湿地生态系统的制图与监测:以印度旁遮普地区哈里克和克舒普尔湿地为例

M. Arora, Sashikanta Sahoo, S. Sharma, S. S. Hassan, Brijendra Pateria
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摘要

湿地在生态可持续发展中具有重要作用。它们保持平衡的环境条件,过滤地表水和地下水,调节当地的天气条件。但由于气候变化和人类活动的影响,当今世界湿地正在迅速萎缩,湿地的消失搅动了当地的环境条件,并与水土条件有关。本文主要研究了气候变化对印度旁遮普地区Harike和Keshopur湿地生态系统的影响。哈里克湿地是印度北部最大的湿地之一,被指定为拉姆萨尔湿地。利用陆地卫星图像和气候参数(包括地表温度和降雨量)提取了2009 - 2020年湿地的时空信息。陆地卫星数据分两个阶段进行分析:季风前和季风后。湿地被划分为五个不同的类别:农业、水域、建筑、水生植被和水生植被。这些分析表明,近十年来,湿地面积不断减少,许多湿地已被农用地转化和建设。强烈的人为活动导致两区湿地的变化较大。本研究明确了湿地生态系统监测对决策者的可持续管理至关重要,并得出结论,需要大幅度减少高度生物多样性的湿地面积。
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MAPPING AND MONITORING OF WETLAND ECOSYSTEMS: A CASE STUDY ON HARIKE AND KESHOPUR WETLAND OVER PUNJAB REGION, INDIA
Wetland plays a vital role in sustainable ecological development. They hold balanced environment conditions and filter the surface and sub-surface water and moderate the local weather condition. But now-a-days wetlands are shrinking quickly all over world due to climate change & anthropogenic activities and extinction of wetlands agitates the local environmental conditions with contexts to water and soil conditions. This study is mainly focused on climate change impacts on wetland ecosystems over Harike and Keshopur wetland in Punjab region, India. Harike wetland is one of largest wetland in northern part of India, which is designated as Ramsar site. The Landsat imageries and climate parameters (includes land surface temperature and rainfall) have been used to extract spatial and temporal information over wetlands during period from 2009 to 2020. Landsat data have been analysed in two phases: Pre-monsoon and Post-Monsoon. Wetland area has been classified into five different classes: agriculture, water, built-up, aquatic vegetation1, and aquatic vegetation2. These analyses showed that wetland area has been reduced over a period of ten years and much area has been converted in agricultural land and built-up. The intense anthropogenic activities have resulted more changes in the wetland over both regions. The present study specifies that wetland ecosystem monitoring is essential for policy makers for sustainable management and also concluded that the significant reduction of highly biodiversity wetland area is required to conserve.
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