• Title/Summary/Keyword: Blasting Vibration

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A Study of the Vibration Safety Criterion on the Dynamic Behavior of Buried Pipeline with the Free Ends (양단자유 경계조건을 가진 매설관의 동적거동에서 진동안전 기준에 관한 연구)

  • 이병길;정진호;장봉현;안명석
    • Explosives and Blasting
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    • v.22 no.3
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    • pp.13-26
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    • 2004
  • This work reports results of our study on the dynamic response of buried pipelines depending on their boundary conditions. We have studied behavior of the buried pipelines both along the axial and the transverse direction with a boundary condition of free ends. The buried pipelines are modeled as beams on elastic foundation while the seismic wave as a ground displacement in the form of a sinusoidal wave. The natural frequency, its mode, and the effect of parameters have been interpreted in terms of the free vibration. In order to investigate the response on the earthquake, the resulting frequency and the mode shape obtained from the free vibration have been utilized to derive the mathematical formula for the farced vibration. We have also completed the computer program to simulate the time-displacement graphs of the pipe lines with free ends for both cases of vibrations.

Running Safety Analysis of Railway Vehicle Systems for Ground Vibration (철도 차량의 지반진동에 의한 주행안전성 평가)

  • Choi, Jun-Sung;Jo, Man-Sup;Lee, Jin-Moo
    • Tunnel and Underground Space
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    • v.16 no.4 s.63
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    • pp.288-295
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    • 2006
  • In this study, dynamic behavior of the vehicles is analyzed, while the track is subjected to lateral vibrations due to earthquake and blasting load. A computer program(WERIA, Wheel Rail Interaction Analysis) is used, which can simulate dynamic responses of vehicles subjected to lateral vibrations. The analysis considers two types of vehicles: I.e. power cars of KTX and Busan subway train. It can also consider the interaction with sub-structures such as tracks and soil. The creep force module is considered, and the running safety of railway vehicles subjected to earthquake and blasting loading is studied. Based on the results of this study, the running safety of the vehicles can be confirmed against lateral vibration.

The Subjective Response for Impulsive Sound - Focusing on the Construction Noise - (충격성 소음에 대한 주관적 반응 - 건설공사장 소음을 중심으로 -)

  • Kim, Deuk-Sung;Chun, Hyung-Jun;Chang, Seo-Il
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.18 no.7
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    • pp.746-755
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    • 2008
  • This research presents a laboratory study on subjective response of impulsive sound caused by construction site (breaker and blasting). The sources are sampled from outdoor noise and their levels range from 40 to 75 dBA at the interval of 5 dBA. The noise unit is based on A-weighted sound exposure level(ASEL; $L_{AE}$). To make equal ASEL of listening level, finite impulse response(FIR) filter is applied to the originally sampled source to include the effect of propagation attenuation. Sixty-three subjects, forty-two males and twenty-one female, between 18 and 29 years of age, participated in the experiment. The evaluation method of jury test adopted a semantic difference method(SDM). In the test results for impulsive noise, the subjective response of blasting noise was higher than that of breaker noise. The result of %HA that has been combined responses of the three methods except for pink-noise was executed by regression analysis and was shown as the following equation.: $%HA=746.53/(1+{\exp} (L_{AE}-93.3))+0.34$.

Assessment of Blast-induced Vibration for the Stability of Discontinuous Rock Mass (암반절리를 고려한 발파진동 영향평가)

  • Park, Byung-Ki;Jeon, Seok-Won;Park, Gwang-Jun;Do, Deog-Soo;Kim, Tae-Hoon
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2005.11a
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    • pp.485-492
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    • 2005
  • Since blast-induced vibration may cause serious problem to the rock mass as well as the nearby structures, the prediction of blast-induced vibration and the stability evaluation must be performed before blasting activities. Dynamic analysis has been Increased recently in order to analyze the effect of the blast-induced vibration. Most of the previous studies, however, were based on the continuum analysis unable to consider rock joints which significantly affect the wave propagation and attenuation characteristics. They also adopted pressure curves estimated by theoretical or empirical equations as input detonation load, thus there were very difficult to reflect the characteristics of propagating media. In this study, therefore, we suggested a discontinuum dynamic analysis technique which uses velocity waveform obtained from a test blast as an input detonation load. A distinct element program, UDEC was used to consider the effect of rock joints. In order to verify the validity of proposed method, the test blast was simulated. The predicted results from the proposed method showed a good agreement with the measured vibration data from the test blast Through the dynamic numerical modelling on the planned road tunnel and slope, we evaluated the effect of blast-induced vibration and the stability of rock slope.

Decoupling Effect on the Level of Blasting Vibration (발파진동의 크기에 마치는 디커플링효과의 연구)

  • Kim, Wang-Soo;Lim, Han-Uk
    • Journal of Industrial Technology
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    • v.20 no.A
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    • pp.269-278
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    • 2000
  • The pressure-time profile of the explosion gases can controlled for the use of cartridge explosive with two techniques known as Decoupling and spacing of the charges. Decoupling consists of a space between the explosive column and wall of the blast hole. Four different decoupling index 1.4, 1.8, 2.34, 3.0 are selected in this field study. The level of ground vibrations with each decoupling index was measured and the empirical particle velocity equation from these data was obtained. The condition of new cracks at blast hole are also examined. As the decoupling index is increased, the level of the blast vibration is decreased. But the cracks in rock masses are efficiently formed to remove the broken rock. The vibration constant associated with test sites is given as $K=1564.5(D.L)^{-1.3233}$ in terms of D.I.(decoupling index).

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Blast Design of Hilly Rock Excavation Adjacent to Structures and Facilities (구조물 및 시설물 인접 구릉지의 암반굴착 발파설계)

  • 류창하;선우춘;신희순;정소걸;최병희
    • Tunnel and Underground Space
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    • v.4 no.1
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    • pp.38-46
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    • 1994
  • This paper concerns the design of blasts adjacent to structures and facilities. In order to investigate the site characteristics, measurements of in-situ wave propagation and laboratory tests of rock cores taken from the boreholes were carried out. Effects of rock media and delay intervals on ground vibration levels were identified from over sixty measurements of three times of test blasts. For practical use in the field, an empirical propagation equation was derived so as to reflect the characteristics of rock media and delay effects. Safe limits of vibration level for structures were conservatively established based on various suggested criteria. Safe limits for facilities were adopted so that vibration levels induced by blasting should not exceed the allowable limits specified in the manufacturer's installation condition. Suggested were blast pattern and operation to enhance the rock fracturing and to reduce the ground vibration levels under the restricted conditions.

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The characteristics of blast-vibration in tunnel-blasting and the vibration control by delay-time (터널발파의 진동특성 및 발파시차에 의한 진동제어)

  • 이정인;신일재;윤영재
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 1997.04a
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    • pp.235-240
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    • 1997
  • 터널발파는 벤치발파와 달리 일반적으로 심발발파, 주변공발파, 조절발파를 적용하는 최외곽공 발파로 나눌 수 있는데, 본 연구에서는 심발공법별 터널발파의 진동특성을 자유면의 수를 고려하여 해석하였다. 또한 터널발파의 발파효율에 가장 큰 영향을 미치는 심발발파 발파공들간의 지연지차를 서로 달리하면서 시험발파를 수행하였다. 국내 고속전철 건설현장의 터널발파시 측정한 진동속도의 파형분석결과 1자유면 발파인 심발발파시 발생하는 발파진동이 2자유면 발파인 주변공 발파시 발생하는 발파진동보다 30% 이상 더 크게 나타났고, 조절발파용 화약을 사용한 최외곽공 발파의 경우는 주변공발파보다 20% 정도 작은 진동속도를 나타내었다. 심발공법별 비교에서는 SUPEX-Cut의 경우가 국내에서 가장 널리 사용되는 V-Cut에 비해 20-30% 정도 더 작은 진동속도를 나타내었다. 또한 심발공들을 동시에 발파한 경우와 각 발파공의 시차를 서로 다르게 한 경우의 심발 시험발파 결과를 분석한 결과, 발파공간의 발파시차를 60msec 이상으로 하였을 때, 각 발파공의 발파시 발생한 진동이 서로 중첩되는 것을 방지할 수 있는 것으로 나타났다.

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The Method of Tunnel Blasting for the Vibration Control by Deck Charge and Multiple Cut (다단장약에 의한 V-cut 발파공법의 진동제어효과와 발파효율증대에 관한 연구)

  • 두준기;양형식;김형건;김용국
    • Explosives and Blasting
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    • v.21 no.3
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    • pp.1-10
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    • 2003
  • 터널굴착발파공법의 하나인 V-cut발파공법은 터널굴착기술이 발전되는 과정에서 초기에 개발되어진 기술이나 작업의 간편성과 효율성으로 인하여 많은 터널굴착공사에서 이용되고 있는 발파공법이다. V-cut발파공법은 일자유면 상태에서 V형으로 심발공을 발파하고 심발공에 의해 형성된 자유면을 이용하여 확대공으로 굴착공간을 넓히는 발파 방법이며 심발발파의 굴진장에 의해 단일발파당 굴진장이 결정된다. V-cut발파법이 개발된 이래 V-cut발파의 굴진장을 증대시키기 위한 방법으로 심발발파공의 구속저항을 감소시키기 위해 보조심발공을 발파하여 형성된 자유면에 의해 심발공의 최소저항선거리를 줄여 발파하였으나 심발공의 구속저항이 감소되지 않아 발파효율이 증대되지 않았으며 발파진동 또한 가장 크게 발생하였다. 이와 같은 현상은 최소저항선거리의 감소효과에 대한 발파기술상의 이론에 문제가 있기 때문이다. 본 연구에서는 V-cut발파법의 심발공에 대한 구속저항감소효과가 발현될 수 있는 조건들을 검토하여 최소저항선거리의 감소효과가 발현될 수 있는 조건을 제시 하여 심발공의 발파효율을 증대시키고 발파진동이 적어지는 발파방법을 제안하려 한다.

A Study on the Reduction Effect of Vibration of NPS Blasting Method on Andesite, Granite and Granitic Gneiss (안산암, 화강암, 화강편마암에서의 NPS 발파법의 진동감쇠효과에 관한 연구)

  • 심동수;강대우
    • Explosives and Blasting
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    • v.22 no.2
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    • pp.13-20
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    • 2004
  • 도심지 굴착과 같은 환경적 제약과 사회적 문제가 존재하는 현장에 대하여. 암반제거작업에 있어서 가장 경제적이고 효율적인 발파공법을 적용하기 위해서, 본 연구는 기존의 발파방진기술인 Line Drilling과 Presplitting의 상점을 살리면서, 단점을 보안한 새로운 발파방진 기술인 NPS(New Presplitting)발파법의 효과에 대하여 연구하였다. NPS 발파법의 분석은 안산암과 화강암, 화강편마암의 3종류의 암반을 대상으로 NPS 발파법의 열수를 1열, 2열, 3열, 4열을 적용하여 발파로 인한 진동을 NPS 발파법의 적용전과 후의 발파진동값을 기준으로 NPS 발파법의 전, 후 진동감쇠 효과를 비교하고, 동일 조건을 가정한 경제성을 살펴보았다. 그 결과 NPS 발파법의 3가지 암석에 대한 현장적용 결과 암종에 따른 NPS 발파공법의 진동감쇠효과의 변화보다, NPS 발파법의 적용 pattern에 대한 진동감쇠효과의 변화가 크게 나타났으며 NPS 발파공열이 2열일 때 감쇠범위는 40%∼80%로 가장 효율적으로 나타났으며 3열과 4열의 경우에도 진동감쇠효과는 있으나 그 효율이 크게 향상되지 않을 뿐 아니라 2열에 비하여 경제적으로 불리함을 알 수 있었다. 또한 NPS 발파법은 보안물과의 거리가 가까울수록 더 경제성이 큰 것으로 분석되었다.

Estimation of the Blasting Distance Satisfying Allowable Peak Particle Velocity - Analytical & Numerical Analysis Approach (허용진동속도를 만족하는 발파이격거리 산정 - 이론식 & 수치 해석적 접근)

  • Jeon, Sang-Soo;Jang, Yang-Won;Jung, Du-Hwoe
    • Journal of the Korean Society of Hazard Mitigation
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    • v.7 no.1 s.24
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    • pp.39-46
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    • 2007
  • The blasting load induced by the explosion of the powder generation the vibration of the ground and affects on nearby ground and underground structures. The structures are possibly damaged and it may create the social problems such as noneconomic construction due to the delay of the construction period especially in urban areas. Therefore, the stability of the nearby structures need to be evaluated. In this study, the stability of the tunnel is estimated and examined by the analytical solution and by using $FLAC^{2D}$ which is one of the programs based on the finite difference analysis.