Tatun Volcanic System: Quantifying geothermal heat loss at the Dayoukeng crater (2026)

This study quantifies geothermal radiative heat flux and heat loss at the Dayoukeng crater, Tatun Volcanic Group, Taiwan, using UAV thermal imagery and Landsat thermal infrared data. While Landsat efficiently captures regional geothermal heat loss, UAV observations resolve fine-scale thermal variability with much higher spatial detail. Both approaches produce comparable geothermal heat loss estimates (210–217 MW), demonstrating their complementary strengths. This work represents the first UAV-based geothermal heat loss assessment at Dayoukeng and provides a valuable framework for geothermal exploration and volcanic monitoring.

 本研究結合無人機熱影像與 Landsat 熱紅外資料,量化台灣大屯火山群大油坑地熱輻射熱通量與熱損失。結果顯示衛星可有效評估區域地熱熱損失,無人機則可解析局部熱異質性,兩者具互補優勢,可應用於地熱探勘與火山監測。

Thermal Pattern at Kueishantao from Satellite-Observed Temperatures (2023)

This research focuses on Kueishantao (also known as Turtle Island), an active and iconic volcanic island situated off the northeastern coast of Taiwan. The island is famous for its extreme underwater hot springs and active sulfur gas vents, making it a highly dynamic geological environment to study. We utilized thermal satellite imagery to measure and track the heat patterns on the surface of the island over an extended period. By carefully analyzing this satellite temperature data, we were able to map the specific thermal pattern of the volcano and observe exactly how its heat output fluctuated over time. The primary significance of this research is that it establishes a long-term thermal baseline for Kueishantao and the potential relations to the subsurface structures. Using satellites provides a continuous, and comprehensive view of its activity, helping us understand the volcano's hidden behaviors.