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박지우(Ji-Woo Park),강추원(Choo-Won Kang),고진석(Jin-Seok Go),장호민(Ho-Min Ja) 한국암반공학회 2008 터널과지하공간 Vol.18 No.4
발파진동은 암반 및 인근 구조물에 심각한 문제를 야기할 수 있기 때문에 시공 전 발파진동의 예측과 안전성 평가가 반드시 선행되어야 한다. 최근 발파진동 영향평가를 위하여 시추공이나 시험발파를 통해 획득한 실측진동파형을 이용한 동적수치해석이 증가하고 있다. 하지만 시추공 발파 진동파형은 실제 발파현장에서 측정된 진동파형과 진동수준이나 진동지속시간에서 다소 차이가 있으며 이는 단일공 파형과 유사한 특성을 가진다. 따라서 본 연구에서는 단일공 파형의 중첩모델링을 통해 발파조건 변화에 따른 진동파형을 획득하고 이 파형을 이용한 동적수치해석을 수행하였다. 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 using measurement vibration waveform which is measured by bore hole blasting or test blasting has been increased recently in order to analyze the effect of the blast-induced vibration. The waveform made by bore hole blasting has the similar vibration level and duration to those the waveform of sing hole has. However, there can be a little difference in attenuation characteristics with the blast induced vibration waveform in the field. Through the superposition modeling of single hole waveform, I obtained the vibration waveform on the blasting condition changes and conducted dynamic analysis using this waveform in this study.
조규용 ( Kyu Yong Cho ),강추원 ( Choo Won Kang ),고진석 ( Jin Seok Go ) 대한화약발파공학회 2008 화약발파 Vol.26 No.1
In case of estimating the shocking vibration during the blasting demolitions, the weight and falling height of the structure, that is a potential energy, had been considered. But, this study presented a new equation which used the impulse concerning a falling weight instead of potential energy as a method of predicting the shock vibration. In this experiment, the data of the impulse were compared with the data of the potential energy by performing the free-fall, and all data were comparatively analyzed by the regression analysis method. Also, the method of the superposition theory, which is calculated by the diminution ratio according to distance, the free-fall difference according to height, and the time giving the shock to the ground according to the breakdown pattern, was compared with the previous vibration data occurring from the blasting demolitions in the same conditions. As a result, this study suggests that the impulse and the method of superposition theory be applied as a method of predicting the shocking vibration. Therefore, these results could be expected to estimate the shocking vibration more accurately than the previous method.