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市場調查報告書
商品編碼
1813314
2032 年城市熱島測繪市場預測:按組件、技術、最終用戶和地區進行的全球分析Urban Heat Island Mapping Market Forecasts to 2032 - Global Analysis By Component, Technology, End User and By Geography |
根據 Stratistics MRC 的數據,全球城市熱島測繪市場預計在 2025 年達到 15 億美元,到 2032 年將達到 39 億美元,預測期內的複合年成長率為 14.8%。
城市熱島 (UHI) 製圖是識別和分析城市內由於人類活動和基礎設施建設而導致氣溫明顯高於周邊農村地區的區域的過程。它利用遙感探測、衛星影像、GIS 工具和地面測量資料來捕捉地表和氣溫的空間變化。 UHI 製圖有助於直覺呈現由密集建築、植被稀疏以及混凝土和瀝青等吸熱材料造成的熱點。這種製圖對於理解都市化對氣候的影響、指導永續城市規劃、提高能源效率、降低健康風險以及製定氣候調適策略至關重要。
遙感探測和無人機技術進步
來自衛星和無人機的即時數據使我們能夠對熱量分佈進行精細分析。與GIS平台的整合支援城市設計中的有針對性的干涉措施。人工智慧工具正在簡化數據解讀並擴大覆蓋範圍。市政機構正在採用這些技術來增強應對氣候變遷的能力。這些技術創新正在將城市熱島效應測繪提升為永續城市規劃的核心組成部分。
數據整合和標準化的複雜性
不同平台的解析度和測量技術差異造成了分析方面的差距。與現有城市資料庫的兼容性有限,延緩了實施進度。較小的城市可能缺乏管理多源資料集的基礎設施。缺乏統一的通訊協定限制了不同地區之間的比較。這些挑戰阻礙了更廣泛的實施。
智慧城市計畫與環保意識
城市正在部署感測器網路和地理空間平台來監測熱應力。與綠色基礎設施策略的整合正在提高能源效率和公共衛生成果。各機構正在利用熱數據來指導針對弱勢族群的干涉措施。技術提供者和城市規劃人員之間的合作正在加速解決方案的部署。這些動態正在推動市場擴張。
缺乏法律義務和法律規範
缺乏標準化要求限制了城市熱島效應(UHI)測繪的納入。缺乏執行機制導致熱島效應的緩解措施缺乏自主性。不明確的合規預期限制了私部門的參與。政策碎片化導致實施不一致。這些因素威脅著城市熱島效應測繪的長期機構支持。
新冠疫情對城市熱島 (UHI) 測繪市場產生了許多影響。最初,出行限制、施工延誤以及城市計劃資金減少減緩了相關應用的進展。然而,疫情凸顯了韌性和永續城市規劃的重要性,並提升了人們對城市熱島測繪在氣候調適方面的關注。在封鎖期間,人們對遙感探測、GIS 和衛星資料的依賴程度不斷提高,加速了數位化解決方案的開發。疫情過後,人們對公共衛生、城市永續性和氣候風險的認知不斷提高,推動了對城市熱島測繪技術的新一輪投資。
預計軟體和工具部分將成為預測期內最大的部分
軟體和工具細分市場預計將在預測期內佔據最大的市場佔有率,這得益於其在熱數據處理和視覺化方面發揮的作用。整合多源輸入的平台能夠實現全面的熱力測繪。人工智慧主導的分析正在提升預測能力和空間洞察力。雲端基礎的系統支援擴充性和跨機構協作。直覺的介面正在拓寬規劃人員和研究人員的存取權限。隨著城市採用以數據為中心的規劃,預計該細分市場將繼續保持領先地位。
預計智慧城市開發商領域將在預測期內實現最高的複合年成長率
由於對氣候智慧基礎設施的需求不斷成長,智慧城市開發商領域預計將在預測期內實現最高成長率。熱力學測繪正被用於最佳化建築設計和土地利用規劃。與環境機構的夥伴關係正在加強永續性基準。即時數據正在指南綠色基礎設施和公共設施的升級。對智慧城市生態系統的投資正在加速其應用。隨著城市優先考慮韌性和居住,該領域必將蓬勃發展。
由於先進技術的採用以及政府大力支持氣候監測,預計北美將在預測期內佔據最大市場佔有率。衛星影像、無人機和基於人工智慧的分析技術的廣泛應用有助於城市識別和緩解熱點。大學、聯邦機構和私人公司之間的合作促進了創新和政策整合。在面臨熱浪增多的大都會圈,地圖需求尤其旺盛,地方政府負責人依賴地圖來支援永續基礎建設、降低健康風險並改善社區復原力策略。
由於都市化以及人們對環境問題的日益關注,預計亞太地區在預測期內的複合年成長率將最高。該地區各國政府正優先考慮監測,以應對高溫、能源使用效率低和城市污染等挑戰。低成本感測器、行動平台和雲端基礎工具的開發,正在使發展中城市更方便地獲取資訊。區域合作和智慧城市計畫將進一步推動地圖解決方案的普及。該市場正受益於旨在平衡快速發展與永續性和氣候變遷調適措施的公共意識提升宣傳活動和投資。
According to Stratistics MRC, the Global Urban Heat Island Mapping Market is accounted for $1.5 billion in 2025 and is expected to reach $3.9 billion by 2032 growing at a CAGR of 14.8% during the forecast period. Urban Heat Island (UHI) mapping is the process of identifying and analyzing areas within cities that experience significantly higher temperatures than surrounding rural regions due to human activities and infrastructure. It involves using remote sensing, satellite imagery, GIS tools, and ground-based measurements to capture spatial variations in land surface or air temperature. UHI mapping helps visualize hotspots created by dense buildings, reduced vegetation, and heat-absorbing materials like concrete and asphalt. This mapping is crucial for understanding the impacts of urbanization on climate, guiding sustainable urban planning, and improving energy efficiency, mitigating health risks, and developing strategies for climate resilience.
Tech advancements in remote sensing & drones
Real-time data from satellites and UAVs is enabling granular analysis of heat distribution. Integration with GIS platforms supports targeted interventions in urban design. AI-powered tools are streamlining data interpretation and expanding coverage. Municipal agencies are adopting these technologies to enhance climate resilience. These innovations are elevating UHI mapping as a core component of sustainable urban planning.
Complexity in data integration & standardization
Differences in resolution and measurement techniques across platforms create analytical gaps. Limited compatibility with existing urban databases slows operational use. Smaller cities may lack the infrastructure to manage multi-source datasets. Absence of unified protocols hinders cross-regional comparisons. These challenges are limiting broader implementation.
Smart city initiatives & environmental awareness
Cities are deploying sensor networks and geospatial platforms to monitor thermal stress. Integration with green infrastructure strategies is improving energy efficiency and public health outcomes. Agencies are using heat data to guide interventions for vulnerable populations. Collaborations between tech providers and urban planners are accelerating solution deployment. These dynamics are fueling market expansion.
Lack of legal mandate or regulatory framework
Absence of standardized requirements limits integration into planning and zoning regulations. Without enforcement mechanisms, thermal mitigation remains discretionary. Private sector participation is constrained by unclear compliance expectations. Policy fragmentation reduces consistency in implementation. These factors threaten long-term institutional support for UHI mapping.
The Covid-19 pandemic had a mixed impact on the Urban Heat Island (UHI) mapping market. Initially, restrictions on movement, construction delays, and reduced funding for urban projects slowed adoption. However, the pandemic highlighted the importance of resilient and sustainable urban planning, driving interest in UHI mapping for climate adaptation. Increased reliance on remote sensing, GIS, and satellite data during lockdowns accelerated digital solutions. Post-pandemic, growing awareness of public health, urban sustainability, and climate risks has supported renewed investment in UHI mapping technologies.
The software & tools segment is expected to be the largest during the forecast period
The software & tools segment is expected to account for the largest market share during the forecast period due to their role in processing and visualizing thermal data. Platforms integrating multi-source inputs enable comprehensive heat mapping. AI-driven analytics are improving predictive capabilities and spatial insights. Cloud-based systems support scalability and inter-agency collaboration. Intuitive interfaces are expanding access for planners and researchers. This segment will continue to lead as cities embrace data-centric planning.
The smart city developers segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the smart city developers segment is predicted to witness the highest growth rate owing to rising demand for climate-responsive infrastructure. Thermal mapping is being used to optimize building design and land use planning. Partnerships with environmental agencies are enhancing sustainability benchmarks. Real-time data is guiding upgrades in green infrastructure and public amenities. Investment in smart urban ecosystems is accelerating adoption. This segment is poised for rapid growth as cities prioritize resilience and liveability.
During the forecast period, the North America region is expected to hold the largest market share by advanced technological adoption and strong government initiatives supporting climate monitoring. Extensive use of satellite imagery, drones, and AI-based analytics helps cities identify and mitigate heat concentration zones. Collaboration between universities, federal agencies, and private companies fosters innovation and policy integration. Demand is particularly high in metropolitan regions facing rising heatwaves, where municipal planners rely on mapping to support sustainable infrastructure, reduce health risks, and improve community resilience strategies.
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR due to urbanization and growing environmental concerns. Governments across the region prioritize monitoring to tackle challenges such as heat stress, energy inefficiency, and urban pollution. Deployment of low-cost sensors, mobile platforms, and cloud-based tools enables broader accessibility for developing cities. Regional collaborations and smart city initiatives further enhance the adoption of mapping solutions. The market benefits from public awareness campaigns and investments aimed at balancing rapid development with sustainability and climate adaptation measures.
Key players in the market
Some of the key players in Urban Heat Island Mapping Market include Arup Group, Esri, Hexagon AB, Trimble Inc., Maxar Technologies, Planet Labs PBC, Airbus Defence and Space, Northrop Grumman, Raytheon Technologies, IBM, Microsoft, Google (Alphabet Inc.), Climate Engine, GHGSat Inc. and DroneDeploy.
In April 2025, Esri partnered with NOAA and the National Integrated Heat Health Information System (NIHHIS) to support the U.S. Urban Heat Island Mapping Campaign. The collaboration enables neighborhood-level temperature mapping using ArcGIS tools, integrating environmental and demographic data to guide equitable climate resilience strategies.
In May 2024, Arup expanded its collaboration with University College London and the University of Reading to enhance the UHeat platform's microclimate modeling capabilities. This partnership integrates academic climate models with urban planning tools, enabling more precise UHI mitigation strategies across global cities.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.