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水力发电学报 ›› 2026, Vol. 45 ›› Issue (8): 71-83.doi: 10.11660/slfdxb.20260807

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堆石料状态相关最终流变模型及工程应用

  

  • 出版日期:2026-08-25 发布日期:2026-08-25

State-dependent final rheological model for rockfill materials and its engineering application

  • Online:2026-08-25 Published:2026-08-25

摘要: 堆石料流变特性是导致堆石坝工后沉降的主要因素之一,提高压实质量可有效减小坝体工后沉降。本文针对不同初始孔隙比试样,开展大型三轴流变试验,建立考虑孔隙比影响的状态相关最终流变模型,分析压实质量对坝体长期变形的影响。结果表明:堆石料流变具有显著的状态相关性,初始孔隙比越小,流变速率衰减越快,最终流变量越小;修正剑桥模型剪胀方程可较好描述堆石料流变剪胀关系,流变临胀应力比随孔隙比增大呈指数衰减;建立的最终流变模型含5个参数,能统一描述不同压实状态下的流变行为,可用于压实质量空间变异性对坝体长期变形影响的精细化模拟;堆石料压实质量对坝体工后沉降影响显著,初始孔隙比越大,沉降增长越明显,顺河向位移增长较小。

关键词: 土石坝, 堆石料, 流变特性, 初始孔隙比, 变形预测

Abstract: The rheological properties of rockfill materials are a primary factor contributing to the post-construction settlement of a rockfill dam, and improving compaction quality can reduce such settlement effectively. In this study, large-scale triaxial creep tests are conducted on rockfill specimens with different initial void ratios. We develop a compaction state-dependent final rheological model considering the void ratio effect, and examine the influence of compaction quality on the long-term deformation of a rockfill dam. The results indicate the rheological behavior of rockfill materials depends significantly on the compaction state-the smaller the initial void ratio, the bigger the attenuation rate of creep velocity and the smaller the final creep deformation. The dilatancy equation of the modified Cam-clay model well describes the rheological dilatancy relationship of rockfill materials, and the rheological critical dilatancy stress ratio decreases exponentially with the void ratio. Our final rheological model, equipped with 5 parameters, can uniformly characterize the final rheological behavior of rockfill materials under different compaction states; It is applicable to refined simulations of the effect of spatial variability in compaction quality on the long-term deformation of a rockfill dam. Compaction quality imposes a remarkable influence on the post-construction settlement of rockfill dams-the larger the initial void ratio, the more significant the increase in settlement, while the growth of downstream displacement is relatively smaller.

Key words: earth-rock dam, rockfill material, rheological property, initial void ratio, deformation prediction

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