NARA Discovery
Article Details
← Back to Search Results
Journal Article

Spatially Constrained Copula‐Based Clustering for Climate Zone Classification in Borneo

Zulfaqar Sa'adi; Ricky Anak Kemarau; Zaher Mundher Yaseen; Najeebullah Khan; Bassim Mohammed Hashim; Leonardo Goliatt; Sajjad Firas Abdulameer; Shamsuddin Shahid
International Journal of Climatology · Vol. 46, Issue 9 · 2026

Abstract

This study presents an advanced climate zone classification approach for Borneo using a spatially constrained copula‐based clustering framework. The methodology integrates copula theory for multivariate dependency modelling with fuzzy c‐means (FCM) clustering to capture uncertainty in regional climate classification, while spatial constraints enhance geographic coherence. Historical climate data from the Princeton Global Forcing dataset (1950–2014) were used, encompassing elevation, rainfall, average temperature (Tavg), minimum temperature (Tmin), maximum temperature (Tmax), diurnal temperature range (DTR) and relative humidity (RH). A total of 23 normalisation methods and 11 distance metrics were evaluated to optimize clustering performance. Clustering sensitivity was assessed using internal validation indices: Average Silhouette Width (ASW), Dunn Index (DI) and Calinski‐Harabasz Index (CHI). Results revealed that Yeo‐Johnson normalisation combined with Minkowski distance yielded the most robust performance (ASW = 0.3720, DI = 1.00EE‐04, CHI = 533.25). This configuration successfully delineated five distinct climate zones, Central‐North, East, West, Northeast and South, by achieving a high spatial coherence score (57.08) and establishing contiguous, topo‐climatologically meaningful regions. Central‐North emerged as the coolest and wettest, with the highest elevation, RH and DTR. East and South zones were the warmest, exhibiting the lowest RH and highest variability in DTR and rainfall. The Northeast showed the most pronounced seasonal and spatial temperature variation, while the West was marked by high rainfall and moderate DTR and RH. These zones reflect Borneo's climatic heterogeneity shaped by topographic and thermal‐hygrometric gradients. Spatial autocorrelation analysis using Moran's I confirmed clear spatial structures within clusters, with rainfall and RH showing the strongest spatial dependencies and Tmax the weakest. The West zone emerged as the most spatially homogeneous, while the South exhibited lower spatial dependence. This study advances regional climate classification by integrating statistical rigour, spatial consistency and multivariate climate behaviour, offering valuable insights for climate impact assessment, ecological planning and adaptive environmental management in tropical regions.

Bibliographic Information

JournalInternational Journal of Climatology
PublisherWiley
Publication Date2026-07-01
Publication Year2026
Volume46
Issue9
Document TypeJournal Article
Print ISSN0899-8418
eISSN1097-0088
DOI10.1002/joc.70420
SubjectAtmospheric Sciences

Access Information

NARA Access Coverage1996-01-01~Current
Journal Homepagehttps://rmets.onlinelibrary.wiley.com/loi/10970088
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.