Open Access
Issue |
BIO Web Conf.
Volume 155, 2025
10th-ICCC – 10th International Conference on Climate Change “Climate Change, Plant and Health”
|
|
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Article Number | 02003 | |
Number of page(s) | 9 | |
Section | Strategy for Environmental Disaster Reduction Research | |
DOI | https://doi.org/10.1051/bioconf/202515502003 | |
Published online | 29 January 2025 |
- H. M. I. Anwar, H. A. K. M. Saiful, I. Ataur, R. Abul, E. Bhuiyan, and S. Paul, Impact of Land Cover Changes on Land Surface Temperature and Human Thermal Comfort in Dhaka City of Bangladesh. Earth Systems and Environment. 5, 3 (2021). [Google Scholar]
- M. Puche, A. Vavassori, and M. A. Brovelli, Insights into the Effect of Urban Morphology and Land Cover on Land Surface and Air Temperatures in the Metropolitan City of Milan (Italy) Using Satellite Imagery and In Situ Measurements. (2023). [Google Scholar]
- G. I. Cotlier and J. C. Jimenez, The Extreme Heat Wave over Western North America in 2021 : An Assessment by Means of Land Surface Temperature. (2022). [Google Scholar]
- J. Kim, D. Lee, R. D. Brown, S. Kim, and J. Kim, The effect of extremely low sky view factor on land surface temperatures in urban residential areas. Sustainable Cities and Society. 80, February (2022). [Google Scholar]
- M. Das, A. Das, and S. Momin, Quantifying the cooling effect of urban green space : A case from urban parks in a tropical mega metropolitan area (India). 87, July (2022). [Google Scholar]
- L. Yan, W. Jia, and S. Zhao, The Cooling Effect of Urban Green Spaces in Metacities : A Case Study of Beijing , China ‘ s Capital. (2021). [Google Scholar]
- S. Suhardono, F. E. Safitri, F. Rachmalia, F. A. Rizky, D. H. Khairunnisa, I. Y. Septiariva, and I. W. K. Suryawan, Assessing the Ecological Function Effectiveness of Urban Parks in Surakarta City , Indonesia. 25, 4 (2024). [Google Scholar]
- L. Zhang, L. Yang, C. M. Zohner, T. W. Crowther, M. Li, F. Shen, M. Guo, J. Qin, L. Yao, and C. Zhou, Direct and indirect impacts of urbanizationon vegetation growth across the world’s cities. Science Advances. 8, 27 (2022). [Google Scholar]
- X. Yao, K. Yu, X. Zeng, Y. Lin, B. Ye, and X. Shen, How can urban parks be planned to mitigate urban heat island effect in “ Furnace cities “ ? An accumulation perspective. Journal of Cleaner Production. 330, June 2021 (2022). [Google Scholar]
- A. Duarte, S. Vulova, F. Meier, and F. Michael, Mapping evapotranspirative and radiative cooling services in an urban environment. 85, April (2022). [Google Scholar]
- B. S. Arfina Kusuma Putra, Abdi Sukmono, ANALISIS HUBUNGAN PERUBAHAN TUTUPAN LAHAN TERHADAP SUHU PERMUKAAN TERKAIT FENOMENA URBAN HEAT ISLAND MENGGUNAKAN CITRA LANDSAT (STUDI KASUS: KOTA SURAKARTA). Jurnal Geodesi undip. 7, (2018). [Google Scholar]
- A. Shah, A. Garg, and V. Mishra, Landscape and Urban Planning Quantifying the local cooling effects of urban green spaces : Evidence from. Landscape and Urban Planning. 209, September 2019 (2021). [Google Scholar]
- M. C. Ekwe, F. Adamu, J. Gana, G. Chika, R. Usman, J. Nom, O. D. Onu, and O. Ibukun, The effect of green spaces on the urban thermal environment during a hot - dry season : a case study of Port. Environment, Development and Sustainability. 23, 7 (2021). [Google Scholar]
- I. A. Balogun, M. T. Daramola, and P. C. I. Á. Surface, The impact of urban green areas on the surface thermal environment of a tropical city : a case study of Ibadan , Nigeria. Spatial Information Research. 27, 1 (2019). [Google Scholar]
- A. K. Okoduwa and C. F. Amaechi, Soil Adjusted Vegetation Index , Normalize Difference Buildup Index , and Land Surface Temperature between 1987 and 2023 in Abuja Municipal Area Council , Soil Adjusted Vegetation Index , Normalize Difference Buildup Index , and Land Surface Temperature b. May (2024). [Google Scholar]
- F. N. Kogan, APPLICATION OF VEGETATION INDEX AND BRIGHTNESS TEMPERATURE FOR DROUGHT DETECTION. adc. space res. 15, 11 (1995). [CrossRef] [Google Scholar]
- Y. Cai, Y. Chen, and C. Tong, Spatiotemporal evolution of urban green space and its impact on the urban thermal environment based on remote sensing data: A case study of Fuzhou City, China. Urban Forestry and Urban Greening. 41, June 2018 (2019). [Google Scholar]
- S. G. Veeravalli and K. Universitet, Assessing the impact of vegetation and its spatial configuration on land surface temperature in selected Indian cities. February (2024). [Google Scholar]
- X. Zhang, International Journal of Remote Estimation of the relationship between vegetation patches and urban land surface temperature with remote sensing. December 2014 (2009). [Google Scholar]
- A. Alshaikh, Vegetation Cover Density and Land Surface Temperature Interrelationship Using Satellite Data , Case Study of Wadi Bisha , South KSA. September (2015). [Google Scholar]
- F. Mumtaz, Y. Tao, B. Bashir, A. Ahmad, and L. Li, The relationship between vegetation dynamics and land surface temperature by using different satellite imageries ; A Case study of Metropolitan cities of Pakistan. 3, 07 (2020). [Google Scholar]
- P. Macarof, S. Groza, and F. Statescu, INVESTIGANTING CORRELATION LST AND VEGETATION INDICES USING LANDSAT IMAGES FOR THE WARMEST MONTH : A CASE STUDY OF IASI COUNTY. 18, (2018). [Google Scholar]
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