• Title/Summary/Keyword: Mine Blasting

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A Study on the Improvement of Surface Blasting Method in Pasir Coal Mine (파시르 탄광에서의 채탄발파공법에 대한 문제점 분석 및 개선방안 연구)

  • Choi Byung-Hee;Ryu Dong-Woo;SunWoo Choon
    • Explosives and Blasting
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    • v.24 no.1
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    • pp.57-62
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    • 2006
  • The typical blasting method adopted in Pasir Coal Mine is a surface blasting technique with a single free face. It means that there is only one free face, which is usually the ground surface. This kind of blasting method is easy to use but inevitably causes enormous ground vibrations, which, in turn, can affect the stability of the slopes comprising the various boundaries of the open pit mine. In addition, the method also has the problem of lowering the blast efficiency compared to other methods such as bench blasting methods or ones with more than two free faces. In this respect, a project was launched to develop a new blasting method that is suitable for controling the ground vibration and enhancing the blast efficiency. As a part of the project, authors investigated the current blasting method as well as the overall pit developing process in the mine, and established some important guidelines that should be observed during the whole development process. This paper presents the details of the typical blasting pattern and the pit developing method in the mine, and suggests the guidelines determined from the results of the observations.

A Suggestion of Blasting Patterns of a Mine closed to Railway Line for Securing Safety of High Speed Train (고속철도 안전확보를 위한 노선 인접 광산의 발파패턴 제안)

  • Kim, Hyun-Ki;Lee, Sung-Hyeok;Lee, Jin-Wook;Choi, Chan-Yong
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.19 no.5
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    • pp.1-9
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    • 2015
  • Recently Honam high-speed railroad line is constructed in southern part of Korea. This line is for next generation HST named HEMU-430X. But there is a limestone mine near this line and this mine will make a process to dig a passageway under the railway line. In this case, safety of railroad system and stability of mine are crucial problems on both sides. By measuring mine blasting vibration and calculating regression equation, effect of mine blasting to train running is investigated quantitatively. 0.5 kine (cm/sec) is applied as a management specification of vibration based on field measurement. In this study, changes of blasting patterns are suggested to control vibration of mine blasting. And the effect of train vibration to mine is also invesitigated by numerical analysis.

Analysis of the Propagation Characteristics of Blast Vibrations in Pasir Coal Mine (파시르 탄광에서의 발파진동의 전파특성 분석)

  • Choi, Byung-Hee;Ryu, Dong-Woo;SunWoo, Choon
    • Explosives and Blasting
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    • v.24 no.2
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    • pp.51-63
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    • 2006
  • The typical blasting method adopted in Pasir Coal Mine is a surface blasting technique with a single free face. It means that there is only one free face, which is usually the ground surface. This kind of blasting method is easy to use but inevitably causes enormous ground vibrations, which, in turn, can affect the stability of the slopes comprising the various boundaries of the open pit mine. In addition, the method also has the problem of lowering the overall blast efficiency compared to other methods such as bench blasting methods or ones with more than two free faces. In this respect, a project was launched to develop a new blasting method that is suitable for both controling the ground vibration and enhancing the blast efficiency. As a part of the project, we investigated the current blasting method of the mine, and have conducted field measurements of the ground vibrations from 12 biasts. This Paper presents the details of the typical blasting pattern and the Propagation characteristics of the ground vibration from the surface blasting in the mine. Especially, various predictive equations for peak Particle velocities that can be used to estimate the ground vibration level in the mine area were derived from the regression analyses using the measured ground vibration data.

Suggesting Blasting Design for Kazakhstan mine using Korea Mining Technology (국내 광산 기술을 적용한 카자흐스탄 광산 발파설계 제안)

  • Jin, Yeon-Ho;Min, Hyung-Dong;Jeong, Min-Su;Park, Yoon-Suk;Heo, Eui-Haeng;Nurmatov, Murod
    • Explosives and Blasting
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    • v.32 no.1
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    • pp.10-17
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    • 2014
  • In this study, the information achieved from the visit to Kazakhmys mine in Kazakhstan was introduced. An optimal blasting pattern designed for the mine with the application of Korean blast technology was suggested. As a result, it was found that the blast design can reduce the consumption of explosives and the number of drill holes. The blast design can reduce the overall production cost in the mine.

Study of the Blast Pattern to Improve the Effect on Fragmentation in a Small Sized Silica Mine in Korea (국내 소규모 규석광산의 파쇄효과 향상을 위한 발파패턴 연구)

  • Yang, Hyung-Sik;Kim, Jeong-Gyu;Ko, Young-Hun;Kim, Seung-Jun;Mun, Hee-Sook;Kim, Won-Beom;Jang, Hyong-Doo
    • Explosives and Blasting
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    • v.30 no.1
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    • pp.52-59
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    • 2012
  • Fragmentation is one factor to affect productivity and economic efficiency of mine. Authors investigate the blasting pattern and improve it step by step while observing the fragmentation results. Final pattern was suggested and the fragmentation improved 24 % compared to traditional pattern, with 50 % is passing rate.

Measures to Reduce Mine Hazards Caused by Open- cut Mining of Limestone Mines (석회석광산에서 노천채굴에 따른 광해 발생을 감소시키기 위한 대책)

  • Won, Yeon-Ho;Ah, Jin-Man
    • Explosives and Blasting
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    • v.24 no.2
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    • pp.75-82
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    • 2006
  • Most of limestone mines in Korea have been developed by a open-cut mining method in consideration of a deposited condition of ore, ore recovery, safety, economic efficiency, etc.. But it has produced environmental problems such as dust flying, blasting noise & vibration, and spoil of farmlands due to slope failure of waste rock mass caused by access road construction, fragmentation & crush of rocks, blasting, transportation, and mineral processing. In this study, it has been suggested for measures to reduce mine hazards caused by open- cut mining of limestone nines.

Establishment of a Safe Blasting Guideline for Pit Slopes in Pasir Coal Mine (파시르탄광의 사면안전을 위한 발파지침 수립 연구)

  • Choi, Byung-Hee;Ryu, Chang-Ha;SunWoo, Coon;Jung, Yong-Bok
    • Tunnel and Underground Space
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    • v.18 no.6
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    • pp.418-426
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    • 2008
  • A surface blasting method with a single tree face is currently used in Pasir Coal Mine in Indonesia. The single free face is usually the ground surface. This kind of blasting method is easy to use but inevitably causes enormous ground vibrations, which, in turn, can affect the stability of the slopes comprising the various boundaries of the open pit mine. In this regard, we decided to make a specific blasting guideline for the control of found vibrations to ensure the safety of the pit slopes and waste dumps of the mine. Firstly, we derived a prediction equation for the ground vibration levels that could be occurred during blasting in the pits. Then, we set the allowable levels of ground vibrations for the pit slopes and waste dumps as peak particle velocities of 120mm/s and 60mm/s, respectively. From the prediction equation and allowable levels, safe scaled distances were established for field use. The blast design equations for the pit slopes and waste dumps were $D_s{\geq}5\;and\;D_S{\geq}10$ respectively. We also provide several standard blasting patterns for the hole depths of $3.3{sim}8.8m$.

Blasting wave pattern recognition based on Hilbert-Huang transform

  • Li, Xuelong;Wang, Enyuan;Li, Zhonghui;Bie, Xiaofei;Chen, Liang;Feng, Junjun;Li, Nan
    • Geomechanics and Engineering
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    • v.11 no.5
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    • pp.607-624
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    • 2016
  • Rockburst is becoming more serious in Chinese coal mine. One of the effective methods to control rockburst is blasting. In the paper, we monitored and analyzed the blasting waves at different blast center distances by the Hilbert-Huang transform (HHT) in a coal mine. Results show that with the increase of blast center distance, the main frequency and amplitude of blasting waves show the decreasing trend. The attenuation of blasting waves is slower in the near blast field (10-75 m), compared with the far blast field (75-230 m). Besides, the frequency superposition phenomenon aggravates in the far field. A majority of the blasting waves energy at different blast center distances is concentrated around the IMF components 1-3. The instantaneous energy peak shows attenuation trend with the blast center distance increase, there are two obvious energy peaks in the near blast field (10-75 m), the energy spectrum appears "fat", and the total energy is greater. By contrast, there is only an energy peak in the far blast field, the energy spectrum is "thin", and the total energy is lesser. The HHT three dimensional spectrum shows that the wave energy accumulates in the time and frequency with the increasing of blast center distance.

A Study on Application of Kuz-Ram model to Domestic Open-pit Limestone Mine (국내 석회석 노천광산에 대한 Kuz-Ram 모델의 적용성에 관한 연구)

  • Lee, Seung-Joong;Kim, Byung-Ryeol;Choi, Sung-Oong;Jin, Yeon-Ho;Jung, Min-Su;Min, Hyung-Dong
    • Tunnel and Underground Space
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    • v.26 no.2
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    • pp.120-130
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    • 2016
  • Considering the applicability of Kuz-Ram model, which has been used extensively for predicting rock fragmentation size distribution by blasting, to domestic open-pit limestone mine, a total of 21 blasting tests have been executed at an open-pit limestone mine in eastern Gangwon of South Korea. A comparative analysis of field measured value and Kuz-Ram predicted value showed that there are a considerable amount of error in the predicted values regardless of application of various correction parameters for rock factor and uniformity factor; up to 56.45% in mean fragmentation size and 37.52% in uniformity index. Also the problem of applying different correction parameters has been derived even though a similar blasting pattern has been adopted for a same blasting bench. The authors therefore suggest that Kuz-Ram model needs to be modified for a proper application to domestic open-pit limestone mine.