• Title/Summary/Keyword: 발파진동.소음

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The Effect of the Vibration, Air Blast and Bould Size of Blasting by means of Air Tube (에어 튜브(Air Tube)에 의한 발파의 진동, 폭음 및 전석 제어 영향 연구)

  • 강대우
    • Explosives and Blasting
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    • v.18 no.3
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    • pp.59-66
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    • 2000
  • "Air Tube" 발파공법에 대한 연구는 기존의 일반 발파 방법의 단점을 크게 보완하여, 이 에 따른 진동, 폭음(소음), 전석 발생 등 이러한 문제점들을 해결하기 위해 고안된 것으로 기존 Air Decking 기술을 응용한 것이다. 본 연구는 폭약의 하부, 폭약과 폭약사이, 폭약의 상부와 전색 사이에 일정 길이의 "Air Tube"를 장착시켜 폭약의 투사면적을 증가시키고, 진동의 감쇠와 전석이 감소되어 특히 도심지에서 발생하는 민원의 대상이 될 수 있는 진동 및 폭음도 크게 줄일 수 있는 효과적인 발파 기술이다.일 수 있는 효과적인 발파 기술이다.

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A Case Study on Blasting at the Tunnel Excavation in an Adjacent Section of a Subway Station (지하철역 인접구간에서의 터널 발파굴착 사례)

  • Lee, Hyo;Kim, Jeoung-Hwan;Hwang, Nam-Sun
    • Explosives and Blasting
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    • v.40 no.2
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    • pp.25-34
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    • 2022
  • Recently, there has been an increasing number of cases of improving constructability by using electronic detonators with precise delay time in tunnel blasting sites. This case is a case of conducting test blasting using with non-electric detonator and electronic detonator at the site of 『Seoul Metropolitan Area Express Railroad Route A Private Investment Project Section 00』 that requires careful management of vibration and noise. Although this site was designed with a non-electric detonator, it was attempted to improve the advance rate and control vibration and noise by mixing the non-electric detonator and the electronic detonator due to the decrease in the advance rate. As a result of the blasting, the target value was achieved with an advance rate of about 85% and a maximum measured value of vibration and noise is 0.215cm/sec and 73.22dB(A) which were measured below regulatory standards. As blasting works in downtown areas, it is necessary to designate measurement and management objects to continuously manage vibration and noise.

Transformation of Measured Blasting Sound Data to Sound Level by Digital Filter (디지털 필터를 이용한 소음의 변환 연구)

  • Kim, Yong-Kuk;Kim, Sik;Lee, Sang-Eun;Yang, Hyung-Sik
    • Explosives and Blasting
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    • v.18 no.3
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    • pp.77-82
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    • 2000
  • 현재까지 폭풍압은 음압과 음압레벨로 측정되어 왔다. 그러나 발파 소음에 의한 인체의 반응이나 가축의 피해 산정 등의 문제에서는 현행 소음진동규제법에서 명시하는 바, 인체의 청감보정이 이루어진 소음레벨을 사용하므로 변환문제가 발생한다. 본 연구에서는 발파 진동 계측기기로 계측한 데이터를 디지털 필터로 처리하여, 소음레벨로 변환하는 프로그램을 개발하고, 이를 실제 발파계측결과에 적용하였다. 그 결과, 국내에서 널리 사용되고 있는 Instantel Inc,의 Blast1ate series에서 계측된 소음데이터가 정밀도 높은 소음레벨로 변환이 가능하였다. 비슷한 정밀도로 계측결과를 ASCII file로 송출할 수 있는 기종에서 계측된 자료도 같은 정도로 처리할 수 있을 것으로 판정되었다.

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A Study on the Excavation Method Near Fish Farms and Livestock (양만장 및 가축사육시설 인접지역 암굴착공법 검토에 관한 연구)

  • Lim, Dae-Kyu;Shin, Young-Cheol;Jun, Yang-Bae
    • Explosives and Blasting
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    • v.31 no.1
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    • pp.23-32
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    • 2013
  • Construction vibration such as explosive blast, hydraulic breaker, vibratory roller, pile driving noise and so on, injuries in areas around the construction sites. In particular, underwater sound caused by ground vibration is propagation such as structure borne noise. Vibration and underwater sound due to construction activities may cause injury to river, sea or land fish farms near construction sites. The purpose of present study is to measure the sound pressure level and frequency analysis of the underwater noise generated by ground vibration(Blasting, hydraulic crawler drill, hydraulic breaker, vibratory roller). Underwater noise were monitoring by a hydrophone (TC 4013) and recorded, analysis were made using a by software (Prosig).

A Study on the Efficiency of Horizontal Direction Deck-charge Blasting Method Using Electronic Detonator (전자뇌관을 이용한 수평방향 데크차지 발파공법의 효율성검토 연구)

  • Yoon, Ji-Sun;Hahn, Suk-Ju;Bae, Sang-Hun
    • Journal of the Korean Geotechnical Society
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    • v.29 no.4
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    • pp.5-11
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    • 2013
  • In close to downtown construction, the main problem is complaints caused by blasting vibration and noise. To reduce blasting vibration and noise, deck-charge blasting method using electronic detonator can be more secure because there is no cut-off problem. And in this method it is possible to blast in horizontal direction. In this study, the efficiency of horizontal direction deck-charge blasting method using electronic detonator is compared to that of the existing blasting method. And the possibility of applying the construction site is evaluated. As a result, the reduction of blasting vibration, noise and secondary breaking has been determined, as well as large-scale blasting in the vibration criterion can be regulated by the overall increase in blasting efficiency.

A Study on the Effect of Blasting Vibration on the road (터널발파 진동이 도로상부에 미치는 영향 분석)

  • Kim, Nagyoung
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2014.10a
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    • pp.821-822
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    • 2014
  • When performing the tunnel excavation blasting, the lower road structure can cause the damage of the structure caused by blasting vibration. In this case the existing structurel meet all of the static and the dynamic stability. But in the domestic management of building structures is presented vibration and is the only criteria, and the criteria for major civil engineering structures insufficient research situation. This study examined the influence of the road structure according to the blast vibration by utilizing the numerical analysis.

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A Case Study on the Prediction of Underwater Sound by Measuring Ground Vibration (지반진동 측정을 통한 수중소음 예측 및 관리 적용사례)

  • Lim, Dae-Kyu;Cho, Kwang-Hyun;Jun, Yang-Bae
    • Explosives and Blasting
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    • v.28 no.2
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    • pp.86-98
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    • 2010
  • As the quality of life is being upgraded, the public complaints about noise and vibration from construction sites are growing. Despite the disputes over the blasting damage on aquatic lives in river, ocean, and aquarium near construction sites tend to increase, most of existing solutions or regulations on the damages caused by blasting are established for the damages on land. Although the estimated amount of damage is up to several millions of USD, there is no guideline for resolving the dispute related to the underwater vibration. This paper presents an example where the public grievance about the underwater noise was successfully resolved by elucidating the characteristics of underwater sound, deducing the correlations between ground vibration and underwater sound during blast, and predicting the underwater sound level during blasting from the ground vibration measured on the ground near an aquarium basin.

A Study on the Design of PLHBM (선대구경 수평보링 발파공법(PLHBM)의 설계 연구)

  • Beak, Jong-Hyun;Beak, Sang-Hyun;Han, Dong-Hun;Won, Ah-Ram;Kim, Chang-Seop
    • Explosives and Blasting
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    • v.30 no.2
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    • pp.66-76
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    • 2012
  • Blasting technology aims to maximize digging efficiency as well as minimize vibration and noise. So, it is key point of blasting technology to raise blasting effect as much as possible and reduce vibration and noise and the design of PLHBM that is the tunnel blasting method having such merit was studied in this paper. PLHBM has the excellent blasting efficiency as it drills the empty hole with high caliber of 250~1,000mm at centre cut, contributes to blasting vibration reduction effect much and can be usefully applied to tunnel blasting sites. So it is judged that it enables the development of tunnel blasting method to be advanced one more step by studying and suggesting the design method of PLHBM.

Study on the Acceptance Level for Damage due to Underwater Noise from the Case Study of Field Measurement at Marphysa sanguinea Farm (바위갯지렁이 양식장 인접지역 계측 사례를 포함한 수중소음 피해인정기준에서 배경소음과의 차에 대한 문제점)

  • Choi, Tae-Hong;Kim, Jae-Woong;Ko, Chin-Surk
    • Explosives and Blasting
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    • v.35 no.1
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    • pp.34-42
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    • 2017
  • It is very difficult to clearly define the damages caused by blasting-induced noise and vibration, because the damages depend on, besides the level of noise and vibration, the response of the object, environmental conditions, subjective feeling, and mental condition. Especially, it is more difficult when the fish is concerned, because that experimental approach is not easy and that we lack of the reasonable criterion for the acceptance level of noise and vibration. In Korea, the acceptance level for damage due to underwater noise is 140 dB re $1{\mu}Pa$, and the difference from the underwater background sound level is defined as more than 20 dB re $1{\mu}Pa$. It is however, appropriate for continuous noise not for transient sound. The authors compared the relationship between vibration velocity and underwater noise measured from the test blasting around Marphysa sanguinea farm. This paper presents the measurement results and suggestions the acceptance level for damage due to underwater noise from explosive blasting.

Environmental Approach to Blasting Effect on the Surrounding Area when the Mine Blasting (광산 발파 시 인근지역에 미치는 발파영향에 대한 환경적 접근)

  • Jeong, Beonghun;Lee, Seungho
    • Journal of the Korean GEO-environmental Society
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    • v.16 no.12
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    • pp.5-12
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    • 2015
  • Since blasting noise is impact noise, it will give a sudden shock to the human. In the case, such as the blast vibration, it has given aging buildings and livestock great damage to move the vibration along ground in nearby regions. In this study, the influence of the blasting generated during excavation was analyzed for effects on regional. A couple of field and laboratory surveys about geological were carried out to figure out the geological ratio in the study-performed area. Blast vibration noise was compared to the domestic and abroad case studies and each of the institutions permissible standards established the most appropriate criteria in site condition. The vibration velocity of blasting vibration exploits the values which were measured from test blasting on the ground in order to examine blasting effect. Considering the blasting point as the shortest distance from safety facilities (farms, private houses, etc.), the examination of the influence range, which was derived from the vibration velocity of blasting vibration, was performed to figure out how the point affected the safety facilities. Three-dimensional numerical analysis was performed a time history analysis in order to analyze the behavior of the structure for a dynamic blast load, which was determined in three directions of the blast vibration value. The results of three-dimensional numerical analysis and the blasting effect of blasting vibration estimation equation blasting vibration of impact circle with accompanying test blasting were compared. And the analysis confirmed similar results figures.