• Title/Summary/Keyword: 발파해체공법

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Classification of Explosive Demolition Methods Based on the Building Type and Dimension of Wall-slab Apartment Building (벽식 아파트의 주동 형태 및 규모에 따른 발파해체공법 분류)

  • Park, Hoon;Suk, Chul-Gi
    • Explosives and Blasting
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    • v.27 no.2
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    • pp.19-25
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    • 2009
  • According to increasing demands for a redevelopment of a wall-slab structure apartment, new explosive demolition methods, which are different from those for RC structure apartment, are requested. In this study, to provide basic design data on explosive demolition of wall-slab structure apartment, wall-slab structure apartments were classified according to building types and dimensions. Also adequate explosive demolition methods for wall-slab structure apartment are analyzed by using blasting pattern factors such as height(H), breadth(B) and length(L) of apartment.

A Case Study on Explosives Demolition of Central Library (중앙 도서관 발파해체 시공사례)

  • Park, Keun-Soon;Kim, Sang-Hoon
    • Explosives and Blasting
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    • v.26 no.2
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    • pp.77-91
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    • 2008
  • According as demand for superannuated building increases recently, much researches about demolition method of construction are going on. This case study executed to center library building located in Dankook University. Explosives demolition method applied Progressive Collapse. Explosives demolition main blasting floors are 2, 4floor, assistance blasting floor is 1 floor. In the nearest distance (150 m), Vibration measurement result were 0.0302 cm/sec (PPV). Change was not in measurement value is crack gauge which install beforehand.

A Case Study on Explosive Demolition of the Industrial Steel Shell Structure (산업용 스틸 셸 구조물의 발파해체 시공사례)

  • Park, Hoon;Noh, You-Song;Nam, Sung-Woo;Jang, Seong-Ok;Suk, Chul-Gi
    • Tunnel and Underground Space
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    • v.31 no.3
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    • pp.198-209
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    • 2021
  • Recently, the demand for demolition of unnecessary steel shell structure is increasing due to deterioration and unsatisfactory functional conditions and the issue of demolition is becoming a major highlight. This execution case was intended to describe an application of the felling method, a explosive demolition method to demolish steel shell structures, for the demolition of a steel stack and steel head tank. As a result of the explosive demolition, the steel stack and steel head tank had collapsed precisely according to the estimated direction. And the explosive demolition was completed without causing any damage to surrounding facilities.

A Case Study on Blast Demolition Work of a Pier Structure (교각구조물 발파해체 시공사례)

  • Park, Keun-Soon;Lee, Joon-Seok;Park, Sang-Soo
    • Explosives and Blasting
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    • v.25 no.2
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    • pp.47-60
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    • 2007
  • The blast demolition technology has been used to demolish various industrial facilities and tall buildings since 1950s in the advanced countries such as USA and U.K. It is now considered as one of safe demolition methods in the above countries. In Korea, several companies have tried to introduce blast demolition technology in the early days of the 1990s. However, this technology is still at the beginning stage and not fully adopted due to situation of avoiding technology transfer by overseas technical tie-up companies, lack of objects to be demolished and low level recognition on blast demolition. This technology shall be considered as a cutting edge technology to be applicable to demolition of skyscrapers, various industrial structures and factory buildings in the near future. Blast demolition of a pier structure was carried out under the site condition where there were already the constructed 2 pier structures of up and down line which had safety problems in an expressway construction project. The pier structures need to be demolished and reconstructed for a short period of time in consideration of the construction work process to be followed.

A Case Study on Explosive Demolition of Turbine Building of Steel Frame Structure (터빈동 철골구조물 발파해체 시공사례)

  • Hoon, Park;Sung-Woo, Nam;You-Song, Noh;Chul-Gi, Suk
    • Explosives and Blasting
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    • v.40 no.4
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    • pp.35-46
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    • 2022
  • While the construction of dismantling the old industrial complex and restoring the dismantled industrial site to its original natural environment the is underway. In this paper, we introduce a case of dismantling a turbine building which one of the a large steel frame structures in an old industrial complex by applying the progressive collapse method among the blasting demolition methods. We used a charge container that generates a metal jet to cut dismantling the turbine building. The thickness of the steel structure was adjusted to 30 mm or less by applying gouging, which was a method of digging deep grooves by gas and oxygen flames or arc thermal, in the part where the cutting thickness was thick in the blasting section. The total amount of charge used for the blasting of turbine building was 175 kg, 165 electronic detonators and 124 charge containers. As a result of the blasting demolition, the turbine building was collapsed precisely according to the estimated direction. The blasting demolition was completed without causing any damage to the surrounding facilities.

A Case Study on Controlled Explosive Demolition of Steel Frame Structure Using Charge Containers (장약용기를 이용한 철골구조물 발파해체 사례)

  • Park, Hoon;Nam, Sung-Woo;Suk, Chul-Gi
    • Proceedings of the Korean Society of Disaster Information Conference
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    • 2023.11a
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    • pp.91-92
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    • 2023
  • 본 논문에서는 노후화된 화력발전소를 해체하고 원래의 자연환경으로 복원하는 공사가 진행되는 가운데 화력발전소 내 대형 철골구조물 중 하나인 터빈동을 발파해체공법을 적용하여 해체한 사례이다. 두께 30mm의 철골 부재를 절단하기 위해 금속제트가 발생되는 전용 장약용기를 제작하였으며, 철골 부재의 두께가 30mm 이상인 일부 철골 부재의 경우에는 가우징을 이용하여 사전취약화를 실시하였다. 또한 구조물 내부에 있는 일부 철골 부재에 대해 kicker charge를 사용하여 붕괴거동에 영향을 미치지 않도록 하였다. 발파에 사용한 전체 장약량은 175kg, 전자뇌관 165개, 장약용기 124개를 사용하여 계획된 방향으로 점진붕괴되었으며, 주변 시설물에 피해 없이 발파해체를 완료하였다.

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Blast Design for Explosive Demolition of Concrete Foundation (기초콘크리트 구조물의 발파해체를 위한 발파설계)

  • Park, Hoon;Park, Hyoung-Ki;Suk, Chul-Gi;Yi, Young-Seop;Kaneko, Katsuhiko
    • Explosives and Blasting
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    • v.30 no.1
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    • pp.9-16
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    • 2012
  • With the deterioration and functional loss of structures, there is an increasing demand for demolition and various demolition technologies have been developed. In case of a large-scale concrete foundation, application of some mechanical demolition techniques is limited because of the structural characteristics, and explosive demolition or explosive demolition combined with mechanical demolition is applied recently due to the effect to the surrounding environment by the ground vibration. In this study, we compared peak particle velocity of ground vibration depending on average fragment size in case of explosive demolition design for large-scale concrete foundation using the relation among specific charge, charge constant and transmitting medium constant as well as the relation between average concrete fragment size and specific charge.

A Case Study of Blast Demolition at Chung-Ang Department Store in Daejeon City (대전 중앙데파트 발파해체 사례)

  • Min, Hyung-Dong;Park, Jong-Ho;Song, Young-Suk;Park, Hoon
    • Explosives and Blasting
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    • v.27 no.1
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    • pp.62-78
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    • 2009
  • Recently, construction techniques have been rapidly developed with reconstruction of old buildings, urban regeneration and efforts of restoring natural ecology, so demolition of deteriorated buildings has been rapidly increasing. Demolition work of building should be executed without damaging surrounding environments according to relevant regulations. There are various demolition methods and among them, explosives demolition is the most practical way for expenses and safety of work. As a part of Daejeon stream ecological restoration project, this thesis is a case of executing demolition of Chung-Ang Department Store which was built 35 years ago as covered structure on the upper part of Daejeon stream with explosives demolition. This structure is 8 stories high, total height of 41.6 m including basement floor, $1,650m^2$ for building area and $18,351m^2$ for total floor area. It is located in the center of Daejeon city where shopping centers and buildings are crowded and main facilities are Daejeon subway (18m), backside shopping center (20m), underground shopping center(15m), Mokchuk bridge, Eunjung bridge(0.25m) and fiber-optic cable(0.25m). In this project, implosion was selected for explosives demolition methods by considering this area being a busy urban area, and this project was executed after examining collapse movement of structure in advance using simulation program not to damage main facilities. Total 80kg of explosives and 1,000 detonators were being used. This project will be a good case of executing explosives demolition successfully by applying implosion on urban area in the country.

The Kingdome Implosion (미국 Kingdome 구조물 발파해체사례)

  • 대한화약발파공학회
    • Explosives and Blasting
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    • v.18 no.4
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    • pp.61-68
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    • 2000
  • 본 기사는 2000년 3월 26일 미국 시애틀 소재 Kingdome 체육관 시설을 발파해체공법을 이용하여 해체한 사례로서 The Journal of Explosives Engineering(v.17 n.5, 2000)에 기고한 Dr. Douglas A. Anderson (Senior Consultant, West Chester, PA office of Schnabel Engineering Associates, Inc.)의 글을 옮긴 것이다. Kingdome 구조물의 해체와 해제 후 Seahawk Stadium 건설의 책임을 맡은 주계약자는 Turner Construction 회사이며 발파해체 사전준비 및 사후처리의 택일은 Aman Environment사, 발파해체 설계 및 시공은 CDI사, 주위 주요 구조물에 대한 영향평가 및 진동계측은 Schnabel Engineering Associates사가 맡아 수행하였다. 이 건물은 세계에서 가장 큰 규모의 쉘 콘크리트 돔 구조로 되어 있으며, 주위에 주요 구조물들이 위치하고 있고 특히 이 지역에 과거 발생했던 지진으로 인하여 주민들이 지반진동에 대한 피해나 또는 지진을 유발하수도 있다는 위험 가능성에 매우 예민하여 관심이 높았던 해체사례이다. 이 구조물을 한번에 붕괴시킬 경우 지반에 25,000톤의 중량이 충격으로 작용할 수 있으므로 충격을 최소화하기 위한 방법에 초점을 맞추어 설계되었으며 5,905개의 천공에 4,728파운드(약 2,145kg)의 폭약이 사용되었고 도폭선을 이용하여 기폭시켰다. 사용된 도폭선의 길이는 약 37.9 Km에 달하였다. 발파해체 기사에 나타나 있듯이 주위에 피해를 주지 않고 성공적으로 수행되었다.

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A Case Study on the Demolition of Power Plant with Blasting Method for the First Time in Korea (국내 최초 발파공법 적용 발전소 해체 사례)

  • Oh, Ki-Taek
    • Proceedings of the Korean Society of Disaster Information Conference
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    • 2023.11a
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    • pp.87-88
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    • 2023
  • 서해안 최고의 동백정해수욕장과 마량리 동백나무숲은 1970년대 오일쇼크 이후 에너지 자립을 위해 발전소를 건설하면서 사라졌다. 그 당시 준공된 화력발전소는 전력공급 이라는 소임을 완수하고 2021년 부터 동백정의 아름다운 옛 모습 그대로 지역주민에게 돌려 주기위한 친환경 사업으로 발전소 철거공사를 시작, 동백정 복원공사를 추진 하기로 했다. 고층 및 중량물의 건축물 및 구조물을 안전하게 해체하기 위해서는 국내 최초 발전소 철골구조물에 대한 발파·전도공법을 채택 하였다. 철거작업은 고위험 공종으로 참여 주체인 발주자, 설계자, 감리자, 시공자 및 근로자 전 계층의 참여로 사전 위험성평가를 통해 근원의 위험요인 발굴 및 안전대책 수립, 수립된 안전대책 100% 이행을 통해 무재해 준공 달성 하기를 기대한다.

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