Analisis Suhu Permukaan Tanah dan Kelembaban Tanah Menggunakan Interpretasi Citra Landsat 8 OLI Diperkebunan Nanas PT. Great Giant Pineapple

Authors

  • Adelia Dewi Briany Universitas Lampung
  • Ridwan Ridwan Universitas Lampung
  • Elhamida Rezkia Amien Universitas Lampung
  • Sandi Asmara Universitas Lampung

DOI:

https://doi.org/10.23960/jabe.v4i1.10722
Abstract View: 90

Abstract

PT. Great Giant Pineapple (GGP) is the largest processed pineapple producer in Indonesia, cultivating pineapples in a long-term monoculture system, which has the potential to cause land degradation. To understand land conditions more accurately, this study integrates remote sensing technology with Landsat 8 OLI/TIRS satellite image analysis to measure land surface temperature (LST) and soil moisture using the Soil Moisture Index (SMI). Field data were collected from a 2000-hectare area in PT. GGP and analyzed using ArcGIS and Google Earth Pro software. The results showed that the NDVI values ranged from -0.157 to 0.634, with significant variations in value distribution from 2021 to 2023. LST analysis revealed a minimum soil temperature of 7.15°C and a maximum of 33.38°C, with temperature patterns influenced by seasonal changes and rainfall. Meanwhile, soil moisture based on SMI exhibited fluctuations with a minimum value of -8.34 and a maximum of 1.00, reflecting variations in soil water content due to environmental factors. Validation of satellite image analysis with field measurements demonstrated a strong correlation, supporting the effectiveness of remote sensing in mapping soil moisture and land surface temperature in pineapple plantations.

 

Keywords: Remote sensing, Landsat 8, soil moisture, land surface temperature, pineapple.

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References

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Published

2025-05-22

How to Cite

Briany, A. D., Ridwan, R., Amien, E. R., & Asmara, S. (2025). Analisis Suhu Permukaan Tanah dan Kelembaban Tanah Menggunakan Interpretasi Citra Landsat 8 OLI Diperkebunan Nanas PT. Great Giant Pineapple. Jurnal Agricultural Biosystem Engineering, 4(1), 1–10. https://doi.org/10.23960/jabe.v4i1.10722

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