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Monitoring urbanization and its implications in a mega city from space: Spatiotemporal patterns and its indicators

机译:从太空监测城市化及其对大城市的影响:时空格局及其指标

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摘要

Rapid and invasive urbanization has been associated with depletion of natural resources (vegetation and water resources), which in turn deteriorates the landscape structure and conditions in the local environment. Rapid increase in population due to the migration from rural areas is one of the critical issues of the urban growth. Urbanisation in India is drastically changing the land cover and often resulting in the sprawl. The sprawl regions often lack basic amenities such as treated water supply, sanitation, etc. This necessitates regular monitoring and understanding of the rate of urban development in order to ensure the sustenance of natural resources .Urban sprawl is the extent of urbanization which leads to the development of urban forms with the destruction of ecology and natural landforms. The rate of change of land use and extent of urban sprawl can be efficiently visualized and modelled with the help of geo-informatics. The knowledge of urban area, especially the growth magnitude, shape geometry, and spatial pattern is essential to understand the growth and characteristics of urbanization process. Urban pattern, shape and growth can be quantified using spatial metrics. This communication quantifies the urbanisation and associated growth pattern in Delhi. Spatial data of four decades were analysed to understand land over and land use dynamics. Further the region was divided into 4 zones and into circles of 1 km incrementing radius to understand and quantify the local spatial changes. Results of the landscape metrics indicate that the urban center was highly aggregated and the outskirts and the buffer regions were in the verge of aggregating urban patches. Shannon's Entropy index clearly depicted the outgrowth of sprawl areas in different zones of Delhi.
机译:快速的侵入性城市化与自然资源(植被和水资源)的枯竭有关,反过来又恶化了当地环境的景观结构和条件。由于从农村地区迁移而导致的人口迅速增加是城市增长的关键问题之一。印度的城市化正在急剧改变土地覆盖范围,并经常导致土地泛滥。蔓延地区经常缺乏基本设施,例如经过处理的供水,卫生设施等。这需要定期监测和了解城市发展速度,以确保自然资源的维持。城市蔓延是导致城市化的程度。破坏生态和自然地貌,发展城市形态。借助地理信息学,可以有效地可视化和建模土地使用的变化率和城市扩张的程度。对城市地区的了解,特别是增长幅度,形状几何形状和空间格局,对于了解城市化过程的增长和特征至关重要。可以使用空间指标来量化城市格局,形状和增长。这种交流量化了德里的城市化及其相关的增长方式。分析了四个十年的空间数据,以了解土地和土地利用动态。进一步将该区域划分为4个区域,并分成半径递增1 km的圆圈,以了解和量化局部空间变化。景观指标的结果表明,城市中心高度聚集,郊区和缓冲区处于城市群聚集的边缘。香农的熵指数清楚地描述了德里不同地区的蔓延区域的增长。

著录项

  • 来源
    《Journal of Environmental Management》 |2015年第15期|67-81|共15页
  • 作者单位

    Energy & Wetlands Research Group, Center for Ecological Sciences [CES], Indian Institute of Science, Bangalore, Karnataka 560 012, India,Centre for Sustainable Technologies (ASTRA), Indian Institute of Science, Bangalore, Karnataka 560 012, India,Centre for Infrastructure, Sustainable Transportation and Urban Planning [CiSTUP], Indian Institute of Science, Bangalore, Karnataka 560 012, India;

    Energy & Wetlands Research Group, Center for Ecological Sciences [CES], Indian Institute of Science, Bangalore, Karnataka 560 012, India,Centre for Sustainable Technologies (ASTRA), Indian Institute of Science, Bangalore, Karnataka 560 012, India;

    Energy & Wetlands Research Group, Center for Ecological Sciences [CES], Indian Institute of Science, Bangalore, Karnataka 560 012, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Urbanization; Urban sprawl; Delhi; Remote sensing; Spatial metrics;

    机译:城市化;城市扩张;德里;遥感;空间指标;

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