预测自由表面存在时振动的全场解决方案

IF 7 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL International Journal of Rock Mechanics and Mining Sciences Pub Date : 2024-07-10 DOI:10.1016/j.ijrmms.2024.105825
S. Gómez, J.A. Sanchidrián, P. Segarra
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引用次数: 0

摘要

爆破是采矿中的一种常见活动,会对剩余岩体造成严重破坏。最常用的振动预测方法是瑞典或 Holmberg-Persson 方法。这是一种简单快捷的方法,根据炸药重量、与爆破源的距离和其他参数,利用经验公式估算振动水平。然而,这种方法的精度有限,而且没有考虑自由表面或其他边界条件的影响。另一方面,最近开发的全场解法(FFS)可以更准确地预测圆柱形炸药柱激发的振动,但将自由表面纳入分析方法是一个具有挑战性的问题。本文提出了一种新方法,将自由表面纳入 FFS,以分析预测近场振动。将自由表面纳入 FFS 的主要障碍是认为在 P 波和 SV 波中分别求解是不可解的。以前曾使用 Heelan 方法对它们进行解耦,但这种方法只能提供有效的远场辐射模式,而且不考虑内在衰减。在本文中,我们解决了这一问题,允许将自由表面纳入 FFS。
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A full-field solution to predict vibrations in the presence of a free surface

Blasting is a common activity in mining that can cause significant damage in the remaining rock mass. The most commonly used method for predicting vibrations is the Swedish or Holmberg-Persson approach. It is a simple and fast method that uses empirical formulation to estimate the vibration levels based on the explosive charge weight, distance to the source, and other parameters. However, it has limited accuracy and does not consider the effect of free surfaces or other boundary conditions. On the other hand, recently developed methods as the full-field solution (FFS) can provide more accurate predictions of vibrations due to excitations provoked by cylindrical columns of explosive, but the inclusion of free surfaces in analytical methods is a challenging problem. This paper presents a new approach that includes free surfaces in the FFS to predict vibrations analytically in the near-field. The main obstacle to including free surfaces in the FFS is the belief that the solution is non-decoupleable in P- and SV-waves separately. The Heelan's approach was previously used to decouple them, but it only provides valid radiation patterns in the far-field and does not account for intrinsic attenuation. In this paper, we address this problem, allowing for the inclusion of free surfaces in the FFS.

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来源期刊
CiteScore
14.00
自引率
5.60%
发文量
196
审稿时长
18 weeks
期刊介绍: The International Journal of Rock Mechanics and Mining Sciences focuses on original research, new developments, site measurements, and case studies within the fields of rock mechanics and rock engineering. Serving as an international platform, it showcases high-quality papers addressing rock mechanics and the application of its principles and techniques in mining and civil engineering projects situated on or within rock masses. These projects encompass a wide range, including slopes, open-pit mines, quarries, shafts, tunnels, caverns, underground mines, metro systems, dams, hydro-electric stations, geothermal energy, petroleum engineering, and radioactive waste disposal. The journal welcomes submissions on various topics, with particular interest in theoretical advancements, analytical and numerical methods, rock testing, site investigation, and case studies.
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