岩土力学 ›› 2026, Vol. 47 ›› Issue (8): 2733-2747.doi: 10.16285/j.rsm.2025.0945CSTR: 32223.14.j.rsm.2025.0945

• 基础理论与实验研究 • 上一篇    下一篇

多降雨模式下卵漂石混合土边坡入渗特性研究

黄瑞瑞1,李文博2,李旭东2,崔皓东1,王金龙1,黄振伟3, 4   

  1. 1. 长江科学院 水利部岩土力学与工程重点实验室,湖北 武汉 430010;2. 西藏大唐扎拉水电开发有限公司,四川 成都 610000; 3. 长江岩土工程有限公司,湖北 武汉 430010;4. 武汉大学 水资源工程与调度全国重点实验室,湖北 武汉 430072
  • 收稿日期:2025-09-01 接受日期:2025-12-11 出版日期:2026-08-11 发布日期:2026-08-18
  • 通讯作者: 崔皓东,男,1976年生,博士,正高级工程师,主要从事水工渗流及地下水方面的研究工作。E-mail:Seep3d@qq.com
  • 作者简介:黄瑞瑞,男,1998年生,硕士,工程师,主要从事岩土体地下水渗流等方面的研究工作。E-mail:huangruirui@mail.crsri.cn
  • 基金资助:
    国家重点研发计划(No. 2023YFC3209500);中国大唐集团有限公司科研项目(No. CWEME-2404XZ-F002);中央级公益性科研院所基本科研业务费(No. CKSF20241024/YT, No. CKSF2025721/YT)

Infiltration characteristics of cobble-boulder mixed soil slopes under multiple rainfall patterns

HUANG Rui-rui1, LI Wen-bo2, LI Xu-dong2, CUI Hao-dong1, WANG Jin-long1, HUANG Zhen-wei3, 4   

  1. 1. Key Laboratory of Geotechnical Mechanics and Engineering of Ministry of Water Resources, Changjiang River Scientific Research Institute, Wuhan, Hubei 430010, China; 2. Xizang Datang Zhala Hydropower Development Co., Ltd., Chengdu, Sichuan 610000, China; 3. Changjiang Geotechnical Engineering Co., Ltd., Wuhan, Hubei 430010, China; 4. State Key Laboratory of Water Resources Engineering and Management, Wuhan University, Wuhan, Hubei 430072, China
  • Received:2025-09-01 Accepted:2025-12-11 Online:2026-08-11 Published:2026-08-18
  • Supported by:
    This work was supported by the National Key Research and Development Program of China(2023YFC3209500), the Scientific Research Projects of China Datang Corporation Limited(CWEME-2404XZ-F002) and the Fundamental Research Funds for Central-Level Non-profit Research Institutes (CKSF20241024/YT, CKSF2025721/YT).

摘要: 降雨入渗是我国西南地区卵漂石混合土边坡失稳关键诱因之一,为揭示其在降雨作用下的入渗特性及湿润锋迁移规律,依托西藏扎拉水电站库区边坡开展原位人工降雨试验,分析不同降雨强度与历时条件下体积含水率和孔隙气压的动态响应特征,结合水气二相流数值模拟开展非饱和参数反演与验证,进一步探明降雨-停雨双阶段条件下湿润锋的时空演化过程,并建立湿润锋迁移预测公式。结果表明:(1)卵漂石混合土含水率变化主要受降雨强度、历时及埋深控制,表现为浅层响应敏感、深层滞后衰减,含水率变化曲线斜率表征降雨强度及埋深的相对大小;表层不易形成饱和带,孔隙气压对入渗阻滞作用不显著。(2)湿润锋运移过程可划分为降雨阶段的快速推进和停雨阶段的缓慢下移并趋于稳定,其入渗速率与深度受降雨强度与历时显著影响。(3)提出的预测公式在多种降雨模式下均具有较高精度。该研究成果可为卵漂石混合土边坡的降雨渗流分析与工程设计提供理论支持与参数基础。

关键词: 卵漂石混合土, 原位降雨试验, 水气二相流, 参数反演, 入渗模型

Abstract: Rainfall infiltration is a critical factor triggering the instability of cobble-boulder mixed soil slopes in Southwest China. To reveal the infiltration characteristics and wetting front migration of such soils under rainfall conditions, in-situ artificial rainfall experiments were conducted on slopes in the Zhala hydropower station reservoir area in Xizang. The dynamic responses of volumetric water content and pore air pressure were monitored under varying rainfall intensities and durations. In combination with two-phase flow numerical simulations, inverse modeling and validation of unsaturated parameters were performed, and the spatiotemporal evolution of wetting fronts under rainfall–post-rainfall conditions was further revealed. A predictive formula for wetting front migration was then established. Results indicate that water content variations are predominantly governed by rainfall intensity, duration, and burial depth, with shallow layers responding sensitively and deep layers exhibiting lag and attenuation. The slope of the water content curve characterizes the relative magnitude of rainfall intensity and depth, surface saturation rarely occurs, and pore air pressure has negligible retardation effects on infiltration. Wetting front migration consists of a rapid advancement during rainfall phase and a slow stabilization phase after rainfall, with both the rate and depth strongly dependent on rainfall intensity and duration. The proposed predictive formula shows high accuracy across different rainfall scenarios. These findings provide theoretical support and parameter references for rainfall-induced seepage analysis and engineering design of cobble-boulder mixed soil slopes.

Key words: cobble-boulder mixed soil, in-situ rainfall infiltration test, water-air two phase flow, parameter inversion, infiltration model

中图分类号: P 641
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