[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2060":3},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":6,"published_at":11,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":18,"tags":20,"view_count":15,"doi":25,"paper":26,"created_at":39},2060,"Land use transformation and urban heat dynamics in India’s world heritage cities Jaipur and Ahmedabad","https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs44327-026-00361-6","The rapid growth of cities as a result of urbanization has caused immense changes to land-use\u002Fland-cover (LU\u002FLC) patterns and urban thermal environments within Indian cities, especially in semi-arid regions. Urban growth dramatically affects World Heritage Cities (WHC) designated by UNESCO and has the potential to negatively affect environmental sustainability and the conservation of cultural heritage. Thus, this study presents a structured comparative narrative review of LU\u002FLC transformation and urban heat dynamics in Jaipur and Ahmedabad, India. Literature published between 2000 and 2025 was identified from major scientific literature databases and used in a comparative synthesis of urban growth patterns, research methodology, and environmental consequences. The results of the review indicate considerable growth of built-up areas of each city at the expense of agricultural land, vegetation, and open spaces. Ahmedabad had greater than 130% growth of built-up area from 1990 to 2019 while Jaipur experienced considerable directional urban expansion and increased land surface temperatures (LST). Most of the studies utilized remote sensing and GIS methods using Landsat and IRS data sets; the study of Ahmedabad represented a greater methodological advancement through use of CA-Markov and ANN urban growth model methodologies than that of Jaipur which was mostly retrospective, with few predictive modeling studies. Results of the study reveal that there is a strong connection between land use\u002Fland cover changes and the heat dynamics of an urban area, resulting in increased thermal stress, more vulnerable(e.g.) to climate change; and There will be growing pressures on these cities to sustain their cultural and architectural heritage (including all things associated with the built environment). Consequently, climate resilient and heritage sensitive urban planning strategies must be implemented in semi-arid World Heritage Cities of India.","城市化推动的城市快速扩张，使印度城市尤其是半干旱地区的土地利用\u002F土地覆盖（LU\u002FLC）格局和城市热环境发生了巨大变化。城市增长对联合国教科文组织指定的世界遗产城市（WHC）产生了显著影响，并可能对环境的可持续性和文化遗产保护造成负面影响。因此，本研究对印度斋浦尔和艾哈迈达巴德两座城市的LU\u002FLC转变与城市热动态进行了结构化的比较性叙述综述。研究从主要科学文献数据库中检索了2000年至2025年间发表的文献，并用于城市增长模式、研究方法和环境影响的比较综合。综述结果表明，两座城市的建成区均大幅扩张，侵占了农业用地、植被和开敞空间。1990年至2019年间，艾哈迈达巴德的建成区增长率超过130%，而斋浦尔则经历了显著的方向性城市扩张和地表温度（LST）升高。大多数研究采用遥感和GIS方法，使用Landsat和IRS数据集；艾哈迈达巴德的研究在方法论上更为先进，采用了CA-Markov和ANN城市增长模型方法，而斋浦尔的研究多为回顾性分析，预测建模研究较少。研究结果揭示，土地利用\u002F土地覆盖变化与城市区域的热动态之间存在密切关联，导致热胁迫加剧，使城市在气候变化面前更加脆弱；同时，这些城市在维持其文化和建筑遗产（包括与建成环境相关的所有事物）方面将面临日益增大的压力。因此，必须在印度半干旱世界遗产城市中实施气候韧性和遗产敏感的城市规划策略。",null,"Discover Cities","2026-09-09T00:00:00Z","论文",10,false,0,{"impact":15,"substance":15,"depth":15,"authority":15,"freshness":15,"relevant":15,"comment":17},"研究印度世界遗产城市土地利用与城市热动态，属城市环境与遗产保护领域，与三农、农业信息化、智慧农业无关，不建议进入每日精选。",[19],{"name":10,"url":6},[21,22,23,24],"遥感监测","土地利用","城市热岛","世界遗产城市","10.1007\u002Fs44327-026-00361-6",{"doi":25,"openalex_id":27,"authors":28,"venue":10,"cited_by_count":15,"oa_url":6,"card":32,"direction":36,"ingested_from":38},"W7212052957",[29],{"name":30,"orcid":31},"Parag Jyoti Kashyap","https:\u002F\u002Forcid.org\u002F0000-0003-4273-841X",{"tldr":33,"method":34,"finding":35,"direction":36,"opportunity":37},"综述印度两座世界遗产城市2000-2025年土地利用变化与城市热动态。","基于Landsat\u002FIRS遥感与GIS，结合CA-Markov和ANN城市增长模","建设用地侵占农地与绿地，地表温度上升，热胁迫加剧，威胁文化遗产。","农业遥感与作物表型","可拓展遥感与预测模型结合，研究遗产城市热环境与农业用地保护的协同规划。","openalex","2026-09-10T23:30:27.930226Z"]