基于离散元的碎片尺寸随机的颗粒破碎模拟方法
TU41; 依据天然堆石颗粒的破碎特性,构建了子颗粒粒径随机的碎片替换模式,即立方体替换模式.采用立方体替换模式可得到符合天然堆石颗粒破碎特性的子颗粒粒径分布.单轴压缩模拟试验表明,与子颗粒粒径固定的4球和18球替换模式相比,立方体替换模式能提高试样级配曲线的连续性,并改善中间粒径缺失的问题.对比不同子颗粒数量替换模式的模拟结果可知,立方体替换模式对应试样的接触数目和平均接触力分布符合替换模式子颗粒数量对分布的影响规律;剔除无接触和单接触颗粒后,3种替换模式的细观力学特性的变化规律一致,表明立方体替换模式可以用于模拟粗粒土的颗粒破碎....
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Published in | 东北大学学报(自然科学版) Vol. 44; no. 3; pp. 408 - 414 |
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Main Authors | , |
Format | Journal Article |
Language | Chinese |
Published |
大连理工大学水利工程学院,辽宁大连 116024
24.03.2023
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Subjects | |
Online Access | Get full text |
ISSN | 1005-3026 |
DOI | 10.12068/j.issn.1005-3026.2023.03.014 |
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Abstract | TU41; 依据天然堆石颗粒的破碎特性,构建了子颗粒粒径随机的碎片替换模式,即立方体替换模式.采用立方体替换模式可得到符合天然堆石颗粒破碎特性的子颗粒粒径分布.单轴压缩模拟试验表明,与子颗粒粒径固定的4球和18球替换模式相比,立方体替换模式能提高试样级配曲线的连续性,并改善中间粒径缺失的问题.对比不同子颗粒数量替换模式的模拟结果可知,立方体替换模式对应试样的接触数目和平均接触力分布符合替换模式子颗粒数量对分布的影响规律;剔除无接触和单接触颗粒后,3种替换模式的细观力学特性的变化规律一致,表明立方体替换模式可以用于模拟粗粒土的颗粒破碎. |
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AbstractList | TU41; 依据天然堆石颗粒的破碎特性,构建了子颗粒粒径随机的碎片替换模式,即立方体替换模式.采用立方体替换模式可得到符合天然堆石颗粒破碎特性的子颗粒粒径分布.单轴压缩模拟试验表明,与子颗粒粒径固定的4球和18球替换模式相比,立方体替换模式能提高试样级配曲线的连续性,并改善中间粒径缺失的问题.对比不同子颗粒数量替换模式的模拟结果可知,立方体替换模式对应试样的接触数目和平均接触力分布符合替换模式子颗粒数量对分布的影响规律;剔除无接触和单接触颗粒后,3种替换模式的细观力学特性的变化规律一致,表明立方体替换模式可以用于模拟粗粒土的颗粒破碎. |
Author | 赵飞翔 迟世春 |
AuthorAffiliation | 大连理工大学水利工程学院,辽宁大连 116024 |
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Author_FL | CHI Shi-chun ZHAO Fei-xiang |
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Keywords | 碎片替换模式 细观力学特性 离散元 粒径分布 粗粒土 |
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Snippet | TU41; 依据天然堆石颗粒的破碎特性,构建了子颗粒粒径随机的碎片替换模式,即立方体替换模式.采用立方体替换模式可得到符合天然堆石颗粒破碎特性的子颗粒粒径分布.单轴压缩... |
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Title | 基于离散元的碎片尺寸随机的颗粒破碎模拟方法 |
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