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Influence of Ground Conditions on Vibration Propagation and Response Under Accidental Impact Loads
- Ahn, Jae-Kwang;
- Lee, Yong-Gook;
- Lee, Sang-Rae;
- Yoo, Mintaek;
- Park, Cheolwoo;
- 외 1명
WEB OF SCIENCE
1SCOPUS
1초록
Vibrations of unknown origin can cause fear and confusion when their sources are unrecognized. In modern construction environments, such vibrations may result not only from earthquakes but also from accidental impacts during industrial operations. However, due to the absence of established safety standards, evaluating and compensating for the effects of short-duration, high-intensity vibrations has remained difficult. This study investigates the characteristics of ground motions induced by accidental impact loads through finite element-based numerical simulations. The analyses identify key factors that control vibration propagation under various subsurface conditions. The results show that an impact load produces a single impulsive motion dominated by a vertical component, which decays exponentially with time. The amplitude of vibration increases with drop height and girder mass, confirming the relationship between potential energy and vibration intensity. The attenuation of peak particle velocity (PPV) follows a logarithmic pattern with distance, and the variation in attenuation depends on soil thickness and the presence of a weathered-rock layer. These results demonstrate that both the magnitude of impact and the ground composition control the amplitude, frequency content, and duration of impact-induced vibrations, providing a basis for assessing unmonitored accidental events.
키워드
- 제목
- Influence of Ground Conditions on Vibration Propagation and Response Under Accidental Impact Loads
- 저자
- Ahn, Jae-Kwang; Lee, Yong-Gook; Lee, Sang-Rae; Yoo, Mintaek; Park, Cheolwoo; Moon, Jae Sang
- 발행일
- 2025-11-13
- 유형
- Article
- 저널명
- APPLIED SCIENCES-BASEL
- 권
- 15
- 호
- 22