Cheechouyang Faichia

ORCID: 0000-0003-0785-1337
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About
Contact & Profiles
Research Areas
  • Land Use and Ecosystem Services
  • Remote Sensing and Land Use
  • Remote Sensing in Agriculture
  • Water Quality and Pollution Assessment
  • Urban Green Space and Health
  • Water Quality Monitoring and Analysis
  • Remote-Sensing Image Classification
  • Urban Heat Island Mitigation

Northeast Normal University
2020-2022

Land use/cover change (LUCC) is one of the causes global climate and environmental change. Understanding rapid LUCC in urbanized areas vital for natural resources management sustainable development. This study primarily considered Vientiane, capital Laos, which experienced due to both anthropogenic factors. The used geographical information system (GIS) combined with ERDAS TerrSet technologies objectively process ground surveyed remotely obtained data order investigate historical as well...

10.3390/su12208410 article EN Sustainability 2020-10-13

The global and regional land use/cover changes (LUCCs) are experiencing widespread changes, particularly in Baghdad City, the oldest city of Iraq, where it lacks ecological restoration environmental management actions at present. To date, multiple uses urban construction-related expansion, population increase, socioeconomic development. Comprehensive evaluation understanding effect sprawl its rapid LUCC great importance to managing surface resources for sustainable present research applied...

10.3390/rs13204034 article EN cc-by Remote Sensing 2021-10-09

Erlong Lake is considered one of the largest lakes in midwest Jilin, China, and drinking water resources neighboring cities. The present study aims to explore usage Landsat TM5, ETM7, OLI8 images assess quality (V-phenol, dissolved oxygen (DO), NH4-N, NO3-N) Lake, Jilin province, northeast China. Thirteen multispectral were used this for May, July, August, September 2000, 2001, 2002, October 2020. Radiometric atmospheric corrections applied all images. All situ parameters strongly correlated...

10.3390/rs13091603 article EN cc-by Remote Sensing 2021-04-21

Understanding future landscape risk pattern change (FLRPC) scenarios will help people manage and utilize natural resources. In this study, we have selected a variety of anthropogenic factors as parameters for FLRPC assessment. Land use/cover (LUCC) land surface temperature (LST) are regarded significant that resulted in large-scale environmental changes. Result analysis the previous LUCC from 1985 to 2020 showed construction water body (WB) increased by 669.09 183.16 km2, respectively. The...

10.3390/su14148568 article EN Sustainability 2022-07-13
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