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A cohesion loss model for determining residual strength of deep bedded sandstone
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作者 SONG Zhi-xiang ZHANG Jun-wen +12 位作者 ZHANG Yu-jie WU Shao-kang BAI Xu-yang ZHANG Li-chao ZHANG Sui-lin ZHANG Xu-wen FAN Guang-chen LI Wen-jun ZENG Ban-quan WANG Shi-ji SUN Xiao-yan SANG Pei-miao LI Ning 《Journal of Central South University》 2025年第7期2593-2618,共26页
Rock residual strength,as an important input parameter,plays an indispensable role in proposing the reasonable and scientific scheme about stope design,underground tunnel excavation and stability evaluation of deep ch... Rock residual strength,as an important input parameter,plays an indispensable role in proposing the reasonable and scientific scheme about stope design,underground tunnel excavation and stability evaluation of deep chambers.Therefore,previous residual strength models of rocks established were reviewed.And corresponding related problems were stated.Subsequently,starting from the effects of bedding and whole life-cycle evolution process,series of triaxial mechanical tests of deep bedded sandstone with five bedding angles were conducted under different confining pressures.Then,six residual strength models considering the effects of bedding and whole life-cycle evolution process were established and evaluated.Finally,a cohesion loss model for determining residual strength of deep bedded sandstone was verified.The results showed that the effects of bedding and whole life-cycle evolution process had both significant influences on the evolution characteristic of residual strength of deep bedded sandstone.Additionally,residual strength parameters:residual cohesion and residual internal friction angle of deep bedded sandstone were not constant,which both significantly changed with increasing bedding angle.Besides,the cohesion loss model was the most suitable for determining and estimating the residual strength of bedded rocks,which could provide more accurate theoretical guidance for the stability control of deep chambers. 展开更多
关键词 residual strength deep bedded sandstone whole life-cycle evolution process cohesion loss model rock mechanics
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基于耦合推断的时间外延性辅助数据偏倚修正——以森林蓄积量估计为例 被引量:1
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作者 梅安琪 侯正阳 +3 位作者 徐晴 陈芳婷 齐元浩 贾东瑾 《林业科学》 EI CAS CSCD 北大核心 2024年第8期79-94,共16页
【目的】1)量化“过期”模型对推断总体参数(总体均值、方差)的影响;2)提出利用基于模型辅助的估计量修正模型保质期引起的推断偏倚;3)评估度量误差模型对推断偏倚的修正作用。【方法】在基于设计、基于模型和基于模型辅助3种推断框架下... 【目的】1)量化“过期”模型对推断总体参数(总体均值、方差)的影响;2)提出利用基于模型辅助的估计量修正模型保质期引起的推断偏倚;3)评估度量误差模型对推断偏倚的修正作用。【方法】在基于设计、基于模型和基于模型辅助3种推断框架下,应用度量误差模型,修正“过期”模型对总体参数(总体均值、方差)的影响。【结果】1)将二阶抽样的估计值作为参照,对比基于模型的统计推断估计值,无论是线性回归模型还是度量误差模型,其均值估计值与二阶抽样下总体均值估计值6.774 m^(3)·hm^(−2)接近,其方差估计值的平均值为0.117,远小于基于设计的方差估计值0.965,精度提升平均为87.93%;2)遥感数据“过期”引起模型失效,对总体均值估计产生较大偏差,总体均值估计值的偏移程度随着遥感数据获取时间的推移加剧;3)在基于模型辅助推断框架下,线性回归模型和度量误差模型的总体均值估计值均在6.5~6.8波动,波动范围较小,变化趋势相同,二者均值估计值差异较小,后者推断精度更高,精度提升范围为5.71%~22.50%,平均为13.34%。【结论】1)遥感数据作为辅助信息可有效提高估计精度;2)当遥感数据“过期”时模型失效,总体均值估计值偏倚增大,方差估计值被低估;3)基于模型辅助的统计推断可解决模型“过期”造成的推断偏倚问题,保持估计量近似无偏性,且精度与概率样本的样本量呈正相关;4)度量误差模型可降低总体方差估计值,但仅使用度量误差模型无法消除时间外延性遥感数据产生的推断偏倚。 展开更多
关键词 统计推断 森林资源调查 抽样设计 遥感数据 “过期”模型
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