Application of Markov model in wetland change dynamics in Tianjin Coastal Area, China

被引:48
|
作者
Ma, C. [1 ,2 ]
Zhang, G. Y. [1 ]
Zhang, X. C. [1 ,3 ]
Zhao, Y. J. [1 ]
Li, H. Y. [2 ]
机构
[1] Minist Transport, Tianjin Res Inst Water Transport Engn, Tianjin 300456, Peoples R China
[2] Nankai Univ, Coll Environm Sci & Engn, Tianjin 300071, Peoples R China
[3] Chinese Acad Sci, Res Ctr Eco Environm Sci, Beijing 100085, Peoples R China
关键词
Tianjin Coastal Area; Markov model; wetland change; prediction; REGION;
D O I
10.1016/j.proenv.2012.01.024
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Wetland ecosystem is one of the most productive and most diverse ecosystems, which provides various important habitats for wildlife. However, the rapid urbanization caused wetland degradation. Thus, researchers all over the world pay attention to study on wetland dynamic changes in order to analyze the causes of wetland degradation. Tianjin Coastal Area is the center for the Bohai Bay. The government has prioritized integrating all the cities in the Bohai Bay Rim and fostering economic development in this area. Tianjin has various types of wetlands including coastal wetlands (estuarine waters, marshes, et al.), inland wetlands (rivers, lakes, et al.), and artificial wetlands (ponds, salt exploitation sites, et al.) according to classification in Ramsar Convention. The wetlands in Tianjin Coastal Area have high biodiversity and provide various ecological functions and values. With the development of this area, human disturbance have been increasing. The research on wetland change dynamics is the basic for wetland ecosystem protection and restoration. This area is the site of an intense land-use conflict among urbanization and natural protection. Large scale spatial and temporal land-use data were used to investigate the dynamics of wetland change in this area. Markov software was applied based on the support of GIS and RS from 1979 to 2008. The Markov chain was used as a stochastic model to make quantitative comparisons of the wetland changes between discrete time periods extending from 1979 to 2008. The wetland dynamic changes have been predicted according the Markov chain model in 2015, 2020 and 2050. Three main conclusions have been drawn from the Markov model about the wetland change dynamics in this area. (1) A continuing 'exchange' of wetland area occurs between artificial wetlands and natural wetlands categories that has little effects on the net amount of wetland but could undermine the long-term ecological function of remaining natural wetland in this area. (2) The human induced factors such as pollution and construction were the predominant causes for wetland changes. (3) The natural wetlands will be in great decline in 2020 and 2050 without enhancing wetland protection policy and increasing restoration technology. It is hoped that the dynamic model will serve as a laboratory to study the different features of the wetland problem in coastal area and to analyses different policy alternatives with an integrated, systemic approach. (C) 2011 Published by Elsevier B. V. Selection and/or peer-review under responsibility of School of Environment, Beijing Normal University.
引用
收藏
页码:252 / 262
页数:11
相关论文
共 50 条
  • [11] Land Use Pattern Change of the New Coastal Area of Tianjin Based on Multi-fractal Model
    Zhu Gao-ru
    Xu Xue-gong
    Feng Yue
    URBANIZATION AND LAND RESERVATION RESEARCH: PROCEEDINGS OF THE 2ND INTERNATIONAL CONFERENCE OF URBANIZATION AND LAND RESOURCE UTILIZATION, 2010, : 520 - +
  • [12] SPATIOTEMPORAL CHANGE OF LANDSCAPE ELASTICITY IN YANCHENG COASTAL WETLAND OF CHINA
    Han, S.
    Zhang, H. -B
    Liu, Y. -Q
    Xu, Y.
    Wang, J.
    Jiang, C.
    APPLIED ECOLOGY AND ENVIRONMENTAL RESEARCH, 2022, 20 (06): : 4935 - 4949
  • [13] MODELLING LAND-USE CHANGE DYNAMICS IN A MEDITERRANEAN COASTAL WETLAND USING CA-MARKOV CHAIN ANALYSIS
    Akin, Anil
    Berberoglu, Suha
    Erdogan, Mehmet Akif
    Donmez, Cenk
    FRESENIUS ENVIRONMENTAL BULLETIN, 2012, 21 (2A): : 386 - 396
  • [14] Landscape pattern change prediction of Jinhu coastal area based on CA-Markov model
    Su Lei
    Zhu Jinghai
    Zeng Lin
    Liu Miao
    2012 WORLD AUTOMATION CONGRESS (WAC), 2012,
  • [15] Prediction of the landscape pattern of the Yancheng Coastal Wetland, China, based on XGBoost and the MCE-CA-Markov model
    Hao, Lina
    He, Shuang
    Zhou, Jialing
    Zhao, Qian
    Lu, Xia
    Ecological Indicators, 2022, 145
  • [16] MODIFIED MESRI CREEP MODELLING OF SOFT CLAYS IN THE COASTAL AREA OF TIANJIN (CHINA)
    Zhai, Ying
    Wang, Yuanzhan
    Dong, Yanhe
    TEHNICKI VJESNIK-TECHNICAL GAZETTE, 2017, 24 (04): : 1113 - 1121
  • [17] Prediction of the landscape pattern of the Yancheng Coastal Wetland, China, based on XGBoost and the MCE-CA-Markov model
    Hao, Lina
    He, Shuang
    Zhou, Jialing
    Zhao, Qian
    Lu, Xia
    ECOLOGICAL INDICATORS, 2022, 145
  • [18] Detection of coastal wetland change in China: a case study in Hangzhou Bay
    Nan Li
    Longwei Li
    Dengsheng Lu
    Yinlong Zhang
    Ming Wu
    Wetlands Ecology and Management, 2019, 27 : 103 - 124
  • [19] Analyzing Coastal Wetland Degradation and its Key Restoration Technologies in the Coastal Area of Jiangsu, China
    Cui, Linlin
    Li, Guosheng
    Ouyang, Ninglei
    Mu, Fengyun
    Yan, Fu
    Zhang, Youtian
    Huang, Xiaoyang
    WETLANDS, 2018, 38 (03) : 525 - 537
  • [20] Detection of coastal wetland change in China: a case study in Hangzhou Bay
    Li, Nan
    Li, Longwei
    Lu, Dengsheng
    Zhang, Yinlong
    Wu, Ming
    WETLANDS ECOLOGY AND MANAGEMENT, 2019, 27 (01) : 103 - 124