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May 9, 2026International Journal of Biometeorology2 citationsOpen Access

Youth-led spatio-temporal heatwave co-adaptation mapping through data-driven participatory dotmocracy approach

ZSZulfaqar Sa'adiZNZainura Zainon NoorNZNur Syamimi Zaidi

Key Points

  • This study aims to enhance climate literacy and adaptive capacity among rural youth through participatory heatwave co-adaptation mapping.
  • Engaged thirty Form Three students in structured workshops in Segamat, Johor.
  • Conducted interactive activities including emoji-based reflections, quizzes, and dotmocracy mapping.
  • Assessed local climate trends and proposed adaptive strategies based on identified vulnerabilities.
  • Daily Tmax increased by 0.022 °C per year from 1950 to 2022, with March having 160 extreme heat days.
  • 66.5% of workshop users experienced thermal discomfort in hot indoor areas, while classrooms maintained comfort for 75%.
  • Post-intervention, 70% of proposed adaptation strategies were structural or technological, indicating preference for active cooling measures.

Abstract

Abstract Heatwaves are increasingly impacting rural communities in Malaysia, with disproportionate effects on youth due to limited adaptive capacity and a lack of targeted interventions. This study presents a data-driven, participatory heatwave co-adaptation mapping initiative involving thirty Form Three students from a rural high school in Segamat, Johor. The structured, interactive workshop comprised five core activities: emoji-based reflection and gamification exercises to elicit emotional responses and visualize the climate change process; a Mini Talk with interactive materials and quizzes on local climate trends and adaptation options; and hands-on group dotmocracy mapping sessions to identify cold and thermal hotspots, assess vulnerabilities, and propose adaptation measures. Analysis of the school environment revealed a long-term warming trend, with daily Tmax increasing by 0.022 °C per year (≈ 0.22 °C per decade; t = 46.86, p 35 °C) with 160 days (7.07% of March days), and Level 1 heatwaves (> 35 °C) occurred 46 times, lasting 3–14 days, whereas only 2 Level 2 events (> 37 °C) were observed, highlighting moderate heatwaves as the primary seasonal stressor. Peak heat occurred between 11:00 AM and 1:30 PM, coinciding with school dismissal, while shaded indoor areas maintained temperatures of 20–29 °C. Workshop areas were the hottest indoor spaces, with 66.5% of users experiencing thermal discomfort, whereas classrooms maintained comfort around 29.3 °C for 75% of students. Following the intervention, students’ climate-related knowledge improved significantly. Among proposed adaptation strategies, structural and technological measures dominated (> 70%), complemented by nature-based and behavioral interventions (~ 30%), while 75% of students employed active cooling measures and 35–40% used passive or green strategies. These results demonstrate the effectiveness of participatory, multi-scalar interventions in enhancing climate literacy, emotional engagement, and adaptive capacity among rural youth, while providing actionable insights for targeted heatwave adaptation in educational settings.

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Cite This Study

Sa'adi et al. (2026) studied this question.

synapsesocial.com/papers/69fed090b9154b0b82877aa3https://doi.org/10.1007/s00484-026-03218-0
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