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基于塑性力学上限解的改进纽马克模型的地震边坡永久位移计算

Seismic slope permanent displacement calculation based on improved Newmark model using upper bound solution of plastic mechanics.

作者信息

Jing Pengxu, Zheng Wenbo, Li Li, Ning Baokun, Lu Mingyong, Yang Qingyi, Nan Yanyun, Li Jing, Xu Yifan, Liu Jingjing

机构信息

College of Geology Engineering and Geomatics, Chang'an University, Xi'an, 710054, Shaanxi, China.

Key Laboratory of Life Search and Rescue Technology for Earthquake and Geological Disaster, Ministry of Emergency Management, Beijing, 100049, China.

出版信息

Sci Rep. 2025 Apr 8;15(1):11991. doi: 10.1038/s41598-025-94895-1.

Abstract

Based on a review of the fundamental principles of the Newmark sliding displacement method, this paper proposes an improved approach based on the upper bound solution of plastic mechanics, drawing on the theory of Academician Zuyu Chen, which states that "during a given time period t, whenever velocity V > 0 occurs, the integration domain must be determined based on the varying distributions of acceleration a." The improved Newmark program integrates four main categories and eight subcategories of conditions into its framework through C + + programming. By employing the inclined strip method to construct velocity fields, the program enables more precise calculations of permanent slope displacements. To validate the effectiveness and accuracy of the improved method, calculations were conducted on both ideal slope models and real-world slope models. For the ideal soil and rock slope models, the results from the improved Newmark program were consistent with those obtained using the pseudo-static method and commercial software, demonstrating its strong applicability and accuracy. Furthermore, normalized artificial seismic waves, the Loma Prieta earthquake wave, and the Wenchuan earthquake wave, each with varying amplification factors, were input into the actual slope model of a colluvial deposit at the C hydropower station in Tibet. A comparison of these results with existing data revealed that the improved Newmark program produced calculations that closely matched real-world observations. This further validates the method's reliability and accuracy in practical applications. In conclusion, the improved Newmark program can more accurately calculate permanent displacements under seismic loads, which has far-reaching significance for the design and safety assessment of slope engineering.

摘要

基于对纽马克滑动位移法基本原理的回顾,本文借鉴陈祖煜院士的理论,即“在给定时间段(t)内,只要速度(V\gt0)出现,就必须根据加速度(a)的变化分布来确定积分域”,提出了一种基于塑性力学上限解的改进方法。改进后的纽马克程序通过C++编程将四类八个子类别的条件整合到其框架中。通过采用倾斜条带法构建速度场,该程序能够更精确地计算永久边坡位移。为了验证改进方法的有效性和准确性,对理想边坡模型和实际边坡模型都进行了计算。对于理想的岩土边坡模型,改进后的纽马克程序的结果与使用拟静力法和商业软件得到的结果一致,证明了其强大的适用性和准确性。此外,将具有不同放大系数的归一化人工地震波、洛马普列塔地震波和汶川地震波输入到西藏C水电站堆积层实际边坡模型中。将这些结果与现有数据进行比较,发现改进后的纽马克程序的计算结果与实际观测结果非常吻合。这进一步验证了该方法在实际应用中的可靠性和准确性。总之,改进后的纽马克程序能够更准确地计算地震荷载作用下的永久位移,这对边坡工程的设计和安全评估具有深远意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db95/11979068/d2d209016ed5/41598_2025_94895_Fig1_HTML.jpg

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