Next Article in Journal
Sustainable Public Health Policies: Understanding Influenza Vaccination Uptake Among College Students in a Changing Society
Previous Article in Journal
The Adoption and Scaling of Climate-Smart Agriculture Innovation by Smallholder Farmers in South Africa: A Review of Institutional Mechanisms, Policy Frameworks and Market Dynamics
Previous Article in Special Issue
Environmental Assessment of a Constructed Wetland with Ornamental Vegetation for Wastewater Treatment: A Sustainable Option for Neighborhoods (The Case of Veracruz, Mexico)
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
This is an early access version, the complete PDF, HTML, and XML versions will be available soon.
Article

Multitemporal Analysis of Urban Heat Island Dynamics in Response to Land-Use/Land-Cover (LULC) Changes in Bukidnon Province, Philippines (2017–2024)

by
Jecar Tedera Dadole
1,2,*,
Kristine Sanchez Companion
1,
Elizabeth Edan Albiento
1 and
Raquel Masalig
1
1
College of Engineering, Mindanao State University–Iligan Institute of Technology, Iligan City 9200, Philippines
2
School of Engineering and Technology, J. H. Cerilles State College, San Miguel 7029, Philippines
*
Author to whom correspondence should be addressed.
World 2025, 6(2), 52; https://doi.org/10.3390/world6020052
Submission received: 14 February 2025 / Revised: 9 April 2025 / Accepted: 17 April 2025 / Published: 21 April 2025

Abstract

Urbanization has transformed natural landscapes, resulting in increased land surface temperatures and the intensification of urban heat island (UHI) effects. This study explores the relationship between land-use/land-cover (LULC) changes and land surface temperature (LST) from 2017 to 2024, using satellite data from Landsat and Sentinel. The results from supervised classification reveal a 50.9% increase in built-up land, from 21,256 hectares in 2017 to 32,099 hectares in 2024, accompanied by a 6.3% decline in woodland. Analysis of the LST data highlights rising temperatures in urbanized and deforested areas, with LST peaking at 36.96 °C in 2020 before slightly decreasing to 31.03 °C in 2024, potentially influenced by increased rainfall. However, hotspots of elevated LST persist, indicating sustained thermal stress. The urban thermal field variance index (UTFVI) showed worsening ecological conditions, particularly in densely urbanized zones. The study highlights the pressing need for integrating urban heat island (UHI) considerations into urban planning, as elevated urban temperatures threaten public health and escalate energy consumption. Additionally, the research aligns with Sustainable Development Goal 11 (SDG 11), emphasizing the creation of inclusive, safe, resilient, and sustainable cities. By providing policymakers with key UHI indices, this study contributes to climate-resilient urban environments, mitigating heat risks through green infrastructure and sustainable urban design.
Keywords: urban heat island; land use/land cover; land surface temperature; Bukidnon urban heat island; land use/land cover; land surface temperature; Bukidnon

Share and Cite

MDPI and ACS Style

Dadole, J.T.; Companion, K.S.; Albiento, E.E.; Masalig, R. Multitemporal Analysis of Urban Heat Island Dynamics in Response to Land-Use/Land-Cover (LULC) Changes in Bukidnon Province, Philippines (2017–2024). World 2025, 6, 52. https://doi.org/10.3390/world6020052

AMA Style

Dadole JT, Companion KS, Albiento EE, Masalig R. Multitemporal Analysis of Urban Heat Island Dynamics in Response to Land-Use/Land-Cover (LULC) Changes in Bukidnon Province, Philippines (2017–2024). World. 2025; 6(2):52. https://doi.org/10.3390/world6020052

Chicago/Turabian Style

Dadole, Jecar Tedera, Kristine Sanchez Companion, Elizabeth Edan Albiento, and Raquel Masalig. 2025. "Multitemporal Analysis of Urban Heat Island Dynamics in Response to Land-Use/Land-Cover (LULC) Changes in Bukidnon Province, Philippines (2017–2024)" World 6, no. 2: 52. https://doi.org/10.3390/world6020052

APA Style

Dadole, J. T., Companion, K. S., Albiento, E. E., & Masalig, R. (2025). Multitemporal Analysis of Urban Heat Island Dynamics in Response to Land-Use/Land-Cover (LULC) Changes in Bukidnon Province, Philippines (2017–2024). World, 6(2), 52. https://doi.org/10.3390/world6020052

Article Metrics

Back to TopTop