• Title/Summary/Keyword: 암파쇄굴착공법

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A Study on the Nano-Plasma Rock Breaking Blasting Method Using Rapidly Expansive Metal Mixture (급팽창 금속혼합물을 이용한 나노프라즈마 바위 파쇄공법에 관한 연구)

  • Kim Sung-Kook;Ahn Myung-Seog;Cho Myung-Chan
    • Explosives and Blasting
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    • v.23 no.3
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    • pp.57-74
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    • 2005
  • In the past, explosives like dynamite was used to blast rock. However, today it is difficult to use explosives in urban blastinglike excavation for subway, building, and housing land. According to Korea Department of Construction and Transportation's proposal for blasting design manual and test blasting, from TYPE I blasting to TYPE IV blasting are recommended when we determine 0.3cm/sec(centisec) as a maximum allowable ground vibration with a distance between $25m\~120m$ from structures. This article was written to introduce one of TYPE I (reck blasting within 25m from structures) blasting method, Nano-Plasma blasting method. When Nano-Plasma blasting method is applied in urban blasting job, ground vibration (15m away from blasting point) is expected 0.1cm/sec, which is only half of a ground vibration when low ground vibration blasting method is applied. By this unique characteristic, Nano-Plasma blasting method is epochal urban blasting technique.

The Study of noise and vibration on application of the method breaking & excavating rock(Super wedge) (암파쇄굴착공법(Super wedge) 적용에 따른 소음.진동에 대한 고찰)

  • Won, Yeon-Ho;Kang, Choo-Won;Ryu, Chang-Ha
    • Proceedings of the KSEE Conference
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    • 2006.10a
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    • pp.167-184
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    • 2006
  • There is cattle shed and house structure of a country village in the vicinity of the construction site. that is why the environmental effect evaluation on blasting had been done in advance to prevent any harm to those from the work. As the result, it is impossible to apply to the blasting method, and the Super wedge method, a kind of a rock-splitting method which there is no secondary breaking by a breaker of the methods breaking &excavating rock according to the classification of the blasting method by the ministry of construction & transpotation, applied to decrease noise and vibration, and to the work classification, the extent of noise and vibration measured with the instrument only for noise(SC-310c) and with the instrument only for vibration(BLASTMATE) respectively. A drilling, splitting, collecting, loading works at the closest point(about 10m) is barely possible on the consideration of vibration to the result of measurement, but carefulness needs on moving of equipment. On the case of noise, even drilling, collecting, loading work except splitting at the comparatively close point(about 20m) is difficult. So, the method breaking &excavating rock according to the classification of the blasting method by the ministry of construction & transpotation has to apply in consideration of noise level in accordance with the work processing.

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A Case Study on Vibration Control Method at Urban Area Using FINECKER Plus (FINECKER Plus를 이용한 도심지 진동제어 시공사례)

  • Min Hyung-Dong;Jeong Min-Su;Park Yun-Seok;Hwang Ui-Jin;Park Jun-Ho
    • Explosives and Blasting
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    • v.24 no.1
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    • pp.49-56
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    • 2006
  • There are many restrictions with a rock breaking method by using explosives in the urban area due to such safety problems as vibration, noise, and flying rock. Therefore, the use of FINECKER Plus which is mainly used as a rock breaking method (Ministry of Construction and Transportation, 2003) is gradually increasing. Accordingly, construction cases applying FINECKER Plus to the construction sites in the urban area was introduced in case studies. In addition, a comparative test on the same volume of charge applied to 360g of 1 new product 1 set and 180g of the existing FlNECKER Plus 2 sets was conducted. As a result of the test, the two cases were equivalent in breaking efficiency and the level of noise and vibration, and as for the method, the working time decreased by 32%, thus, it was proven to be excellent in terms of construction.

A case study of application Finecker Plus in field (미진동 파쇄기의 현장 적용에 관한 연구)

  • Min Hyung-Dong;Lee Yun-Jae;Song Young-Seok;Kwon O-Sung;Park Yun-Seok
    • Proceedings of the KSEE Conference
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    • 2004.08a
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    • pp.49-75
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    • 2004
  • 소음진동 규제법의 강화, 각종 건설민원 발생 및 안전강화 관리 차원에서 현재 국내 터파기 현장 및 각종 토공사에서 종래 시행되어지던 발파공법만으로 시행하는 것은 곤란하다. 건설교통부 설계 지침에서도 진동 규제치의 차이를 두어 파쇄와 발파와의 차이를 확연히 구분하는 실정이다. 기존에 발파는 그 경험이 많아 효과적인 방법 등이 널리 알려져 있지만 파쇄의 경우는 그 시공사례가 많지 않아 그 연구의 필요성이 대두되고 있다. 본 연구는 건교부에서 제시한 암파쇄굴착공법에 사용되어지는 미진동 파쇄기에 대한 연구로써 연암, 보통암, 경암지역에서의 전색제, 적정 패턴, 진동 특성 등을 분석하는데 그 목적이 있다. 시험은 크게 1, 2 타입으로 구분하여 실시하였으며 1타입의 경우는 천공장이 1.5m(180g 장약)이고, 2타입의 경우는 2.5m(360g)이다. 두 패턴을 기본으로 저항선, 공간격을 달리하여 시험을 진행하면서 그에 따르는 진동 및 파쇄정도의 차이를 관찰할 수 있었으며 암석 강도별 예상 진동식을 제안하였다.

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A Study on the Standard Rock fracture Method Using the Finecker Plus (미진동파쇄기를 이용한 표준암반반쇄굴착공법에 관한 연구)

  • Kim Young-Geun;Kim Il-Jung;Ki Kyung-Chul
    • Explosives and Blasting
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    • v.23 no.1
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    • pp.19-30
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    • 2005
  • In this study, the standard particle velocity equations and the equation for calculating specific charge weight with application of rock fracture method using the finecker plus are suggested and the existing equation of fragmentation was transformed into one applicable to finecker plus. Standard rock fracture pattern was designed. Square root scaled equation is $V=345.39(D/\sqrt{W})^{-1.4484$. computable equation to specific charge wei인t is $W_f=(2.3\~2.5)\;f_agdV$, charge weight per hole is 0.54kg, and proportion of diameter 30cm fragmentation is about $48.7\%$. This rock fracture method nay him out to be more excellent than the other methods.

급팽창 금속혼합물(REMM)과 그 반응촉발장치를 이용한 파암공법의 설계 및 시공방법에 관한 연구

  • Kim Il-Jung;Kim Young-Geun
    • Proceedings of the KSEE Conference
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    • 2004.08a
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    • pp.127-149
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    • 2004
  • 건설교통부 표준발파패턴 중 암파쇄굴착공법(pattern-1)에 해당하는 구간에서 적용할 수 있는 공법중의 하나로서 새로운 물질과 반응촉발장치를 이용하는 파암공법이다. 본 공법에 대한 이해를 돕기 위해 새로운 물질의 특성시험, 파암진동과 발파진동과의 비교 고찰하고, 각종 화약류와의 폭발소음을 비교분석 하였으며, 본 공법을 파암현장에 적용함에 있어 암질에 따른 설계기법 및 시공방법 등에 대해 연구하였다.

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Case History of Vibration-controlled Reckmass Breakage Method by Rock Splitter (할암기를 이용한 무진동 암반 파쇄공법의 현장 적응 사례)

  • 최영천
    • Explosives and Blasting
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    • v.22 no.3
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    • pp.71-78
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    • 2004
  • Explosive blasting, hydaulic power unit and rock splitter are typically utilized for rockmass breakage and cutting in reconstruction of building structures and other construction site. Hydraulic rock cutting method, that can be utilized any weather conditions, has been applied mainly by experience for controling damages caused by vibration, noise and rock cuttings, and reducing damage claim by protecting adjacent structures. However, it is required to understand the characteristics of rockmass to improve operation efficiency. Although every cutting method has its own advantage, but it should be applied by considering site circumstance and rockmass properties in details to maximize the operation efficiency and economic feasibility.

The study on the tunnel double-deck blasting methods using electronic blasting systems (더블데크 전자발파를 이용한 터널 발파공법 개발 연구)

  • Lee, Jong-U;Mun, Hong-Pyo;Kim, Nam-Su;Lee, Gang-Il
    • Magazine of korean Tunnelling and Underground Space Association
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    • v.23 no.4
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    • pp.38-48
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    • 2021
  • 최근 국내 건설현장들은 도심지 근접구간에서 발파진동피해를 최소화하기 위하여 전자뇌관을 이용한 미진동 전자발파공법 적용사례가 증가하고 있는 추세이다. 그러나 미진동 전자발파는 무진동 암파쇄 대체공법으로 경제성은 우수하나 시공현장에서 진동을 제어하는 공법으로 1회 굴진장을 1m 이하로 적용하고 있어 시공속도가 저하되는 문제점이 발생하고 있다. 따라서, 미진동 전자발파 수준의 진동제어와 굴착비 절감 및 시공속도를 높일 수 있는 더블데크 발파공법을 연구 및 시험을 수행하였다. 미진동 전자발파와 더블데크 전자발파 비교 시험결과 진동레벨, 발파효율, 파쇄입도, 여굴량 등이 비슷한 수준으로 평가되어 현장 적용시 굴진장 증대로 인한 공사기간 단축 및 시공비 절감이 가능할 것으로 판단되었다.

Stability of Tunnel under Shallow Overburden and Poor Rock Conditions Using Numerical Simulations (수치해석적 방법을 통한 저토피 및 암질불량구간의 터널 안정성 검토)

  • Kim, Jungkuk;Kim, Heesu;Ban, Hoki;Kim, Donggyou
    • Journal of the Korean GEO-environmental Society
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    • v.22 no.11
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    • pp.39-47
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    • 2021
  • Tunneling is widely increased in rail-road construction due to the large portion of mountainous regions in Korea as well as the improving running performance of train. Tunneling under poor rock condition, shallow overburden, or existing fault zone has high risk for collapse. Therefore, this study presents the stability of tunnel under unfavorable geological conditions using finite element methods.

A Case Study of Tunnel Electronic Blasting to Control Vibration in the Proximity of the Safety Facilities (근접 보안물건의 진동제어를 위한 터널 전자발파 시공사례)

  • Seo, Yun-Sik;Woo, Sang-Don;Kwon, Yeong-Bok;Kim, Jong-Su;Choi, Hyeong-Bin;Kim, Seon-Hong;Kim, Gab-Soo;Kim, Jae-Hoon;Kim, Hee-Do;Lee, Jun-Won
    • Explosives and Blasting
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    • v.30 no.1
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    • pp.37-51
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    • 2012
  • In this case of "Seongnam~Yeoju double-lanes railroad construction", there were safety facilities which were concerned about damages from vibration and noise. In the project design stage, the rock-splitter method was designed to prevent them. The electronic blasting was considered to improve construction speed and economic value as an alternative tunnelling method, complying with the site's vibration criteria(cowhouse : 0.09cm/sec, residence : 0.2cm/sec). In the environment evaluation report of the eDev, tunnel electronic blasting systems, the blasting pollutions can be managed by the electronic blasting method. The results were successfully conducted with high speed construction without any damages to adjacent facilities.