• 제목/요약/키워드: Drill and blasting

검색결과 44건 처리시간 0.017초

S 화력발전소 3, 4호기 증설에 따르는 정밀발파작업으로 인한 인접가동발전기 및 구조물에 미치는 진동영향조사 (On the vibration influence to the running power plant facilities when the foundation excavated of the cautious blasting works.)

  • 허진
    • 화약ㆍ발파
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    • 제9권4호
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    • pp.3-12
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    • 1991
  • The cautious blasting works had been used with emulsion explosion electric M /S delay caps. Drill depth was from 3m to 6m with Crawler Drill 70mm on the calcalious sand stone (soft-moderate-semi hard Rock) . The total numbers of feet blast were 88. Scale distance were induces 15.52-60.32. It was applied to Propagation Law in blasting vibration as follows .Propagtion Law in Blasting Vibration V=k(D/W/sup b/)/sup n/ where V : Peak partical velocity(cm/sec) D : Distance between explosion and recording sites(m) W ; Maximum Charge per delay -period of eight milliseconds or more(Kg) K : Ground transmission constant, empirically determind on the Rocks, Explosive and drilling pattern ets. b : Charge exponents n : Reduced exponents Where the quantity D/W/sup b/ is known as the Scale distance. Above equation is worked by the U.S Bureau of Mines to determine peak particle velocity. The propagation Law can be catagrorized in three groups. Cabic root Scaling charge per delay Square root Scaling of charge per delay Site-specific Scaling of charge delay Charge and reduction exponents carried out by multiple regressional analysis. It's divided into under loom and over loom distance because the frequency is varified by the distance from blast site. Empirical equation of cautious blasting vibration is as follows. Over 30m--under 100m----V=41(D/ W)/sup -1.41/-----A Over l00m---------V=121(D/ W)/sup -1.56/-----B K value on the above equation has to be more specified for furthur understand about the effect of explosives. Rock strength, And Drilling pattern on the vibration levels, it is necessary to carry out more tests.

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플라즈마 발파의 폭력과 지반진동특성 (Analysis of Energy and Ground Vibration of Plasma Blasting)

  • 이경운;박철환;신중호;류창하
    • 터널과지하공간
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    • 제7권4호
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    • pp.267-273
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    • 1997
  • Rock fragmentation with plasma blasting technique has advantageous properties in contrast to the conventional blasting method in controlling of flying rocks and ground vibrations, when residents are complaining or surrounding structures stay in protection from blasting operations. The experiences show in urban construction works that the plasma blasting is the most possible method to prevent damages and minimize adverse environmnetal impacts. The fragmentation energy level is evaluated by numerical simulation using PFC-2D for various drill hole pattern and tested accordingly to get the feasibility. The energy output of plasma blasting system has been improved to a level of 1 MJ, which can break a 2~3 ㎥ granite boulder or 1.5 m height bench face. Measurements are carried out to get the ground vibration level and propagation equation, so that the control of the blasting operations can be performed more precisely and safely.

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수중발파용 구조체를 이용한 수중발파 시공사례 (A Case of Underwater Blasting Performance Using a Structural Underwater Charging System)

  • 김영근;김승곤
    • 화약ㆍ발파
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    • 제36권2호
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    • pp.27-35
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    • 2018
  • 기존 수중발파와 달리 잠수부에 의존하지 않고 바지선위에서 천공, 장약, 발파 등 수중발파작업의 전 과정이 바지선 상부에서 이루어 질 수 있도록 완전수밀이 가능한 수중발파용구조체를 제안 및 제작하였다. 이 구조체를 이용한 수중발파와 기존 수중발파의 결과를 비교하여 현장 적용성 및 효용성을 검증하였다.

부산 통신구굴진 발파작업으로 인한 지상주택 구조물에 미치는 진동폭음영향계측조사보고 (On the study of the measurement of blasting Vibration and Sound influenced to housing structure at Wire-Tunnelling)

  • 허진
    • 화약ㆍ발파
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    • 제8권2호
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    • pp.3-17
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    • 1990
  • The Caustious blasting have often increased Complaints of ground Vibration and Sound when the Wire-Tunnel Constructed in Pusan. In order to prevent the influence to housing structure, it was necessary to predict blasting-Induced Vibration and Sound. The Suveyer determined the Burden and spacing of Drill holes, minimum delay charges within a allowable Vibration and Sound Level. Tunnel drilling and Ignition patterns are made as follows; No. 1 Tunel (Stable rock, hard rock) No.2 Tunnel (Instable plastic rock; wethered rock) and other Tunnels (Instable rock). The result of 1st testing blasting of No. 1 Tunnel was recorded Under allowable Vibration Level but sound was over 75 Db of allowable value. So Tunnel drilling pattern was amended with 52 Non-charg holes to reduce the blast-sound. The other pattern had no need to amend.

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발파 굴착에 의한 주방식 지하구조물의 굴착공기 분석 연구 (A preliminary study on the excavation sequence of a room-and-pillar underground structure by the drill-and-blast method)

  • 이철호;현영환;송준호;장수호
    • 한국터널지하공간학회 논문집
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    • 제17권6호
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    • pp.605-614
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    • 2015
  • 주방식 지하구조물은 여러 개의 암주의 룸으로 구성된 격자 형태의 구조물로 굴착순서에 따라 주방식 지하구조물의 시공성과 경제성이 좌우될 수 있다. 본 연구에서는 주방식 지하구조물의 굴착공정에서 중요하게 다뤄질 수 있는 발파굴착 공정을 장비 운영과 현행 발파 규정 및 건설공사 표준품셈에 근거하여 검토하였다. 굴착공법으로는 점보드릴을 이용한 발파공법을 가정하였으며, 기존연구에서 제시한 가로 세로 순차시공방식으로 검토하였다. 주방식 지하구조의 계획부지 크기에 따라 굴착공기와 장비운영 등을 고려하여 전체 굴착공정을 예상할 수 있었으며 막장운영 계획에 따라 운영가능한 장비수를 고려하여 전체 굴착공기를 예상할 수 있었다.

서울지하철 3,4호선 Tunnel 굴착과 진동대책 조사연구(1)

  • 허진
    • 기술사
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    • 제15권2호
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    • pp.3-15
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    • 1982
  • The study on prevention measures for vibration and excavation of tunnel for the #3, #4, Seoul Subway. In the Seoul subway tunnel blasting, the drilling pattern and prevention method to seismic vibration are as follows as well as for adaptions of NATM, the supportings of roof and wall holes are arranged with control blasting. 1. The blasting is executed basically using the low velocity explosive such as slurry, Nitrate ammonium explosive, and F-I and F-II explosive for control blasting substituting of existing dynamite. 2. The cut holes are arranged with burn cut pattern and also must be arranged with M/S electrical delay caps substituting of ordinary do]ay caps. 3. Jack leg drills are used in Five Job sites and a jumbo drill in one job site. 4. In performance of safety work and in maintenance of building safety. The drilling length for blasting will not exceed 1.20 meter for round so that the vibration value shall carry below 0.3cm/sec. The harmonizing of better powder, better drilling machine and better technique is only the way of improving tunnelling efficiency and less vibration will help the dereasing of accidence.

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터널굴착시 천공 및 발파조건이 여굴의 크기에 미치는 영향 (Effect of the Drilling & Blasting Conditions on the Range of Overbreak in Tunel Excavation)

  • 김경훈;임한욱
    • 산업기술연구
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    • 제24권B호
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    • pp.3-17
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    • 2004
  • Overbreak, underbreak and range of disturbed rock zone (DRZ) are the most important factors in evaluating the results of tunnel blasting. These factors, which depend on the discontinuities in rock mass, the blasting patterns and drilling conditions, have been studied. The range of DRZ can be estimated by relationships between vibration velocity and associated tensile stress. A new computerized rocket jumbo drill has been adopted to reduce overbreak based on the analysis of drilling accuracy. In-situ blasting tests were also performed by varying initiating systems. Overbreak can be reduce from 34.5cm to 20cm. The range of DRZ is 0.2m with stoping holes and 0.4m with wall holes respectively. In addition, some methods to reduce DRZ have been presented in this study.

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도심지 터파기를 위한 응용발파 시공 사례 (A Case of Application-blasting in the Urban Blasting Works)

  • 김태현;박용원;조래훈;김홍율;정병호
    • 화약ㆍ발파
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    • 제34권2호
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    • pp.18-30
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    • 2016
  • 도심지 암반터파기 작업시 암반을 파쇄 하는 데 있어서 가장 경제적이고 효율적인 방법으로 폭약을 사용한 발파방법이 주로 사용되고 있는데, 이와 같은 발파방법은 발파에 따른 암반의 파쇄 시 진동 소음의 발생 및 비산 등 발파공해의 발생요인으로 인해 보안물건 주변에서 많은 제약을 받고 있는 실정이며, 폭약을 기폭 시켜 주는 뇌관의 종류 및 방법에 따라 일회 발파공수의 제한, 일회 굴착 깊이 제한 등으로 일일 생산량 감소에 따른 공사기간 증대에도 많은 영향을 미치게 된다. 따라서 본 시공사례는 국내에서 가용할 수 있는 뇌관을 선정하여 응용발파방법이 가능하도록 층상장약방법에 의한 발파패턴을 설계하여 도심지 특수구간에 대한 적용가능성을 평가하였다.

삼천포화력발전소 3, 4호기 증설에 따르는 정밀발파작업으로 인한 인접가동발전기 및 구조물에 미치는 진동영향조사 (On the vibration influence to the running power plant facilities when the foundation excavated of the cautious blasting works)

  • 허진
    • 기술사
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    • 제24권6호
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    • pp.97-105
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    • 1991
  • The cautious blasting works had been used with emulsion explosion electric M/S delay caps. Drill depth was from 3m to 6m with Crawler Drill ø70mm on the calcalious sand stone (soft-moderate-semi hard Rock). The total numbers of fire blast were 88 round. Scale distance were induces 15.52-60.32. It was applied to propagation Law in blasting vibration as follows. Propagation Law in Blasting Vibration (Equation omitted) where V : Peak partical velocity(cm/sec) D : Distance between explosion and recording sites(m) W : Maximum Charge per delay-period of eighit milliseconds o. more(kg) K : Ground transmission constant, empirically determind on the Rocks, Explosive and drilling pattern ets. b : Charge exponents n : Reduced exponents Where the quantity D / W$^n$ is known as the Scale distance. Above equation is worked by the U.S Bureau of Mines to determine peak particle velocity. The propagation Law can be catagrorized in three graups. Cubic root Scaling charge per delay Square root Scaling of charge per delay Site-specific Scaling of charge per delay Charge and reduction exponents carried out by multiple regressional analysis. It's divided into under loom and over 100m distance because the frequency is verified by the distance from blast site. Empirical equation of cautious blasting vibration is as follows. Over 30 ‥‥‥under 100m ‥‥‥V=41(D/$^3$√W)$\^$-1.41/ ‥‥‥A Over 100 ‥‥‥‥under 100m ‥‥‥V=121(D/$^3$√W)$\^$-1.56/ ‥‥‥B K value on the above equation has to be more specified for furthur understang about the effect of explosives, Rock strength. And Drilling pattern on the vibration levels, it is necessary to carry out more tests.

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암반 분류 기초 물성조사 (Basic properties survey report on the rock classification)

  • 허진
    • 화약ㆍ발파
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    • 제9권3호
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    • pp.10-16
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    • 1991
  • On the ground foundation works for Bldg site, Rock classification test can be obtained as follows due to the International Society for Rock Mechanics. 1. In-situ test : Compressive strength, Point load test. 2. In-situ test Schmidt hammer test. Burden test finaly the convinient co-relation table between strength and 5. H, test were carried out for site-engineer, This project is one of contineous works regarding to Burden test from Jack leg drill($\phi{\;}75mm$) use.

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