Investigation of water induced damages triggered by rainfall in east Gansu and the implications
-
摘要:
黄土地区降雨导致的水毁灾害常有发生,造成严重的工程灾害和人员伤亡。对已有水毁灾害的调查和成因分析,可为防治区灾害提供经验。2021年8月中旬至10月初,在陇东陕甘边界黄土地区持续了50多天降雨,引发了大量水毁灾害,导致G211国道中断两周。文中介绍了这次降雨在G211沿线及其附近的村镇引起水毁灾害的现场调查情况,发生在村镇的水毁灾害有黄土窑洞塌陷、土质房屋和夯土围墙倒塌;发生在道路上的水毁灾害有路基外缘沉陷开裂,路基内侧边坡崩塌、斜坡浅层滑移及滑坡泥流等地质灾害。这些灾害规模小、影响范围不大;但数量多、致灾性较为普遍。文章还调查了植被对黄土斜坡稳定性的有利和不利影响。针对水毁灾害,分析其原因并提出了村镇和道路建设中针对此类水毁灾害的预防措施。
Abstract:Flood-induced disaster caused by rainfall in loess area often occurs, causing serious engineering disasters and casualties. The investigation and cause analysis of existing flood-induced disaster can provide experience for disaster prevention and control areas. From mid-August to early October, 2021, more than 50 days of rainfall triggered a large number of Flood-induced disaster in the loess area of east Gansu Province. The damages made G211 national highway close for two weeks. This paper introduces the on-the-spot investigation of the flood disaster caused by this rainfall in villages and towns along route 211 and its vicinity, it happened in the villages and towns are mainly the collapse of loess living caves, collapse of earth-houses and fall of earth-walls. Geo-disasters on the road are subsidence and cracking of the soil filling subgrade, collapse of the cutting slope at inner side of the road, shallow flow-slide of the main slope. These disasters are small in scale and weak in influence, but it is large in number and serious in disastrous. We also investigated the positive and passive effects of vegetation on the loess slope. Based on investigation of the flood-induced disaster, this paper analyzes its causes, and puts forward some preventive measures in the construction of villages, towns and roads.
-
Key words:
- east Gansu Province /
- flood-induced disaster /
- loess living cave /
- shallow slide /
- landslide-mudflow /
- slope collapse
-
[1] 李萍, 李同录, 王阿丹, 等. 黄土中水分迁移规律现场试验研究[J]. 岩土力学,2013,34(5):1331 − 1339. [LI Ping, LI Tonglu, WANG Adan, et al. Field experimental study on water migration in loess[J]. Geotechnical Mechanics,2013,34(5):1331 − 1339. (in Chinese with English abstract)
LI Ping, LI Tonglu, WANG Adan, et al. Field experimental study on water migration in loess [J]. Geotechnical Mechanics, 2013, 34(5): 1331-1339. (in Chinese with English abstract)
[2] 张常亮, 李萍, 李同录, 等. 黄土中降雨入渗规律的现场监测研究[J]. 水利学报,2014,45(6):728 − 734. [ZHANG Changliang, LI Ping, LI Tonglu, et al. In-situ observation on rainfall infiltration in loess[J]. Journal of Hydraulic Engineering,2014,45(6):728 − 734. (in Chinese with English abstract)
ZHANG Changliang, LI Ping, LI Tonglu, et al. In-situ observation on rainfall infiltration in loess [J]. Journal of Hydraulic Engineering, 2014, 45(6): 728-734. (in Chinese with English abstract)
[3] 李萍, 李同录, 付昱凯, 等. 非饱和黄土中降雨入渗规律的现场监测研究[J]. 中南大学学报(自然科学版),2014,45(10):3551 − 3560. [LI Ping, LI Tonglu, FU Yukai, et al. In-situ observation on regularities of rainfall infiltration in loess[J]. Journal of Central South University (Science and Technology),2014,45(10):3551 − 3560. (in Chinese with English abstract)
LI Ping, LI Tonglu, FU Yukai, et al. In-situ observation on regularities of rainfall infiltration in loess[J]. Journal of Central South University ( Science and Technology), 2014, 45(10): 3551-3560. (in Chinese with English abstract)
[4] HOU X K, VANAPALLI S K, LI T L. Water flow in unsaturated soils subjected to multiple infiltration events[J]. Canadian Geotechnical Journal. 2020, 57(3): 366 − 376.
[5] LI P, LI T L, VANAPALLI S K. Influence of environmental factors on the wetting front depth: A case study in the Loess Plateau[J]. Engineering Geology,2016,214:1 − 10. doi: 10.1016/j.enggeo.2016.09.008
[6] 刘海松, 倪万魁, 杨泓全, 等. 黄土路基降雨入渗现场试验[J]. 地球科学与环境学报,2008,30(1):60 − 63. [LIU Haisong, NI Wankui, YANG Hongquan, et al. Site test on infiltration of loess subgrade under rainfall circumstance[J]. Journal of Earth Science and Environment,2008,30(1):60 − 63. (in Chinese with English abstract) doi: 10.3969/j.issn.1672-6561.2008.01.009
LIU Haisong, NI Wankui, YANG Hongquan, et al. Site Test on Infiltration of Loess Subgrade under Rainfall Circumstance [J]. Journal of Earth Science and Environment, 2008, 30(1): 60-63. (in Chinese with English abstract) doi: 10.3969/j.issn.1672-6561.2008.01.009
[7] 李萍, 李同录, 侯晓坤, 等. 黄土中毛细上升速率的现场测试[J]. 河海大学学报(自然科学版),2014,42(6):503 − 507. [LI Ping, LI Tonglu, HOU Xiaokun et al. Field experiment on rate of capillary rise in loess[J]. Journal of Hehai University (Natural Sciences),2014,42(6):503 − 507. (in Chinese with English abstract)
LI Ping, LI Tonglu, HOU Xiaokun et al. Field experiment on rate of capillary rise in loess, Journal of Hehai University (Natural Sciences), 2014, 42(6): 503-507. (in Chinese with English abstract)
[8] 雷祥义, 魏青珂. 陕北伤亡性黄土崩塌成因与对策研究[J]. 岩土工程学报,1998,20(1):64 − 69. [LEI Xiangyi, WEI Qingke. Study on the origin and countermeasure of the casualty loess landfalls in the Northern Shaanxi[J]. Chinese Journal of Geotechnical Engineering,1998,20(1):64 − 69. (in Chinese with English abstract)
LEI Xiangyi, WEI Qingke. Study on the origin and countermeasure of the casualty loess landfalls in the Northern Shaanxi[J]. Chinese Journal of Geotechnical Engineering. 1998, 20(1): 64-69. (in Chinese with English abstract)
[9] 莫海军. 公路水毁灾害综合防治措施分析[J]. 大科技,2019,31:105 − 106. [MO Haijun. Analysis of comprehensive prevention and control measures of highway flood disaster[J]. Super Science,2019,31:105 − 106. (in Chinese with English abstract)
MO Haijun. Analysis of comprehensive prevention and control measures of highway flood disaster [J]. Super Science, 2019, (31): 105-106. (in Chinese with English abstract)
[10] 熊玲. 分析公路水毁病害形成机制与治理[J]. 黑龙江交通科技,2021,44(2):60 − 61. [XIONG Ling. Analysis of the formation mechanism and treatment of highway flooding[J]. Communications Science and Technology Heilongjiang,2021,44(2):60 − 61. (in Chinese with English abstract) doi: 10.3969/j.issn.1008-3383.2021.02.027
XIONG Ling. Analysis of the formation mechanism and treatment of highway flooding [J]. Communications Science and Technology Heilongjiang, 2021, 44 (2): 60-61. (in Chinese with English abstract) doi: 10.3969/j.issn.1008-3383.2021.02.027
[11] 江漫雪. 在建二级公路边坡滑塌的病害调查与形成机制研究[J]. 交通世界,2021(20):2. [JIANG Manxue. Disease investigation and formation mechanism of slope collapse of secondary highway under construction[J]. Transpo World,2021(20):2. (in Chinese with English abstract)
JIANG Manxue. Disease investigation and formation mechanism of slope collapse of secondary highway under construction [J]. Transpo World, 2021, (20): 2. (in Chinese with English abstract)
[12] WANG G L, LI T L, XING X L, et al. Research on loess flow-slides induced by rainfall in July 2013 in Yan’an, NW China[J]. Environmental Earth Sciences,2014,73(12):7933 − 7944.
[13] 孙乾征, 江兴元. 非饱和理论下各因素变化对浅层滑坡影响[J]. 公路,2020,65(4):36 − 41. [SUN Qianzheng, JIANG Xingyuan. Influence of various factors on shallow landslide under unsaturated theory[J]. Highway,2020,65(4):36 − 41. (in Chinese with English abstract)
SUN Qianzheng, JIANG Xingyuan. Influence of various factors on shallow landslide under unsaturated theory. Highway, 2020, 65(04): 36-41. (in Chinese with English abstract)
[14] 邢鲜丽, 李同录, 李萍, 等. 黄土抗剪强度与含水率的变化规律[J]. 水文地质工程地质,2014,41(3):53 − 59. [XING Xianli, LI Tonglu, LI Ping, et al. An analysis of the influence of declined water levels on the reliability of the pipeline protection retaining wall[J]. Hydrogeology & Engineering Geology,2014,41(3):53 − 59. (in Chinese with English abstract)
XING Xianli, LI Tonglu, LI Ping, et al. An analysis of the influence of declined water levels on the reliability of the pipeline protection retaining wall [J]. Hydrogeology & Engineering Geology, 2014, 41(3): 53-59. (in Chinese with English abstract)
[15] VANAPALLI S K, FREDLUND D G, PUFAHL D E, et al. Model for the prediction of shear strength with respect to soil suction[J]. Canadian Geotechnical Journal,1996,33(1):379 − 392.
[16] 蔺晓燕, 李同录, 张子然, 等. 陕西华县高楼村黄土滑坡—泥流的成因分析[J]. 工程地质学报,2013,21(2):282 − 288. [LIN Xiaoyan, LI Tonglu, ZHANG Ziran, et al. Cause of gaoloucun loess flowslide in Huaxian County, Shaanxi Province[J]. Journal of Engineering Geology,2013,21(2):282 − 288. (in Chinese with English abstract) doi: 10.3969/j.issn.1004-9665.2013.02.014
LIN Xiaoyan, LI Tonglu, ZHANG Ziran, et al. Cause of gaoloucun loess flowslide in Huaxian County, Shaanxi Province [J]. Journal of Engineering Geology, 2013, 21 (2): 282-288. (in Chinese with English abstract) doi: 10.3969/j.issn.1004-9665.2013.02.014
[17] 习羽, 李同录, 邢鲜丽. 灌渠渗漏诱发的黄土滑坡泥流触发机理分析[J]. 地球科学与环境学报,2017,39(1):135 − 142. [XI Yu, LI Tonglu, XING Xianli. Analysis of the triggering mechanism of a loess flowslide induced by water canal leakage[J]. Journal of Earth Sciences and Environment,2017,39(1):135 − 142. (in Chinese with English abstract) doi: 10.3969/j.issn.1672-6561.2017.01.011
XI Yu, LI Tonglu, XING Xianli. Analysis of the Triggering Mechanism of a Loess Flowslide Induced by Water Canal Leakage [J]. Journal of Earth Sciences and Environment, 2017, 39(1): 135-142. (in Chinese with English abstract) doi: 10.3969/j.issn.1672-6561.2017.01.011
[18] 吴宏伟. 大气–植被–土体相互作用:理论与机理[J]. 岩土工程学报,2017,39(1):1 − 47. [WU Hongwei. Atmosphere-plant-soil interactions: Theories and mechanisms[J]. Chinese Journal of Geotechnical Engineering,2017,39(1):1 − 47. (in Chinese with English abstract) doi: 10.11779/CJGE201701001
WU Hongwei. Atmosphere-plant-soil interactions: theories and mechanisms [J]. Chinese Journal of Geotechnical Engineering, 2017, 39(1): 1-47. (in Chinese with English abstract) doi: 10.11779/CJGE201701001
[19] 徐则民, 黄润秋, 唐正光, 等. 植被护坡的局限性及其对深层滑坡孕育的贡献[J]. 岩石力学与工程学报,2005,24(3):438 − 450. [XU Zemin, HUANG Runqiu, TANG Zhengguang, et al. Limitation of biotechnical slope protection and contribution of vegetation to deep seated landslide preparation[J]. Journal of Rock Mechanics and Engineering,2005,24(3):438 − 450. (in Chinese with English abstract) doi: 10.3321/j.issn:1000-6915.2005.03.013
XU Zemin, HUANG Runqiu, TANG Zhengguang, et al. Limitation of biotechnical slope protection and contribution of vegetation to deep seated landslide preparation [J]. Journal of Rock Mechanics and Engineering, 2005, 24(3): 438-450. (in Chinese with English abstract) doi: 10.3321/j.issn:1000-6915.2005.03.013
[20] 孙长忠, 黄宝龙, 陈海滨, 等. 黄土高原人工植被与其水分环境相互作用关系研究[J]. 北京林业大学学报,1998,20(3):10 − 17. [SUN Changzhong, HUANG Baolong, CHEN Haibin, et al. Interaction between soil water conditions and different kinds of artificial plant cover in the loess plateau[J]. Journal of Beijing Forestry University,1998,20(3):10 − 17. (in Chinese with English abstract)
SUN Changzhong, HUANG Baolong, CHEN Haibin, et al. Interaction between soil water conditions and different kinds of artificial plant cover in the loess plateau[J]. Journal of Beijing Forestry University, 1998, 20(3): 10-17. (in Chinese with English abstract)
[21] 韩勇, 郑粉莉, 徐锡蒙, 等. 子午岭林区浅层滑坡侵蚀与植被的关系—以富县“7·21”特大暴雨为例[J]. 生态学报,2016,36(15):4635 − 4643. [HAN Yong, ZHENG Fenli, XU Ximeng, et al. Relationship between shallow landslide erosion and vegetation in the Ziwuling forest area: A case study of the “7·21” disaster in Fuxian County
J]. Acta Ecologica Sinica,2016,36(15):4635 − 4643. (in Chinese with English abstract)
[22] 侯庆春, 韩蕊莲, 韩仕锋. 黄土高原人工林草地“土壤干层”问题初探[J]. 中国水土保持,1999,5(3):13 − 16. [HOU Qingchun, HAN Ruilian, HAN Shifeng. Preliminary study on the problem of "dry soil layer" of artificial grassland in Loess Plateau[J]. China Soil and Water Conservation,1999,5(3):13 − 16. (in Chinese with English abstract)
HOU Qingchun, HAN Ruilian, HAN Shifeng. Preliminary study on the problem of "dry soil layer" of artificial grassland in Loess Plateau [J]. China Soil and Water Conservation, 1999, 5(3): 13-16. (in Chinese with English abstract)