• Title/Summary/Keyword: 소음측정

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A Study on the Noise Measurement Method of Wind Power Facilities (풍력발전시설 소음 측정 방법에 대한 고찰)

  • YoungJin Lee;Jongtae Lee;Hyunkyung Min;Sunyong Kwon;Byungchan Lee
    • Journal of Environmental Impact Assessment
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    • v.32 no.5
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    • pp.279-290
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    • 2023
  • Recently, as wind farms using wind power as new and renewable energy have been installed nationwide, noise problems have emerged. The environmental impact assessment and post-environmental impact assessment also require the measurement of background noise and low-frequency noise for wind farms, especially by applying the living noise measurement method according to the low-frequency noise management guidelines issued by the Ministry of Environment in 2018. Due to the nature of wind power generators that generate loud noise in high winds, noise measurement should be made at high winds, but when wind speed increases, wind noise increases and living noise and low-frequency noise are not properly evaluated. Therefore, the type of noise generated by wind power generators was confirmed, and matters to be considered when measuring wind noise such as wind noise were confirmed.

A study of the measurement systems implementation for the interior impulse noise (실내 충격소음 측정시스템 구현에 관한 연구)

  • Song, Kee-Hyeok;Chung, Sung-Hak
    • Journal of the Korea Society of Computer and Information
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    • v.19 no.6
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    • pp.93-100
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    • 2014
  • The objective of this study is to propose the measurement system implementation method for the evaluation and measurement of the indoor-impulsive over 170 dB noise source. For the purpose of measuring impulse noise, design and implementation constructed followed subsystems of the testing center, microphone, ear simulator, head and torso simulator and so on. Measurement systems for the accuracy and reliability of impulse noise are implemented when measuring 3 ways of measurements method by the simultaneous measurement system design. For the accuracy and reliability of three mutually indoor-impulse noise measurements were compared, three kinds of measuring methods in accordance with the peak sound pressure level and octave band. Comparing the results of data, the indoor-impulse noise by analyzing a frequency characteristic was validated in difference for the statistical significance. Result are determined by the influence of the reflected wave. Therefore, the flexible size of the interior test site while interior impulse noise measurement system was constructed. Throughout this system can be affected by parameters that are the impulse noise source and the corresponding frequency-characteristic analysis to determine the spectrum of the reflected wave. And, in the near future, indoor impulse noise measurement systems for acquisition and analysis are utilized in useful data.

A study on the location of microphones in measurement considering the frequency characteristics of elevator noise in households (세대 내 승강기 소음 주파수특성을 고려한 측정 시 마이크로폰 위치에 관한 연구)

  • Min-Woo Kang;Yang-Ki Oh
    • The Journal of the Acoustical Society of Korea
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    • v.42 no.2
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    • pp.124-132
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    • 2023
  • When the building becomes high, the number of households increases and they are adjacent to the elevator. So, frequency of use of elevators will increase. Elevator noise is bound to increase in the future. However, there are currently no legal standards for elevator noise or measurement and evaluation methods that can clearly measure elevator noise in Korea. Although some methods for measuring elevator noise are presented in KS F ISO 16032, this standard is not a standard established for elevator noise. It is a standard that integrates the overall measurement method of building equipment and equipment, and the position of the microphone is selected by the experimenter during measurement. Elevator noise is characterized by a low sound pressure level as the noise in the mid-low frequency band is important. However, even today, complaints from residents about elevator noise are increasing. In this study, the position of the microphone that can most sensitively pick up the elevator noise when measuring the elevator noise was studied. According to the distance from the wall and the height from the floor, a total of 9 microphone positions were measured and analyzed. As a result of the experiment, it was confirmed that the elevator noise has a very high influence in the 63 Hz band. The measured value at the center point was identified as a factor that lowered the overall elevator noise level value.

Analysis of frequency characteristics and evaluation methods of elevator noise (승강기 소음의 주파수 특성 분석 및 평가 방법 고찰)

  • Kang, Min-Woo;Oh, Yang-Ki
    • The Journal of the Acoustical Society of Korea
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    • v.40 no.6
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    • pp.607-614
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    • 2021
  • Research on elevator noise has mainly focused on the cause of its occurrence and measures to reduce it. There is still insufficient research on how to accurately measure and evaluate elevator noise. There is a measurement method established as an international standard for the measurement method, but it is also difficult to apply to high-rise apartments, and there are many cases that do not closely reflect the characteristics of elevator noise. In order to solve this problem, a study was conducted to improve the elevator noise measurement method in the current standard. In this study, the characteristics of elevator noise were closely identified. Through frequency analysis of the elevator noise and other equipment, it was verified that the elevator noise is noise with different characteristics from other equipment. Elevator noise was compared with heavy floor impact noise, which is a representative structural transmission noise, as structural transmission noise. Elevator noise was compared with heavy floor impact noise, which is a representative structural transmission noise, as structural transmission noise. The correlation between bang machine and rubber ball was found to be very high at 0.9 level. As a result, it was verified that the mid-low frequency band of the elevator noise is the main structural transmission noise and cannot be evaluated together with other equipment.

The design of the mobile data processing system for noise measured in a living environment (생활 환경의 소음 측정을 위한 모바일 데이터 처리 시스템의 설계)

  • Choo, Min-ji;Park, Hung-bog;Seo, Jung-hee
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2014.10a
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    • pp.993-995
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    • 2014
  • Typical dwelling pattern of apartment houses in Korea. Because of this the noise of life problem arise, complaints are surging. In real-life, if suffering is unavoidable due to ambient noise, to handle a civil complaint the using a noise meter. At home, it is difficult to measure the noise using professional equipment. So, many uses smartphone application in general. But released existing noise measurement application has different value from the sensor sensitivity for each smartphone model to same situation. The value is lacks precision and this is not considered as having been made by measuring the actual noise purpose. Therefore in this paper, we propose a mobile data processing system for the living environment of noise measurement using a smartphone. Benefits of this study is to improve the accuracy of noise measurements and to find direction of noise to handle complaints.

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특정 실험실 조건에서의 사무실용 낮은 칸막이의 소음감쇠성능 측정방법 KS제정을 위한 ISO 규격내용 분석

  • Yang, Kwan-Seop;Jeong, Seong-Soo;Kim, Sun-Woo
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2006.11a
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    • pp.21-24
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    • 2006
  • 대부분의 사무용 건물은 코아 부분(엘리베이터 홀, 화장실, 계단 등)을 제외하고는 Open 되어 있으며, 필요에 따라 부서간에는 천장 면까지 도달하는 경량벽체를 설치하여 독립된 공간을 구획하고, 부서내부에서는 직원들간의 커뮤니케이션은 용이하게 하는 대신에 최소한의 독립성을 제공하기 위해 낮은 칸막이 등을 설치하고 있다. 그러나 사무실에 사용하는 칸막이 벽체 중 천장 면까지 도달하는 칸막이에 대해서는 KS F 2808(건물 부재의 공기전달음 차단성능 실험실 측정방법)의 측정방법을 이용하여 차음성능을 확인할 수 있으나 낮은 칸막이에 대해서는 소음저감 성능을 측정할 수 있는 측정 방법에 관한 규격이 없다. 따라서 기존에 있는 모든 KS 규격들은 국제표준규격인 ISO와의 부합화가 이루어졌거나 이루어지고 있기 때문에 이러한 정부의 방침에 따라 본 낮은 칸막이에 대한 소음감쇠량 측정규격 또한 ISO규격(ISO 10053(음향- 실험실 조건에서의 사무실 스크린의 소음저감성능 측정방법))을 받아들이기 위해 ISO규격 내용을 검토하였다. 향후 이 규격이 그대로 우리나라 규격으로 제정될 때 나탈 수 있는 문제점을 최소화하기 위해 국내에 있는 반 무향실에서 낮은 칸막이의 실제 소음저감 성능을 실시할 계획이다.

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유도전동기의 자기적 소음에 대한 고찰

  • 황영문
    • 전기의세계
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    • v.25 no.2
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    • pp.40-45
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    • 1976
  • 유도전동기의 고주파진동토오크의 산정법에 대하여는 Morrill, Chang, Puchstein Kimball 및 Veinott씨 등에 의한 불평형공간자속분포의 대칭좌표법 또는 2회전자계법해석으로 많은 연구가 거듭되어 기계정수가 고주파토오크에 미치는 영향의 관계를 풀이하고 있다. 또한 Jordan과 Lax씨에 의하여 편심 및 기계적진동에 따른 전자력파의 분포력 mode수 및 그 주파수를 개발함으로서 소음방지대책에 많은 진전을 보았다. 소음진동측정방법으로는 원래 진동측정이 정밀한 장치에 의존하여야 하며 그 방법 또한 어려운 점이 많아 method of 1-point measurement of electromagnetic-force waves로 처리되어 왔으나 요즈음에는 anechoic chamber와 같은 장치에서의 특별한 조작에 의하여 method of resultant measurement of accoustic noise powers에 의하여 보다 합리적인 소음측정 및 해석이 가능하게 되었다.

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Measurement and Analysis of Automative Wiper Blade Squeal Noise Generation Mechanism (자동차 와이퍼 스퀼 소음의 발생, 측정 및 분석)

  • Min, Dong-Ki;Jeong, Seong-Bin;Yoo, Hong-Hee;Park, Jun-Hong
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2010.10a
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    • pp.598-598
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    • 2010
  • 와이퍼 작동 중에 발생하는 진동소음 중 1000Hz 이상의 스퀼 소음은 발생 메커니즘이 정확하게 알려지지 않았으며 발생하는 조건도 불규칙하다. 이 스퀼 소음의 발생 빈도 및 주파수를 변경하는 설계를 위하여 스퀼 진동 소음의 발생 메커니즘의 원인분석이 우선적으로 이루어져야 한다. 이 논문에서는 자동차 와이퍼 시스템에서 워셔액을 분사하였을 때 발생하는 스퀼 소음을 측정하고 인자 별로 분석하였다. 스퀼 소음이 발생하는 인자들을 마찰계수와 연관이 있는 인자, 기하학적인 인자, 와이퍼의 운동과 관련된 인자들로 나누어 분석하였다. 실제 와이퍼 시스템을 구현하기 위하여 모터와 원판 지지대 등을 이용하였고, 마이크로폰, 레이저 바이브로미터, 노이즈북, 아르테미스를 이용하여 측정 및 분석하였다.

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Study on the Functional Evaluation of Permeable Asphalt Concrete Pavement in Seoul City (서울시 배수성 아스팔트 포장의 기능적 평가 연구)

  • Lee, Sang-Yum;Kim, In-Tae;Mun, Sung-Ho;Kwon, Soo-Ahn
    • International Journal of Highway Engineering
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    • v.14 no.3
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    • pp.33-39
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    • 2012
  • The functional evaluation of constructed permeable pavements was conducted in terms of water permeable performance and noise reduction measurements in Seoul city. The field measurements of noise was based on two methods such as pass-by and novel close proximity(NCPX). The pass-by test and NCPX method are related to noise propagation and tire/pavement interaction noise measurement, respectively. For the water permeable tests, five sections were chosen; furthermore, the measurements were conducted for both of wheel path and non-wheel path area. For the pass-by measurement, three sections were chosen; furthermore, two different locations, which were near measurement point to traffic noise and far measurement point inside park or hosing complex, were selected for each section. Finally, tire/pavement interaction noise measurements were carried out at four locations. The results show that the functional performance of water permeability and noise reduction was well remained within 2 or 3 years after permeable pavement construction.