arXiv:2608.23857cs.LG2026-08

首个跨城市双源热岛建模基准,提升城市热环境评估准确性

UHI-Bench: Benchmarking Dual-Source Urban Heat Island Modeling Across Cities in Diverse Climate Regimes

论文配图:UHI-Bench: Benchmarking Dual-Source Urban Heat Island Modeling Across Cities in Diverse Climate Regimes
图 1 · 摘自论文原文
  • 构建统一框架整合地表与近地表温度数据,实现双源热岛建模
  • 在20个城市、9类气候区测试超20个模型,发现无模型全局最优
  • 跨城迁移效果更依赖热岛类型相似性而非气候分区相近

城市热岛(UHI)在气候变化下日益加剧,威胁人类热暴露风险。其两大观测指标——地表温度热岛(LST-UHI)与近地面气温热岛(AirT-UHI)——反映物理上不同的热特征。然而,多数研究仅依赖单一来源,相互替代会显著扭曲热暴露的强度与空间分布。准确建模还需动态气象驱动因子与静态城市形态特征,但时空不匹配阻碍其融合。此外,地表温度观测存在云层遮挡,近地气温站点稀疏,限制了双源建模。为此,我们提出UHI-Bench,首个支持双源热岛建模的跨城市基准,整合动态与静态环境背景。遵循统一信号、机制与迁移框架,在20个城市、9个柯本气候类型下评估四大模型家族的20余个基线,覆盖五个任务。结果表明:无模型始终最优,但基础模型保持稳定竞争力;环境协变量普遍提升性能,但效用因数据源与任务而异;跨城迁移能力更受热岛类型重叠影响,而非气候区相似性。本工作提供标准化数据集与流程,为城市热建模提供实用指导,推动气候数据公平,并支持未来气候研究进展。

原文摘要 · Abstract (English)

Urban heat islands (UHIs) are intensifying under climate change, exacerbating thermal exposure risks. Their two primary observations, land surface temperature UHI (LST-UHI) and near-surface air temperature UHI (AirT-UHI), capture physically distinct aspects of urban heat. However, most studies rely on a single source, and substituting one for the other can substantially bias the magnitude and spatial variability of human heat exposure. Accurate UHI modeling also requires dynamic meteorological drivers and static urban morphology features, but spatiotemporal incompatibilities hinder their alignment. Cloud gaps in LST observations and sparse AirT station networks further limit dual-source UHI modeling, motivating cross-city transfer across diverse climates. To bridge these gaps, we introduce UHI-Bench, the first UHI benchmark for dual-source UHI modeling that integrates dynamic and static environmental context. Following a unified signal, mechanism, and transfer framework, it evaluates over 20 baselines from four model families on five tasks across 20 cities and nine Köppen climate classes. Results show that no model is uniformly best, although foundation models remain consistently competitive and stable. Environmental covariates generally improve performance, but their utility varies across sources and tasks. Cross-city transferability is better explained by overlap in UHI regimes than by climate-zone similarity. With the dataset and standardized pipeline, our work provides practical guidance for urban heat modeling, promotes climate data equity, and supports future advances in climate research.

热岛效应城市气候多源数据跨域迁移

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。