoustically excited flame at some frequencies. Coherent structure was extended to the downstream region through acoustical excitation and a size of vortice was curtailed. Also width of recirculation zone was magnified. In addition, Effects of acoustical excitation was stood out at 25mm flame stabilizer rather than another ones.

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A study on the acoustical performance of the anechoic water tank at the Sung Kyun Kwan University. (성균관대학교 무반향수조의 음향특성)

  • 이병수
    • Proceedings of the Acoustical Society of Korea Conference
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    • 1987.11a
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    • pp.31-33
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    • 1987
  • 무반향수조를 제작하기 위하여 내벽흡음물질과 그 형태에 대해 연구고찰을 하였으며, 제작된 수조의 음향특성을 반사손실과 음압역비례법칙 확인실험을 통하여 분석, 고찰하였다. 제작된 무반향수조의 임계진동수는 15 kHz 임을 알 수 있었다.

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A study on the acoustical-design for PANSORI hall (한국창악공연장의 음향설계연구)

  • 최석주;박병전
    • The Journal of the Acoustical Society of Korea
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    • v.3 no.2
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    • pp.3-12
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    • 1984
  • This paper is to suggest the optimum structure and the rating scale of PANSORI hall. The method of this study is as follows. 1. Consideration for the characteristics of OPANSORI and Beranek's music & acoustic theory. 2. To take advice from the expert. 3. The experiment and evaluation of a model. 4. The structure of PANSORI hall and the study of the availability in Beranek's rating scale of orchestra and opera. 5. The establishment of the rating scale in PANSORI hall. 6. The evaluation of the forms of performance in each hall. The result of this study, the proper hall in the performance of PANSORI is, 1. The initial time delay gap less than 25ms. 2. The reverberation time of the extents of 1.2 seconds. 3. The proper average bass ratio of 1.25 extents. 4. The distance from performers to audience is within 30 meters. 5. THE VOLUME OF HALL IS 450-7400 ㎥ extents. 6. It should be designed not to be a acoustical disturbancenoise, echo, and the unbalance of sound pressure level, etc.

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