不同振碾条件下高坝堆石料的颗粒破碎与渗透特性
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作者:
作者单位:

1.重庆大学 土木工程学院, 重庆 400045;2.长江地球物理探测(武汉)有限公司,武汉 430010;3.长江勘测规划设计研究有限责任公司,武汉 430010;4.国家大坝安全工程技术研究中心,武汉 430010

作者简介:

李镕佳(2002-),男,主要从事地下能源结构研究,E-mail:982132983@qq.com。
LI Rongjia (2002- ), main research interest: geotechnical energy structure, E-mail: 982132983@qq.com.

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中图分类号:

TV641.4

基金项目:

新疆葛洲坝玉龙喀什水利枢纽开发有限公司科研项目(YLKS-SW-2022-016)


Particle breakage and permeability characteristics of high dam rockfill under different vibratory compacting conditions
Author:
Affiliation:

1.College of Civil Engineering, Chongqing University, Chongqing 400045, P. R. China;2.Changjiang Geophysical Exploration and Testing Co., Ltd., Wuhan 430010, P. R. China;3.Changjiang Institute of Survey, Planning, Design and Research Co., Ltd., Wuhan 430010, P. R. China;4.National Dam Safety Research Center, Wuhan 430010, P. R. China

Fund Project:

Yulong Kashgar Special Scientific Research Project (No. YLKS-SW-2022-016)

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    摘要:

    在高土石坝工程中,堆石料的破碎和渗透特性是影响坝料物理力学特性的重要指标,经振碾处理后的堆石料质量控制是堆石坝施工的关键,研究振碾后堆石料的颗粒破碎与渗透特性具有重要意义。以玉龙喀什水电站缩尺堆石料为对象,通过室内振碾试验,研究不同振碾时长下堆石料的颗粒破碎特性。进行常水头渗透试验,测算振碾试验后堆石料的渗透系数,并分析得出不同振碾时长对堆石料渗透系数变化的影响规律。根据颗粒级配曲线建立三维结构模型,对其进行渗流模拟,对比不同振碾时长下堆石料孔隙结构、渗透特性的变化,对比室内试验与模型模拟结果,对室内试验所得结论进行验证。对影响渗透系数的部分参数进行拟合分析,获得渗透系数的计算公式。结果表明:在振碾作用下,堆石料颗粒级配曲线变缓,颗粒排列更加紧密,在振碾4 min后,堆石料孔隙率由初始值42%降至15%~17%,渗透系数由0.162 cm/s降至0.08~0.09 cm/s,水流在孔隙结构中流动更加缓慢,建立的三维结构模型较好地反映了这一过程。

    Abstract:

    In the domain of high earth and rock dam engineering, the particle breakage and permeability characteristics of rockfill materials are important indicators that affect the physical and mechanical properties of dam materials. The quality control of rockfill materials post-vibratory crushing treatment is paramount for the construction of rockfill dams. A comprehensive study of the particle breakage and permeability characteristics of rockfill materials after vibratory compacting is, therefore, of the utmost importance. Indoor vibration tests were conducted on the scaled-down rockfill materials of the Yulongkashi Hydropower Station to investigate the particle breakage characteristics of rockfill materials under different vibration times. Laboratory constant-head penetration experiments were designed to measure the permeability coefficient of rockfill materials after vibratory compacting. The effect of varying vibration times on the change of permeability coefficient of the rockfill materials was analysed. A three-dimensional structural model was established based on the particle size distribution curve. Subsequently, a simulation of seepage was conducted on the model. Changes in the pore structure and permeability characteristics of rockfill materials under different vibration and compacting durations were compared. The results of indoor tests and model simulations were compared to validate the conclusions obtained from the indoor tests.Finally, some parameters affecting the permeability coefficient were subjected to fitting analysis, and the calculation formula of the permeability coefficient was obtained. The research results indicated that under the influence of vibration and compacting, the particle size distribution curve of the rockfill materials became smoother and the particle arrangement became more compact. After vibration compacting for four minutes, the porosity of the rockfill materials decreased from the initial value of 42% to 15%-17%, and the permeability coefficient decreased from 0.162 cm/s to 0.08-0.09 cm/s, and water flow within the pore structure slowed down. The established three-dimensional structural model well reflected this process.

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李镕佳,张建清,王成龙,王峰.不同振碾条件下高坝堆石料的颗粒破碎与渗透特性[J].土木与环境工程学报(中英文),2026,48(3):144-153. LI Rongjia, ZHANG Jianqing, WANG Chenglong, WANG Feng. Particle breakage and permeability characteristics of high dam rockfill under different vibratory compacting conditions[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(3):144-153.10.11835/j. issn.2096-6717.2024.029

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  • 收稿日期:2024-02-05
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  • 在线发布日期: 2026-06-10
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