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Spatio-temporal Variability of Vegetation and Its Relation to Different Hydroclimatic Factors in Bangladesh

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Journal Heliyon
Specialty Social Sciences
Date 2023 Aug 3
PMID 37533977
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Abstract

Bangladesh, known for its remarkable ecological diversity, is faced with the pressing challenges of contemporary climate change. It is crucial to understand how vegetation dynamics respond to different climatic factors. Hence, this study aimed to investigate the spatio-temporal variations of vegetation and their interconnectedness with a range of hydroclimatic factors. The majority of the dataset used in this study relies on MODIS satellite imagery. The Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), precipitation (PPT), evapotranspiration (ET), and land surface temperature (LST) data from the years 2001 to 2020 have been obtained from Google Earth Engine (GEE). In this study, the temporal variations of the NDVI, EVI, PPT, ET, and LST have been investigated. The findings of the Mann-Kendall trend test indicate noticeable trends in both the NDVI and the EVI. Sen's slope value for NDVI and EVI is 0.00424/year and 0.00256/year, respectively. Compared to NDVI, EVI has shown a stronger connection with hydroclimatic factors. In particular, EVI exhibits a better relationship with ET, as indicated by a r value of 0.37 and a P-value of 6.81 × 10, whereas NDVI exhibits a r value of 0.17 and a P-value of 2.96 × 10. Furthermore, ET can explain 17% of the fluctuation in NDVI, and no correlation between NDVI and PPT has been found. The results clarify the significant relationship between the EVI and hydroclimatic factors and highlight the efficiency of the EVI for detecting vegetation changes.

Citing Articles

Influence of climate variability and land cover dynamics on the spatio-temporal NDVI patterns in western hydrological regions of Bangladesh.

Akhter J, Afroz R Heliyon. 2024; 10(12):e32625.

PMID: 38975232 PMC: 11226806. DOI: 10.1016/j.heliyon.2024.e32625.

References
1.
Hamid M, Khuroo A, Malik A, Ahmad R, Singh C, Dolezal J . Early Evidence of Shifts in Alpine Summit Vegetation: A Case Study From Kashmir Himalaya. Front Plant Sci. 2020; 11:421. PMC: 7194130. DOI: 10.3389/fpls.2020.00421. View

2.
Chen W, Bai S, Zhao H, Han X, Li L . Spatiotemporal analysis and potential impact factors of vegetation variation in the karst region of Southwest China. Environ Sci Pollut Res Int. 2021; 28(43):61258-61273. DOI: 10.1007/s11356-021-14988-y. View

3.
Sarkar S . COVID-19 Susceptibility Mapping Using Multicriteria Evaluation. Disaster Med Public Health Prep. 2020; 14(4):521-537. DOI: 10.1017/dmp.2020.175. View

4.
Sarkar S, Saroar M, Chakraborty T . Navigating nature's toll: Assessing the ecological impact of the refugee crisis in Cox's Bazar, Bangladesh. Heliyon. 2023; 9(7):e18255. PMC: 10368913. DOI: 10.1016/j.heliyon.2023.e18255. View

5.
Nemani R, Keeling C, Hashimoto H, Jolly W, Piper S, Tucker C . Climate-driven increases in global terrestrial net primary production from 1982 to 1999. Science. 2003; 300(5625):1560-3. DOI: 10.1126/science.1082750. View