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2023, 06, v.54;No.596 176-188
轻型格构边坡防护数值应力及稳定性分析
基金项目(Foundation): 内蒙古自治区科技重大专项(2020ZD0021);; 内蒙古自治区关键技术攻关计划项目(2021GG0344);; 内蒙古自治区直属高校基本科研业务费项目(JY20220051,JY20220049);; 国家自然科学基金项目(12262031)
邮箱(Email):
DOI: 10.13928/j.cnki.wrahe.2023.06.016
投稿时间: 2022-10-21
投稿日期(年): 2022
修回时间: 2022-12-02
终审时间: 2023-05-24
终审日期(年): 2023
审稿周期(年): 1
移动端阅读
摘要:

矿山排土场坡面防护是维护排土场边坡稳定及后期生态治理的重要保障,然而传统的圬工坡面防护结构常会由于排土场边坡年沉降量过大而导致结构因应力集中而发生破坏,为此提出了一种新型的柔性轻型格构梁。【目的】为了明确该格构梁的物理力学性能、护坡时的应力变化情况和边坡浅层防护的稳定性,【方法】对其进行了物理力学试验和边坡防护数值模拟,并且对其与浅层滑动土体的相互作用进行了浅层稳定性分析。【结果】结果显示:该格构梁质量轻,密度小,具有良好的抗压、耐弯及弹性性能。在边坡防护数值模拟中,该轻型格构梁与混凝土格构梁相比,应力分布均匀,无明显的应力集中现象。同时,合理控制格构埋深hs和格构横纵间距la、lb,不仅可以提高格构防护边坡浅层土体安全系数Fs,而且还可以降低施工用料成本。【结论】结果表明:该轻型格构梁边坡不仅能够吸收和扩散结构内力,避免应力集中,而且还可以提升边坡浅层土体的稳定性,为其他的柔性护坡结构提供理论及技术参考。

Abstract:

[Objective]The slope protection of mine dump is an important guarantee for maintaining the stability of dump slope and ecological management in the later period. However, the traditional masonry slope protection structure often fails due to stress concentration due to excessive annual settlement of dump slope. Therefore, a new type of flexible light lattice beam is proposed in this paper.[Methods]In order to clarify the physical and mechanical properties of the lattice beam, the stress change during slope protection and the stability of shallow slope protection, this paper carried out physical and mechanical tests and numerical simulation of slope protection, and carried out shallow stability analysis on its interaction with shallow sliding soil.[Results]The result show that the lattice beam has light weight, low density, good compressive, bending and elastic properties. In the numerical simulation of slope protection, compared with the concrete lattice beam, the light lattice beam has uniform stress distribution and no obvious stress concentration. At the same time, reasonable control of lattice buried depth hs and lattice horizontal and vertical spacing la, lb, not only can improve the lattice protection slope shallow soil safety factor Fs, but also can reduce the cost of construction materials.[Conclusion]The result show that the light lattice beam slope protection can not only absorb and diffuse the internal force of the structure, avoid stress concentration, but also improve the stability of the shallow soil of the slope, which can provide theoretical and technical reference for other flexible slope protection structures.

参考文献

[1] 何小林,雷鸣,何刚雁.边坡防护技术的研究现状与发展趋势[J].科技资讯,2012(13):57-58.HE Xiaolin,LEI Ming,HE Gangyan.Research status and development trend of slope protection technology[J].Science and Technology Information,2012 (13):57-58.

[2] 刘泽,陈丽,何矾,等.边坡筋锚三维网柔性防护结构的稳定性分析[J].水利水电科技进展,2020,40(4):65-70.LIU Ze,CHEN Li,HE Fang,et al.Stability analysis of flexible protection structure for slope reinforced anchor 3D-geomat[J].Advances in Science and Technology of Water Resources,2020,40 (4):65-70.

[3] 王希萌,张志红,白顺果.复杂条件下格宾网箱生态护坡稳定性分析[J].水资源与水工程学报,2021,32(4):221-228.WANG Ximeng,ZHANG Zhihong,BAI Shunguo.Stability analysis of slopes with ecological gabion cages under complex conditions[J].Journal of Water Resources and Water Engineering,2021,32 (4):221-228.

[4] WANG Deyong,ZUN Qingjun,WANG Jing,et al.Three-dimensional geonet ecological slope protection technology and its engineering application[J].IOP Conference Series:Materials Science and Engineering,2020,794(1):6-7.

[5] 陈飞,郭顺,邵海,等.生态护坡结构在稀土矿山滑坡防治中的应用研究[J].矿业研究与开发,2019,39(5):44-48.CHEN Fei,GUO Shun,SHAO Hai,et al.Application of ecological slope protection structure in landslide control of rare earth mines[J].Mining Research and Development,2019,39 (5):44-48.

[6] 李文秀,郭玉贵,戴兰芳.柔性防护条件下露天矿山边坡稳定性模拟分析[J].岩石力学与工程学报,2006,25(2):246-249.LI Wenxiu,GUO Yugui,DAI Lanfang.Simulation analysis of slope stability under flexible protection in open-pit mine[J].Chinese Journal of Rock Mechanics and Engineerin,2006,25 (2):246-249.

[7] 韩纪坤,赵进勇,孟闻远,等.一种新型竹材生态护岸型式及其稳定性模拟分析[J].水利水电技术,2021,52(1):176-184.HAN Jikun,ZHAO Jinyong,MENG Wenyuan ,et al.Analysis on a new type of bamboo ecological bank revetment and its stability simulation[J].Water Resources and Hydropower Engineering,2021,52 (1):176-184.

[8] 张小平,包承纲,施斌,等.柔性混凝土的抗拉特性试验研究[J].水利水电技术,2001,32(7):39-43.ZHANG Xiaoping,BAO Chenggang,SHI Bin ,et al.Experimental study on tensile of flexible concrete[J].Water Resources and Hydropower Engineering,2001,32(7):39-43.

[9] SU Hui,WU Dongyue,LU Yinjie,et al.Experimental and numerical study on stability performance of new ecological slope protection using bolt-hinge anchored block[J].Ecological Engineering,2021,172(1):106409.

[10] XU Yingzi,SU Chao,HUANG Zhen,et al.Research on the protection of expansive soil slopes under heavy rainfall by anchor-reinforced vegetation systems[J].Geotextiles and Geomembranes,2022,50(6):1147-1158.

[11] ROBERT W D.Design and Repair for Surficial Slope Failures[J].Practice Periodical on Structural Design and Construction,1996,1(3):5.

[12] 连继峰,罗强,蒋良潍,等.顺坡渗流条件下土质边坡浅层稳定分析[J].岩土工程学报,2015,37(8):1440-1448.LIAN Jifeng,LUO Qiang,JIANG Liangwei,et al.Shallow stability analysis of soil slopes under seepage parallel to slope surface[J].Chinese Journal of Geotechnical Engineering,2015,37 (8):1440-1448.

[13] 中国轻工业联合会.绝热用挤塑聚苯乙烯泡沫塑料(XPS):GB/T 10801.2—2018[S].北京:中国标准出版社,2018.China Light Industry Confederation.Rigid Extruded Polystyrene Foam Board for Thermal Insulation(XPS):GB/T 10801.2—2018[S].Beijing:China Standards Press,2018.

[14] 霍银磊,刘新朗,张新昌.泡沫塑料的单轴压缩力学性能(上)[J].包装工程,2007,28(6):22-24.HUO Yinlei,LIU Xinlang,ZHANG Xinchang.Mechanical Performance of Foaming Plastic in Uniaxial Compression (Part I) [J].Packaging Engineering,2007,28(6):22-24.

[15] 霍银磊,刘新朗,张新昌.泡沫塑料的单轴压缩力学性能(下)[J].包装工程,2007,28(12):14-16.HUO Yinlei,LIU Xinlang,ZHANG Xinchang.Mechanical performance of foaming plastic in uniaxial compression (Part Ⅱ) [J].Packaging Engineering,2007,28 (12):14-16.

[16] 费康,张建伟.ABAQUS 在岩土工程中的应用[M].北京:中国水利水电出版社,2010.FEI Kang,ZHANG Jianwei.Application of ABAQUS in geotechnical engineering[M].Beijing:China Water Resources and Hydropower Press,2010.

[17] 秦宇,唐小微,李靖.一种装配式格构梁护坡结构研究[J].水电能源科学,2020,38(11):105-107.QIN Yu,TANG Xiaowei,LI Jing.Research on a prefabricated lattice beam slope protection structure[J].Water Resources and Power,2020,38 (11):105-107.

[18] 国家质检总局.混凝土结构设计规范:GB 50010—2010[S].北京:中国标准出版社,2010.State Administration of Quality Supervision.Code for design of concrete structures:GB 50010—2010[S].Beijing:China Standard Press,2010.

[19] 聂忆华,唐赛乾,徐暘,等.人字形骨架路基护坡模型试验及数值模拟[J].科学技术与工程,2018,18(16):114-120.NIE Yihua,TANG Saigan,XU Yang,et al.Model test and numerical simulation of herringbone skeleton subgrade slope protection[J].Science and Technology and Engineering,2018,18 (16):114-120.

[20] 连继峰,罗强,谢涛,等.路基边坡浅层稳定的骨架防护效应及结构优化[J].铁道学报,2017,39(7):133-141.LIAN Jifeng,LUO Qiang,XIE Tao,et al.Mechanics effect of farme protection for shallow stability of soil slope and farme structure optimization[J].Journal of the China Railway Society,2017,39 (7):133-141.

[21] 连继峰,罗强,蒋良潍,等.矩形骨架防护路基边坡浅层稳定性及优化设计[J].岩土工程学报,,2016,38(S2):228-233.LIAN Jifeng,LUO Qiang,JIANG Liangwei,et al.Shallow stability of subgrade slopes protected by rectangular frame structures and structural optimization[J].Chinese Journal of Geotechnical Engineering 2016,38 (S2):228-233.

[22] 李广信.高等土力学[M].北京:清华大学出版社,2004.LI Guangxin.Advanced Soil Mechanics[M].Beijing:Tsinghua University Press,2004.

基本信息:

DOI:10.13928/j.cnki.wrahe.2023.06.016

中图分类号:TD804

引用信息:

[1]郝廷伟,李驰,高瑜,等.轻型格构边坡防护数值应力及稳定性分析[J],2023,54(06):176-188.DOI:10.13928/j.cnki.wrahe.2023.06.016.

基金信息:

内蒙古自治区科技重大专项(2020ZD0021);; 内蒙古自治区关键技术攻关计划项目(2021GG0344);; 内蒙古自治区直属高校基本科研业务费项目(JY20220051,JY20220049);; 国家自然科学基金项目(12262031)

投稿时间:

2022-10-21

投稿日期(年):

2022

修回时间:

2022-12-02

终审时间:

2023-05-24

终审日期(年):

2023

审稿周期(年):

1

引用

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