首页期刊介绍通知公告编 委 会投稿须知电子期刊广告合作联系我们在线留言
 
自然因素与人类活动影响下珠江三角洲咸潮入侵研究
作者:张佳薇1  刘金贵1 2 3 4  李硕1  王煜林1 
单位:1. 广东海洋大学 海洋与气象学院, 近海海洋变化与灾害预警实验室, 广东 湛江 524088;
2. 广东省粤西热带海洋生态环境野外科学观测研究站, 广东 湛江 524088;
3. 自然资源部空间海洋遥感与应用重点实验室, 北京 100081;
4. 广东海洋大学"陆架及深远海气候、资源与环
关键词:珠江三角洲 人类活动 自然因素 咸潮入侵 气候变化 
分类号:P731.2
出版年·卷·期(页码):2026·43·第一期(27-35)
摘要:
基于2013—2022年珠江三角洲咸潮入侵调查数据,结合水文、气象、泥沙输移、河道地形资料等多源资料,系统地分析咸潮入侵特征规律,并深入探讨自然因素和人类活动对咸潮入侵的影响。研究结果表明:珠江三角洲咸潮入侵具有显著的季节性特征,主要发生于冬、春两季,且入侵频次和上溯距离均呈增加趋势;区域潮差年际变化显示潮汐动力增强,与咸潮入侵加剧的趋势一致;高强度人类活动导致输沙率降低、河道下切,叠加海平面上升的影响,进一步加剧了咸潮灾害。研究认为短期、中期、长期径流量变化是咸潮入侵的关键因素,同时潮汐动力、海平面高度和河道地形也发挥重要作用,各影响因素之间存在复杂的相互作用关系,未来需结合流域-河口动力学模型进行量化分析。
Based on saltwater intrusion survey data from 2013 to 2022, along with hydrological, meteorological, sediment transport, and river morphology data, this study systematically analyzes the characteristics of saltwater intrusion in the Pearl River Delta (PRD) and investigates the impacts of natural and anthropogenic factors. The results show that saltwater intrusion in the PRD exhibits distinct seasonal patterns, primarily occurring in winter and spring, with both the frequency and upstream extent of the intrusion showing an upward trend. Annual variations in regional tidal ranges suggest enhanced tidal dynamics, which align with the trend of intensified saltwater intrusion. Furthermore high-intensity human activities have led to reduced sediment discharges and river channel incision. These factors, combined with rising sea levels, have further exacerbated the severity of saltwater intrusion. This study identifies medium - , long - , and short-term variations in river discharge as the primary driver of saltwater intrusion, while tidal dynamics, sea-level rise, and river morphology also play significant roles. Given the complex interactions among these factors, future research should employ watershedestuary hydrodynamic models for quantitative analysis to provide a scientific basis for saltwater intrusion mitigation and water resource management in the PRD.
参考文献:
[1] 刘金贵, 李谊纯, 仉天宇. 珠江河口咸潮入侵研究进展[J]. 广东海洋大学学报, 2023, 43(1): 134-140. LIU J G, LI Y C, ZHANG T Y. Review of salinity intrusion in the Pearl River Estuary[J]. Journal of Guangdong Ocean University, 2023, 43(1): 134-140.
[2] 王彪. 珠江河口盐水入侵[D]. 上海: 华东师范大学, 2011. WANG B. Salt intrusion in the Pearl River Estuary[D]. Shanghai: East China Normal University, 2011.
[3] ZHANG W, FENG H C, ZHENG J H, et al. Numerical simulation and analysis of saltwater intrusion lengths in the Pearl River Delta, China[J]. Journal of Coastal Research, 2013, 29(2): 372-382.
[4] 宋晓飞, 石荣贵, 孙羚晏, 等. 珠江口磨刀门盐水入侵的现状与成因分析[J]. 海洋通报, 2014, 33(1): 7-15. SONG X F, SHI R G, SUN L Y, et al. Status and cause of saltwater intrusion in Modaomen, Pearl River estuary[J]. Marine Science Bulletin, 2014, 33(1): 7-15.
[5] LIU B J, PENG S H, LIAO Y Y, et al. The characteristics and causes of increasingly severe saltwater intrusion in Pearl River Estuary[J]. Estuarine, Coastal and Shelf Science, 2019, 220: 54-63.
[6] ZHANG W, RUAN X H, ZHENG J H, et al. Long-term change in tidal dynamics and its cause in the Pearl River Delta, China[J]. Geomorphology, 2010, 120(3-4): 209-223.
[7] 齐庆辉, 诸裕良, 谢宁宁. 珠江河口航道整治工程对咸潮上溯的影响研究[J]. 水运工程, 2015(10): 138-143. QI Q H, ZHU Y L, XIE N N. Effect of waterway regulation engineering on saltwater intrusion in Pearl River estuary[J]. Port & Waterway Engineering, 2015(10): 138-143.
[8] 靳高阳, 朱三华, 曹一豪. 西北江三角洲河床变化对咸潮上溯影响的数值模拟研究[J]. 人民珠江, 2024, 45(3): 89-98. JIN G Y, ZHU S H, CAO Y H. Numerical simulation study on influence of riverbed changes on saltwater intrusion in Northwest River Delta[J]. Pearl River, 2024, 45(3): 89-98.
[9] WU S H, CHENG H Q, XU Y J, et al. Decadal changes in bathymetry of the Yangtze River Estuary: human impacts and potential saltwater intrusion[J]. Estuarine, Coastal and Shelf Science, 2016, 182: 158-169.
[10] 张朋. 径流和潮汐作用下的河口盐水入侵机理实验研究[D]. 广州: 华南理工大学, 2017. ZHANG P. Experimental study on the mechanism of saltwater intrusion in Estuary with runoff and tide[D]. Guangzhou: South China University of Technology, 2017.
[11] HOITINK A J F, WANG Z B, VERMEULEN B, et al. Tidal controls on river delta morphology[J]. Nature Geoscience, 2017, 10(9): 637-645.
[12] 黄新华, 曾水泉, 易绍桢, 等. 西江三角洲的咸害问题[J]. 地理学报, 1962, 28(2): 137-148. HUANG X H, ZENG S Q, YI S Z, et al. Salinization issues in the West River Delta[J]. Acta Geographica Sinica, 1962, 28(2): 137-148.
[13] GONG W P, SHEN J. The response of salt intrusion to changes in river discharge and tidal mixing during the dry season in the Modaomen Estuary, China[J]. Continental Shelf Research, 2011, 31(7-8): 769-788.
[14] 陈文龙, 邹华志, 董延军. 磨刀门水道咸潮上溯动力特性分析[J]. 水科学进展, 2014, 25(5): 713-723. CHEN W L, ZOU H Z, DONG Y J. Hydrodynamic of saltwater intrusion in the Modaomen waterway[J]. Advances in Water Science, 2014, 25(5): 713-723.
[15] 邹华志, 万东辉, 刘晋, 等. 珠江河口咸潮上溯规律及水库-闸泵群抑咸调度[M]. 北京: 中国环境出版集团, 2018: 55-153. ZOU H Z, WANG D H, LIU J, et al. Upstream saltwater intrusion patterns in the Pearl River Estuary and management of salinity intrusion through reservoirs, gates, and pumping stations[M]. Beijing: China Environment Publishing Group, 2018: 55-153.
[16] 徐龑文, 张蔚. 潮汐河口盐水入侵理论解析研究[M]. 南京: 河海大学出版社, 2018: 36-48. XU Y W, ZHANG W. Study on analytical theory of salt intrusion in tidal estuaries[M]. Nanjing: HoHai University Press, 2018: 36-48.
[17] LIU C J, YU M H, JIA L W, et al. Impacts of physical alterations on salt transport during the dry season in the Modaomen Estuary, Pearl River Delta, China[J]. Estuarine, Coastal and Shelf Science, 2019, 227: 106345.
[18] 包芸, 刘杰斌, 任杰, 等. 磨刀门水道盐水强烈上溯规律和动力机制研究[J]. 中国科学G辑: 物理学力学天文学, 2009, 39(10): 1527-1534. BAO Y, LIU J B, REN J, et al. Research of law and dynamic mechanism for strong saline water intrusion in Modaomen Waterway[J]. Scientia Sinica Physica, Mechanica & Astronomica, 2009, 39(10): 1527-1534.
[19] WANG B, ZHU J R, WU H, et al. Dynamics of saltwater intrusion in the Modaomen Waterway of the Pearl River Estuary[J]. Science China Earth Sciences, 2012, 55(11): 1901-1918.
[20] ABD-ELHAMID H F, JAVADI A A. An investigation into control of saltwater intrusion considering the effects of climate change and sea level rise[C]//Proceeding of 20th Salt Water Intrusion Meeting. Naples: 2008: 4-7.
[21] CHUN J A, LIM C, KIM D, et al. Assessing impacts of climate change and sea-level rise on seawater intrusion in a coastal aquifer [J]. Water, 2018, 10(4): 357.
[22] 韩志远, 田向平, 刘峰. 珠江磨刀门水道咸潮上溯加剧的原因[J]. 海洋学研究, 2010, 28(2): 52-59. HAN Z Y, TIAN X P, LIU F. Study on the causes of intensified saline water intrusion into Modaomen Estuary of the Zhujiang River in recent years[J]. Journal of Marine Sciences, 2010, 28(2): 52-59.
[23] LIU B J, LIAO Y Y, YAN S L, et al. Dynamic characteristics of saltwater intrusion in the Pearl River Estuary, China[J]. Natural Hazards, 2017, 89(3): 1097-1117.
[24] WU Z Y, SAITO Y, ZHAO D N, et al. Impact of human activities on subaqueous topographic change in Lingding Bay of the Pearl River estuary, China, during 1955—2013[J]. Scientific Reports, 2016, 6(1): 37742.
[25] YANG L Z, LIU F, GONG W P, et al. Morphological response of Lingding bay in the Pearl River Estuary to human intervention in recent decades[J]. Ocean & Coastal Management, 2019, 176: 1-10.
[26] CARRETERO S, RAPAGLIA J, BOKUNIEWICZ H, et al. Impact of sea-level rise on saltwater intrusion length into the coastal aquifer, Partido de La Costa, Argentina[J]. Continental Shelf Research, 2013, 61-62: 62-70.
[27] LI L J, WANG C N, PAREJA-ROMAN L F, et al. Effects of typhoon on saltwater intrusion in a high discharge estuary[J]. Journal of Geophysical Research: Oceans, 2022, 127(8): e2021JC018206.
[28] ESLAMI S, HOEKSTRA P, MINDERHOUD P S J, et al. Projections of salt intrusion in a mega-delta under climatic and anthropogenic stressors[J]. Communications Earth & Environment, 2021, 2(1): 142.
[29] GUO Q N, HUANG J W, ZHOU Z F, et al. Experiment and numerical simulation of seawater intrusion under the influences of tidal fluctuation and groundwater exploitation in coastal multilayered aquifers[J]. Geofluids, 2019, 2019: 2316271.
[30] CHANG S W, CLEMENT T P, SIMPSON M J, et al. Does sealevel rise have an impact on saltwater intrusion?[J]. Advances in Water resources, 2011, 34(10): 1283-1291.
[31] RALSTON D K, GEYER W R, LERCZAK J A. Subtidal salinity and velocity in the Hudson River Estuary: observations and modeling[J]. Journal of Physical Oceanography, 2008, 38(4): 753-770.
[32] 潘明婕, 孔俊, 杨芳, 等. 台风路径对磨刀门水道咸潮上溯动力过程的影响机制[J]. 热带海洋学报, 2019, 38(3): 53-67. PAN M J, KONG J, YANG F, et al. The particular influence caused by typhoon path on salt intrusion in the Modaomen Waterway, China[J]. Journal of Tropical Oceanography, 2019, 38(3): 53-67.
[33] CHEN Y X, ZUO J C, ZOU H Z, et al. Responses of estuarine salinity and transport processes to sea level rise in the Zhujiang (Pearl River) Estuary[J]. Acta Oceanologica Sinica, 2016, 35(5): 38-48.
[34] YUAN R, ZHU J R, WANG B. Impact of sea-level rise on saltwater intrusion in the Pearl River Estuary[J]. Journal of Coastal Research, 2015, 31(2): 477-487.
[35] 王久鑫. 海平面上升对珠江口水动力影响数值模拟研究[D]. 大连: 大连理工大学, 2020. WANG J X. Numerical simulation of the effect of sea level rise on the hydrodynamics of the Pearl River Estuary[D]. Dalian: Dalian University of Technology, 2020.
[36] YANG F, XU Y W, ZHANG W, et al. Assessing the influence of typhoons on salt intrusion in the Modaomen Estuary within the Pearl River Delta, China[J]. Journal of Marine Science and Engineering, 2024, 12(1): 22.
服务与反馈:
文章下载】【发表评论】【查看评论】【加入收藏
 
 海洋预报编辑部 地址:北京海淀大慧寺路8号 电话:010-62105776
投稿网址:http://www.hyyb.org.cn
邮箱:bjb@nmefc.cn
本系统由北京博渊星辰网络科技有限公司设计开发 技术支持电话:010-63361626