投稿指南
来稿应自觉遵守国家有关著作权法律法规,不得侵犯他人版权或其他权利,如果出现问题作者文责自负,而且本刊将依法追究侵权行为给本刊造成的损失责任。本刊对录用稿有修改、删节权。经本刊通知进行修改的稿件或被采用的稿件,作者必须保证本刊的独立发表权。 一、投稿方式: 1、 请从 我刊官网 直接投稿 。 2、 请 从我编辑部编辑的推广链接进入我刊投审稿系统进行投稿。 二、稿件著作权: 1、 投稿人保证其向我刊所投之作品是其本人或与他人合作创作之成果,或对所投作品拥有合法的著作权,无第三人对其作品提出可成立之权利主张。 2、 投稿人保证向我刊所投之稿件,尚未在任何媒体上发表。 3、 投稿人保证其作品不含有违反宪法、法律及损害社会公共利益之内容。 4、 投稿人向我刊所投之作品不得同时向第三方投送,即不允许一稿多投。 5、 投稿人授予我刊享有作品专有使用权的方式包括但不限于:通过网络向公众传播、复制、摘编、表演、播放、展览、发行、摄制电影、电视、录像制品、录制录音制品、制作数字化制品、改编、翻译、注释、编辑,以及出版、许可其他媒体、网站及单位转载、摘编、播放、录制、翻译、注释、编辑、改编、摄制。 6、 第5条所述之网络是指通过我刊官网。 7、 投稿人委托我刊声明,未经我方许可,任何网站、媒体、组织不得转载、摘编其作品。

隧道排水诱发地下水位下降对地表植被影响的分(6)

来源:灌溉排水学报 【在线投稿】 栏目:期刊导读 时间:2021-03-22
作者:网站采编
关键词:
摘要:[5]LI L, TU W, SHI S, et al. Mechanism of water inrush in tunnel construction in karst area[J]. Geomatics, Natural Hazards and Risk, 2016, 7(S1): 35. [6]WANG G F, LYU H M, SHEN J, et al. Evaluation of

[5]LI L, TU W, SHI S, et al. Mechanism of water inrush in tunnel construction in karst area[J]. Geomatics, Natural Hazards and Risk, 2016, 7(S1): 35.

[6]WANG G F, LYU H M, SHEN J, et al. Evaluation of environmental risk due to metro system construction in Jinan, China[J]. International Journal of Environmental Research and Public Health, 2017, 14(10): 1114.

[7]LIU J, SHEN L, WANG Z, et al. Response of plants water uptake patterns to tunnels excavation based on stable isotopes in a karst trough valley[J]. Journal of Hydrology, 2019, 571: 485.

[8]ZHENG W, WANG X, TANG Y, et al. Use of tree rings as indicator for groundwater level drawdown caused by tunnel excavation in Zhongliang Mountains, Chongqing, Southwest China[J]. Environmental Earth Sciences, 2017, 76(15): 522.

[9]王芳其, 郑炜, 徐华, 等. 岩溶山区隧道地下水漏失对植物生长的影响分析及对策[J]. 隧道建设(中英文), 2018, 38(6): 915.

WANG Fangqi, ZHENG Wei, XU Hua, et al. Influence of groundwater loss induced by karst tunnel construction on growth of surrounding vegetation and its countermeasures[J]. Tunnel Construction, 2018, 38(6): 915.

[10]刘志春, 王梦恕. 石板山隧道与地下水环境相互作用评价技术研究[J]. 土木工程学报, 2015, 48(增刊1): 321.

LIU Zhichun, WANG Mengshu. Research on evaluation technique of interaction between Shibanshan tunnel and groundwater environment[J]. China Civil Engineering Journal, 2015, 48(S1): 321.

[11]白明洲, 陈云, 师海. 山岭隧道施工诱发地下水位下降环境风险评价[J]. 铁道工程学报, 2016, 33(1): 5.

BAI Mingzhou, CHEN Yun, SHI Hai. Environmental risk assessment of underground water level falling induced by construction in mountain tunnel[J]. Journal of Railway Engineering Society, 2016, 33(1): 5.

[12]姚红志, 张晓旭, 顾博渊, 等. 生态敏感区特长公路隧道建设对地下水环境扰动评价研究[J]. 环境工程, 2015, 33(增刊1): 755.

YAO Hongzhi, ZHANG Xiaoxu, GU Boyuan, et al. Research on disturbance of groundwater environment by construction of extra-long highway tunnel in ecological sensitive area[J]. Environmental Engineering, 2015, 33(S1): 755.

[13]LIU J, LIU D, SONG K. Evaluation of the influence caused by tunnel construction on groundwater environment: a case study of Tongluoshan Tunnel, China[J]. Advances in Materials Science and Engineering, 2015: 1.

[14]马成. 高风险生态敏感区隧道排水量控制标准研究[J]. 公路交通科技(应用技术版), 2016, 12(5): 33.

MA Cheng. Study on control standard of tunnel drainage in high risk eco-sensitive area[J]. Journal of Highway and Transportation Research and Development(Applied Technology Edition), 2016, 12(5): 33.

[15]陈海帆. 基于植被需求的山岭隧道排水量确定方法与限排标准研究[D]. 赣州: 江西理工, 2015.

CHEN Haifan. Study on method of determining water drainage and limiting drainage standard for mountain tunnel based on ecological requirement[D]. Ganzhou: Jiangxi University of Science and Technology, 2015.

[16]成盛. 基于生态需水保护的山岭隧道地下水限排研究[D]. 重庆: 重庆大学, 2016.

CHENG Sheng. Research on groundwater limiting emissions for mountain tunnel based on ecological water demand[D]. Chongqing: Chongqing University, 2016.

[17]CHENG P, ZHAO L, LUO Z, et al. Analytical solution for the limiting drainage of a mountain tunnel based on area-well theory[J]. Tunnelling and Underground Space Technology, 2019, 84: 22.

[18]李清华. 基于生态需水的隧道排水量研究[J]. 施工技术, 2018, 47(1): 103.

LI Qinghua. Research on tunnel displacement based on ecological water requirement[J]. Construction Technology, 2018, 47(1): 103.

[19]GOKDEMIR C, RUBIN Y, Li X, et al. Vulnerability analysis method of vegetation due to groundwater table drawdown induced by tunnel drainage[J]. Advances in Water Resources, 2019, 133: .

[20]PHILIP J R. Plant water relations: Some physical aspects[J]. Annual Review of Plant Physiology, 1966, 17(1): 245.

[21]SARKAR S, CHAUDHURI S. Bacterial wilt and its management[J]. Current Science, 2016, 110(8): 1439.

[22]PEDERSEN O, PERATA P, VOESENEK L A C J. Flooding and low oxygen responses in plants[J]. Functional Plant Biology, 2017, 44(9): 358.

[23]ASSI A T, BLAKE J, MOHTAR R H, et al. Soil aggregates structure-based approach for quantifying the field capacity, permanent wilting point and available water capacity[J]. Irrigation Science, 2019, 37: 511.

[24]GLINSKI J. Soil physical conditions and plant roots[M]. Boca Raton: CRC press, 2017.

[25]DASGUPTA P, DAS B S, SEN S K. Soil water potential and recoverable water stress in drought tolerant and susceptible rice varieties[J]. Agricultural Water Management, 2015, 152: 110.

[26]CONSOLI S, STAGNO F, VANELLA D, et al. Partial root-zone drying irrigation in orange orchards: Effects on water use and crop production characteristics[J]. European Journal of Agronomy, 2017, 82: 190.

文章来源:《灌溉排水学报》 网址: http://www.ggpsxbzz.cn/qikandaodu/2021/0322/644.html



上一篇:海绵城市建设对城市面源污染治理和排水的改善
下一篇:关于路桥过渡段的路基路面施工技术浅析

灌溉排水学报投稿 | 灌溉排水学报编辑部| 灌溉排水学报版面费 | 灌溉排水学报论文发表 | 灌溉排水学报最新目录
Copyright © 2018 《灌溉排水学报》杂志社 版权所有
投稿电话: 投稿邮箱: