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拉合尔城市景观的变化模式及其对热环境的影响;对气候变化和可持续发展的启示。

Changing pattern of urban landscape and its impact on thermal environment of Lahore; Implications for climate change and sustainable development.

作者信息

Sattar Tahir, Mirza Nigar Fatima, Javed Muhammad Asif, Nasar-U-Minallah Muhammad, Malik Shahid

机构信息

College of Earth and Environmental Sciences, University of the Punjab, Lahore, 54000, Pakistan.

Institute of Geography, University of the Punjab, Lahore, 54000, Pakistan.

出版信息

Environ Monit Assess. 2025 Jan 9;197(2):151. doi: 10.1007/s10661-024-13559-1.

Abstract

Rapid urbanization in Lahore has dramatically transformed land use and land cover (LULC), significantly impacting the city's thermal environment and intensifying climate change and sustainable development challenges. This study aims to examine the changes in the urban landscape of Lahore and their impact on the Urban thermal environment between 1990 and 2020. The previous studies conducted on Lahore lack the application of Geospatial artificial intelligence (GeoAI) to quantify land use and land cover, which is successfully covered in this study. This study analyzes how urban sprawl has driven LULC shifts and assesses their direct impact on Land Surface Temperature (LST) using Geographic Information System (GIS) and remote sensing techniques. Landsat imagery, processed using Google Earth Engine (GEE), was employed for LULC classification and LST calculation, ensuring high accuracy through multi-level change detection and a thorough accuracy assessment. Pearson's correlation was also calculated in this study to assess the impact of decreased green cover on LST. The findings highlight a substantial decrease in green cover, from 1,292.8 km in 1990 to 754 km in 2020, alongside a marked increase in built-up areas, expanding from 262 km to over 550 km. Additionally, barren land showed significant growth, while water bodies diminished. The spatiotemporal analysis of LST indicates a considerable rise in high-temperature zones, specifically the industrial zones, with areas exceeding 40 °C expanding from 2 km to 1,075 km over the study period. A strong positive correlation between increased urbanization and rising LST, particularly in areas within a 10 to 40 km radius of the Central Business District (CBD), is evident. The overall accuracy of LULC classification surpassed 94%, with the kappa coefficient above 92%, ensuring the robustness of the results. Future research should focus on evaluating the long-term socioeconomic impacts of urban sprawl and LST increment while developing heat mitigation strategies. Recommendations include adopting sustainable urban planning practices prioritizing green infrastructure, energy-efficient building designs, and policies promoting environmental preservation. This study offers valuable insights for policymakers and underscores the urgency of balancing urban growth with strategies that mitigate thermal stress, combat climate change, and foster sustainable development in Lahore.

摘要

拉合尔的快速城市化极大地改变了土地利用和土地覆盖(LULC),对城市热环境产生了重大影响,加剧了气候变化和可持续发展挑战。本研究旨在考察1990年至2020年间拉合尔城市景观的变化及其对城市热环境的影响。以往对拉合尔进行的研究缺乏应用地理空间人工智能(GeoAI)来量化土地利用和土地覆盖,而本研究成功涵盖了这一点。本研究分析了城市扩张如何推动土地利用和土地覆盖变化,并使用地理信息系统(GIS)和遥感技术评估其对地表温度(LST)的直接影响。利用谷歌地球引擎(GEE)处理的陆地卫星图像用于土地利用和土地覆盖分类以及地表温度计算,通过多级变化检测和全面的精度评估确保了高精度。本研究还计算了皮尔逊相关性,以评估绿色覆盖减少对地表温度的影响。研究结果突出显示,绿色覆盖大幅减少,从1990年的129

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