Remote Sensing and GIS-based Analysis of Land Surface Temperature Dynamics and Land Use Changes in Vijayawada, India

Year : 2024 | Volume :15 | Issue : 01 | Page : 20-27
By

A.V. Kiranmai

  1. Associate Professor & HoD Department of Electronics and Communication Engineering, Potti Sriramulu Chalavadi Mallikarjuna Rao College of Engineering and Technology, Vijayawada Andhra Pradesh India

Abstract

The alteration of land use/land cover (LULC) has significant environmental consequences since it is strongly linked to long-lasting land degradation and leads to diverse environmental alterations. It is crucial to monitor the locations and distributions of changes in land use and land cover (LULC) to comprehend the connections between government actions, policy choices, and resulting LULC activities. Modern systems for protecting the environment and managing natural resources now depend heavily on changes in land use and cover. Variations in land surface temperature are also explained by this phenomenon. Using the Normalised Difference Vegetation Index (NDVI) and Land Surface Temperature (LST), this study examines the various effects of land conversion on the environment. The information gathered from the Landsat 8 OLI sensor in Vijayawada city is used to accomplish this.

Keywords: Land use/Land cover (LULC), land surface temperature (LST), normalized vegetation index (NDVI), remote sensing

[This article belongs to Journal of Remote Sensing & GIS(jorsg)]

How to cite this article: A.V. Kiranmai. Remote Sensing and GIS-based Analysis of Land Surface Temperature Dynamics and Land Use Changes in Vijayawada, India. Journal of Remote Sensing & GIS. 2024; 15(01):20-27.
How to cite this URL: A.V. Kiranmai. Remote Sensing and GIS-based Analysis of Land Surface Temperature Dynamics and Land Use Changes in Vijayawada, India. Journal of Remote Sensing & GIS. 2024; 15(01):20-27. Available from: https://journals.stmjournals.com/jorsg/article=2024/view=150242

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Regular Issue Subscription Review Article
Volume 15
Issue 01
Received January 16, 2024
Accepted May 7, 2024
Published May 10, 2024