1,101
Views
68
CrossRef citations to date
0
Altmetric
Original Articles

ASTER‐based study of the night‐time urban heat island effect in Metro Manila

, &
Pages 2799-2818 | Received 18 Jul 2006, Accepted 18 Apr 2007, Published online: 29 Apr 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

Yuanzheng Li, Zhizhi Feng, Lin Li, Tiancheng Li, Fuyin Guo, Jing Wei, Yi Yan & Lan Wang. (2022) Surface urban heat islands in 932 urban region agglomerations in China during the morning and before midnight: spatial-temporal changes, drivers, and simulation. Geocarto International 37:26, pages 13689-13710.
Read now
Umer Khalil, Bilal Aslam, Umar Azam & Hafiz Muhammad Daniyal Khalid. (2021) Time Series Analysis of Land Surface Temperature and Drivers of Urban Heat Island Effect Based on Remotely Sensed Data to Develop a Prediction Model. Applied Artificial Intelligence 35:15, pages 1803-1828.
Read now
Ji Zhou, Yunhao Chen, Xu Zhang & Wenfeng Zhan. (2013) Modelling the diurnal variations of urban heat islands with multi-source satellite data. International Journal of Remote Sensing 34:21, pages 7568-7588.
Read now
JoséA. Sobrino, Rosa Oltra-Carrió, Guillem Sòria, Juan Carlos Jiménez-Muñoz, Belén Franch, Victoria Hidalgo, Cristian Mattar, Yves Julien, Juan Cuenca, Mireia Romaguera, J. Antonio Gómez, Eduardo De Miguel, Remo Bianchi & Marc Paganini. (2013) Evaluation of the surface urban heat island effect in the city of Madrid by thermal remote sensing. International Journal of Remote Sensing 34:9-10, pages 3177-3192.
Read now
Zhi Chen, Chongfeng Gong, Jie Wu & Shixiao Yu. (2012) The influence of socioeconomic and topographic factors on nocturnal urban heat islands: a case study in Shenzhen, China. International Journal of Remote Sensing 33:12, pages 3834-3849.
Read now
Guoyin Cai, Mingyi Du & Yong Xue. (2011) Monitoring of urban heat island effect in Beijing combining ASTER and TM data. International Journal of Remote Sensing 32:5, pages 1213-1232.
Read now

Articles from other publishers (61)

Yisha Liu, Ting Liu, Lin Jiang, Manjiang Shi, Xinyu Tan, Xumei He, Jierui Guo & Xiaowei Shang. (2023) A comparative study of the influences of park physical factors on summer outdoor thermal environment, a pilot study of Mianyang, China. Nature-Based Solutions 4, pages 100083.
Crossref
Nicola Colaninno. (2023) Insights into heat islands at the regional scale using a data-driven approach. City and Environment Interactions 20, pages 100124.
Crossref
Muhammad Sadiq Khan, Sami Ullah & Liding Chen. (2023) Variations in Surface Urban Heat Island and Urban Cool Island Intensity: A Review Across Major Climate Zones. Chinese Geographical Science 33:6, pages 983-1000.
Crossref
Ian A. Smith, M. Patricia Fabian & Lucy R. Hutyra. (2023) Urban green space and albedo impacts on surface temperature across seven United States cities. Science of The Total Environment 857, pages 159663.
Crossref
Ronald Gil Joy P. Bilang, Ariel C. Blanco, Justine Ace S. Santos & Lyndon Mark P. Olaguera. (2022) Simulation of Urban Heat Island during a High-Heat Event Using WRF Urban Canopy Models: A Case Study for Metro Manila. Atmosphere 13:10, pages 1658.
Crossref
Wan-Ben Wu, Zhao-Wu Yu, Jun Ma & Bin Zhao. (2022) Quantifying the influence of 2D and 3D urban morphology on the thermal environment across climatic zones. Landscape and Urban Planning 226, pages 104499.
Crossref
Umer Khalil, Umar Azam, Bilal Aslam, Israr Ullah, Aqil Tariq, Qingting Li & Linlin Lu. (2022) Developing a Spatiotemporal Model to Forecast Land Surface Temperature: A Way Forward for Better Town Planning. Sustainability 14:19, pages 11873.
Crossref
K. Dutta, D. Basu & S. Agrawal. (2021) Evaluation of seasonal variability in magnitude of urban heat islands using local climate zone classification and surface albedo. International Journal of Environmental Science and Technology 19:9, pages 8677-8698.
Crossref
Hélder Silva Lopes, Paula C. Remoaldo, Vítor Ribeiro & Javier Martin-Vide. (2022) Análise do ambiente térmico urbano e áreas potencialmente expostas ao calor extremo no município do Porto (Portugal). Cuadernos de Geografía: Revista Colombiana de Geografía 31:2, pages 281-302.
Crossref
King Joshua Almadrones-Reyes & Nikki Heherson A. Dagamac. (2022) Land-use/land cover change and land surface temperature in Metropolitan Manila, Philippines using landsat imagery. GeoJournal 88:2, pages 1415-1426.
Crossref
Arpit Sharma & Ganesh D. Kale. (2022) Assessment of urbanization impact on urban heat island effect and rainfall for the Surat city. Acta Geophysica 70:1, pages 243-264.
Crossref
John A. Manalo, Jun Matsumoto, Hiroshi G. Takahashi, Marcelino Q. VillafuerteIIII, Lyndon Mark P. Olaguera, Guoyu Ren & Thelma A. Cinco. (2021) The effect of urbanization on temperature indices in the Philippines. International Journal of Climatology 42:2, pages 850-867.
Crossref
Fengjiao Zhang, Xuepeng Zhang, Wei Chen, Bin Yang, Zhenting Chen, Hongzhao Tang, Zhe Wang, Pengshuai Bi, Lan Yang, Guangchao Li & Zhe Jia. (2022) Cloud-Free Land Surface Temperature Reconstructions Based on MODIS Measurements and Numerical Simulations for Characterizing Surface Urban Heat Islands. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 15, pages 6882-6898.
Crossref
Fengxiang Guo, Qiong Wu & Uwe Schlink. (2021) 3D building configuration as the driver of diurnal and nocturnal land surface temperatures: Application in Beijing's old city. Building and Environment 206, pages 108354.
Crossref
Prabhasri Herath, Marcus Thatcher, Huidong Jin & Xuemei Bai. (2021) Effectiveness of urban surface characteristics as mitigation strategies for the excessive summer heat in cities. Sustainable Cities and Society 72, pages 103072.
Crossref
Ian A. Smith, Joy B. Winbourne, Koen F. Tieskens, Taylor S. Jones, Fern L. Bromley, Dan Li & Lucy R. Hutyra. (2021) A Satellite-Based Model for Estimating Latent Heat Flux From Urban Vegetation. Frontiers in Ecology and Evolution 9.
Crossref
Bilal Aslam, Ahsen Maqsoom, Nauman Khalid, Fahim Ullah & Samad Sepasgozar. (2021) Urban Overheating Assessment through Prediction of Surface Temperatures: A Case Study of Karachi, Pakistan. ISPRS International Journal of Geo-Information 10:8, pages 539.
Crossref
Mustafa N. Hamoodi. (2021) Investigating the Effects of Armed and Political Conflicts on the Land Use/Cover Change and Surface Urban Heat Islands: A Case Study of Baghdad, Iraq. Journal of the Indian Society of Remote Sensing 49:7, pages 1493-1506.
Crossref
Ruchi Bala, Rajendra Prasad & Vijay Pratap Yadav. (2021) Quantification of urban heat intensity with land use/land cover changes using Landsat satellite data over urban landscapes. Theoretical and Applied Climatology 145:1-2, pages 1-12.
Crossref
Enis ARSLAN. (2021) Thermal Anomaly Detection of Industrial Zones with MNF and ICA. Turkish Journal of Geosciences 2:1, pages 18-26.
Crossref
Jian Zhang, Zhonghua Gou & Yi Lu. (2019) Outdoor thermal environments and related planning factors for subtropical urban parks. Indoor and Built Environment 30:3, pages 363-374.
Crossref
Biswajit Bera, Pravat Kumar Shit, Soumik Saha & Sumana Bhattacharjee. (2021) Exploratory analysis of cooling effect of urban wetlands on Kolkata metropolitan city region, eastern India. Current Research in Environmental Sustainability 3, pages 100066.
Crossref
Jia Du, Xiaoyun Xiang, Boyu Zhao & Haohao Zhou. (2020) Impact of urban expansion on land surface temperature in Fuzhou, China using Landsat imagery. Sustainable Cities and Society 61, pages 102346.
Crossref
Shahnillah Haider Rizvi, Hira Fatima, Muhammad Jawed Iqbal & Khan Alam. (2020) The effect of urbanization on the intensification of SUHIs: Analysis by LULC on Karachi. Journal of Atmospheric and Solar-Terrestrial Physics 207, pages 105374.
Crossref
Carlos Granero-Belinchon, Aurelie Michel, Veronique Achard & Xavier Briottet. (2020) Spectral Unmixing for Thermal Infrared Multi-Spectral Airborne Imagery over Urban Environments: Day and Night Synergy. Remote Sensing 12:11, pages 1871.
Crossref
Marlyne Sahakian, Manisha Anantharaman, Antonietta Di Giulio, Czarina Saloma, Dunfu Zhang, Rupali Khanna, Srikanth Narasimalu, Abigail Marie Favis, Cherie Audrey Alfiler, Sumana Narayanan, Xin Gao & Chenxin Li. (2020) Green public spaces in the cities of South and Southeast Asia. Protecting needs towards sustainable well-being. The Journal of Public Space:Vol. 5 n. 2, pages 89-110.
Crossref
Zhaowu Yu, Gaoyuan Yang, Shudi Zuo, Gertrud Jørgensen, Motoya Koga & Henrik Vejre. (2020) Critical review on the cooling effect of urban blue-green space: A threshold-size perspective. Urban Forestry & Urban Greening 49, pages 126630.
Crossref
Li Yang, Xiaodong Liu & Feng Qian. (2020) Research on water thermal effect on surrounding environment in summer. Energy and Buildings 207, pages 109613.
Crossref
Juanito Alipio A. de la Rosa. 2020. Smart and Sustainable Cities and Buildings. Smart and Sustainable Cities and Buildings 445 456 .
Yuanzheng Li, Lan Wang, Min Liu, Guosong Zhao, Tian He & Qizheng Mao. (2019) Associated Determinants of Surface Urban Heat Islands across 1449 Cities in China. Advances in Meteorology 2019, pages 1-14.
Crossref
Aneesh Mathew, Sreenu Sreekumar, Sumit Khandelwal & Rajesh Kumar. (2019) Prediction of land surface temperatures for surface urban heat island assessment over Chandigarh city using support vector regression model. Solar Energy 186, pages 404-415.
Crossref
Zhe Zhu, Yuyu Zhou, Karen C. Seto, Eleanor C. Stokes, Chengbin Deng, Steward T.A. Pickett & Hannes Taubenböck. (2019) Understanding an urbanizing planet: Strategic directions for remote sensing. Remote Sensing of Environment 228, pages 164-182.
Crossref
Carlos Granero-Belinchon, Aurelie Michel, Jean-Pierre Lagouarde, Jose A. Sobrino & Xavier Briottet. (2019) Night Thermal Unmixing for the Study of Microscale Surface Urban Heat Islands with TRISHNA-Like Data. Remote Sensing 11:12, pages 1449.
Crossref
Thanh Noi Phan & Martin Kappas. (2018) Application of MODIS land surface temperature data: a systematic literature review and analysis. Journal of Applied Remote Sensing 12:04, pages 1.
Crossref
Rui Yao, Lunche Wang, Xin Huang, Wenwen Zhang, Junli Li & Zigeng Niu. (2018) Interannual variations in surface urban heat island intensity and associated drivers in China. Journal of Environmental Management 222, pages 86-94.
Crossref
Aneesh Mathew, Sumit Khandelwal & Nivedita Kaul. (2018) Spatio-temporal variations of surface temperatures of Ahmedabad city and its relationship with vegetation and urbanization parameters as indicators of surface temperatures. Remote Sensing Applications: Society and Environment 11, pages 119-139.
Crossref
Kerstin K Zander, Jake Rom Cadag, Jacquelyn Escarcha & Stephen T Garnett. (2018) Perceived heat stress increases with population density in urban Philippines. Environmental Research Letters 13:8, pages 084009.
Crossref
Aneesh Mathew, Sumit Khandelwal & Nivedita Kaul. (2018) Investigating spatio-temporal surface urban heat island growth over Jaipur city using geospatial techniques. Sustainable Cities and Society 40, pages 484-500.
Crossref
Zhaowu Yu, Shaobin Xu, Yuhan Zhang, Gertrud Jørgensen & Henrik Vejre. (2018) Strong contributions of local background climate to the cooling effect of urban green vegetation. Scientific Reports 8:1.
Crossref
Rui Yao, Lunche Wang, Xin Huang, Zigeng Niu, Fongfu Liu & Qing Wang. (2017) Temporal trends of surface urban heat islands and associated determinants in major Chinese cities. Science of The Total Environment 609, pages 742-754.
Crossref
Aneesh Mathew, Sumit Khandelwal & Nivedita Kaul. (2017) Investigating spatial and seasonal variations of urban heat island effect over Jaipur city and its relationship with vegetation, urbanization and elevation parameters. Sustainable Cities and Society 35, pages 157-177.
Crossref
Zhaowu Yu, Xieying Guo, Gertrud Jørgensen & Henrik Vejre. (2017) How can urban green spaces be planned for climate adaptation in subtropical cities?. Ecological Indicators 82, pages 152-162.
Crossref
Azad Rasul, Heiko Balzter, Claire Smith, John Remedios, Bashir Adamu, José Sobrino, Manat Srivanit & Qihao Weng. (2017) A Review on Remote Sensing of Urban Heat and Cool Islands. Land 6:2, pages 38.
Crossref
Rui Yao, Lunche Wang, Xuan Gui, Yukun Zheng, Haoming Zhang & Xin Huang. (2017) Urbanization Effects on Vegetation and Surface Urban Heat Islands in China’s Yangtze River Basin. Remote Sensing 9:6, pages 540.
Crossref
Jiali Wei, Xiangnan Liu, Chao Ding, Meiling Liu, Ming Jin & Dongdong Li. (2017) Developing a thermal characteristic index for lithology identification using thermal infrared remote sensing data. Advances in Space Research 59:1, pages 74-87.
Crossref
Aneesh Mathew, Sreenu Sreekumar, Sumit Khandelwal, Nivedita Kaul & Rajesh Kumar. (2016) Prediction of surface temperatures for the assessment of urban heat island effect over Ahmedabad city using linear time series model. Energy and Buildings 128, pages 605-616.
Crossref
Lili Tu, Zhihao Qin, Wenjuan Li, Jun Geng, Lechan Yang, Shuhe Zhao, Wenfeng Zhan & Fei Wang. (2016) Surface urban heat island effect and its relationship with urban expansion in Nanjing, China. Journal of Applied Remote Sensing 10:2, pages 026037.
Crossref
Jinling Quan, Wenfeng Zhan, Yunhao Chen, Mengjie Wang & Jinfei Wang. (2016) Time series decomposition of remotely sensed land surface temperature and investigation of trends and seasonal variations in surface urban heat islands. Journal of Geophysical Research: Atmospheres 121:6, pages 2638-2657.
Crossref
Xavier Briottet, Nesrine Chehata, Rosa Oltra-Carrio, Arnaud Le Bris & Christiane Weber. 2016. Land Surface Remote Sensing in Urban and Coastal Areas. Land Surface Remote Sensing in Urban and Coastal Areas 1 62 .
Matthew P. Adams & Peter L. Smith. (2014) A systematic approach to model the influence of the type and density of vegetation cover on urban heat using remote sensing. Landscape and Urban Planning 132, pages 47-54.
Crossref
Kai Liu, Xiaohong Zhang, Xueke Li & Hailing Jiang. (2014) Multiscale analysis of urban thermal characteristics: case study of Shijiazhuang, China. Journal of Applied Remote Sensing 8:1, pages 083649.
Crossref
Xiaobo Luo & Weisheng Li. (2014) Scale effect analysis of the relationships between urban heat island and impact factors: case study in Chongqing. Journal of Applied Remote Sensing 8:1, pages 084995.
Crossref
Fanhua Kong, Haiwei Yin, Cuizhen Wang, Gina Cavan & Philip James. (2014) A satellite image-based analysis of factors contributing to the green-space cool island intensity on a city scale. Urban Forestry & Urban Greening 13:4, pages 846-853.
Crossref
Leiqiu Hu & Nathaniel A. Brunsell. (2013) The impact of temporal aggregation of land surface temperature data for surface urban heat island (SUHI) monitoring. Remote Sensing of Environment 134, pages 162-174.
Crossref
Ranhao Sun, Ailian Chen, Liding Chen & Yihe Lü. (2012) Cooling effects of wetlands in an urban region: The case of Beijing. Ecological Indicators 20, pages 57-64.
Crossref
R. Oltra-Carrió, J.A. Sobrino, B. Franch & F. Nerry. (2012) Land surface emissivity retrieval from airborne sensor over urban areas. Remote Sensing of Environment 123, pages 298-305.
Crossref
E. Ng. (2012) Towards planning and practical understanding of the need for meteorological and climatic information in the design of high-density cities: A case-based study of Hong Kong. International Journal of Climatology 32:4, pages 582-598.
Crossref
Christopher W. Mackey, Xuhui Lee & Ronald B. Smith. (2012) Remotely sensing the cooling effects of city scale efforts to reduce urban heat island. Building and Environment 49, pages 348-358.
Crossref
Diana E. Bowler, Lisette Buyung-Ali, Teri M. Knight & Andrew S. Pullin. (2010) Urban greening to cool towns and cities: A systematic review of the empirical evidence. Landscape and Urban Planning 97:3, pages 147-155.
Crossref
Mingyi Du, Yanyan Kang, Liang Huo & Guoyin Cai. (2010) Urban heat island effect in preserved zones of history and culture in old city of Beijing, China. Urban heat island effect in preserved zones of history and culture in old city of Beijing, China.
Daniel P. Johnson. 2009. Planning and Socioeconomic Applications. Planning and Socioeconomic Applications 139 154 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.