563
Views
8
CrossRef citations to date
0
Altmetric
Review Articles

Linking LULC change with urban heat islands over 25 years: a case study of the urban-industrial city Durgapur, Eastern India

, ORCID Icon &

References

  • Akbari, H., et al., 1992. Cooling our communities-A guidebook on tree planting and light coloured surfacing. US environmental protection agency. Pittsburgh, Pennsylvania: Office of Policy Analysis, Climate Change Division.
  • Alecsandrowicz, S., Turlej, K., and Lewins, S., 2014. Change detection algorithm for the production of land cover change maps over the European Union Countries. Remote Sensing, 6, 5976–5994. doi:10.3390/rs6075976
  • Amirtham, L., 2016. Urbanization and its impact on urban heat island intensity in Chennai Metropolitan Area, India. IndianJournal of Science and Technology, 9, 5.
  • As-syakur, A., et al., 2012. Enhanced Built-Up and Bareness Index (EBBI) for mappingbuilt-up and bare land in an urban area. Remote Sensing, 4:2597–2970.
  • Avdan, U., and Jovanovska, G., 2016. Algorithm for automated mapping of land surface temperature using landsat 8 satellite data. Journal of Sensors, 2016, 1–8.
  • Bennet, A., 2004. Heat Fluxes from Street Canyons. Dissertation. University of Reading.
  • Borbora, J. and Das, A.K., 2014. Summertime urban heat Island study for Guwahati City, India. Sustainable Cities and Society, 11 (2014), 61–66. doi:10.1016/j.scs.2013.12.001
  • Chatterjee, S., 2014. Detection of approximate potential trend turning points in temperature time series (1941–2010) for asansol weather observation station, West Bengal, India. Atmospheric and Climate Sciences, 4 (1), 64–69. doi:10.4236/acs.2014.41009
  • Chaudhuri, G. and Mishra, N.B., 2016. Spatio-temporal dynamics of land cover and land surface temperature in Ganges-Brahmaputra delta: A comparative analysis between India and Bangladesh. Applications Geographic, 68 (2016), 68–83. doi:10.1016/j.apgeog.2016.01.002
  • Chen, X., et al., 2006. Remote sensing image based analysis of the relationship between urban heat island and land use/cover changes. Remote Sensing of Environment, 104, 133–146. doi:10.1016/j.rse.2005.11.016
  • Department of Statistics and Programme Implementation, Government of West Bengal, 2014. District statistical handbook. Kolkata, India: Burdwan.
  • Feng, Y., et al., 2018. Projection of land surface temperature considering the effects of future land change in the Taihu Lake Basin of China. Global and Planetary Change, 167, 24–34. doi:10.1016/j.gloplacha.2018.05.007
  • Giannini, M., et al., 2015. Land surface temperature from LANDSAT 5 TM images: comparison of different methods using airborne thermal data. Journal of Engineering Science and Technological Review, 8 (3), 83–90. doi:10.25103/jestr.083.12
  • Giorgio, G.A., Ragosta, M., and Telesca, V., 2017. Climate variability and industrial-suburban heat environment in a Mediterranean area. Sustainability, 9 (5), 775. doi:10.3390/su9050775
  • Hadria, R., et al., 2018. Relationships between the three components of air temperature and remotely sensed land surface temperature of agricultural areas in Morocco. International Journal of Remote Sensing, 39 (2), 356–373. doi:10.1080/01431161.2017.1385108
  • Hua, A.K., 2017. Application of CA-Markov model and land use/land cover changes in Malacca river watershed, Malaysia. Applied Ecology and Environmental Research, 15 (4), 605–622. doi:10.15666/aeer
  • Kamila, A. and Pal, S.C., 2015. Monitoring of land surface temperature and analyzing of environmental prediction on Asansol and Durgapur sub-division, Burdwan district, West Bengal using landsat imagery. International Journal of Remote Sensing and Geoscience, 4 (1), 33–36.
  • Kato, S. and Yamaguchi, Y., 2005. Analysis of urban heat Island effect using ASTER and ETM+ data: separation of anthropogenic heat discharge and natural heat radiation from sensible heat flux. Remote Sensing of Environment, 99 (1–2), 44–54. doi:10.1016/j.rse.2005.04.026
  • Khan, A. and Chatterjee, S., 2016. Numerical simulation of urban heat island intensity under urban–suburban surface and reference site in Kolkata, India. ModelingEarth Systems and Environment, 2 (2016), 1–11. doi:10.1007/s40808-016-0264-x
  • Kim, H.H., 1992. Urban heat Island. Journal of Remote Sensing, 13 (12), 2319–2336. doi:10.1080/01431169208904271
  • Kumar, S., Radhakrishnan, N., and Mathew, S., 2014. Land use change modelling using a Markov model and remote sensing. Geomatics, Natural Hazards & Risk, 5 (2), 145–156. doi:10.1080/19475705.2013.795502
  • Latif, M., 2014. Land surface temperature retrieval from LANDSAT 8 data using split window algorithm: a case study of Ranchi District. International Journal of Engineering Development and Research, 2 (4), 3840–3849.
  • Liu, L. and Zang, Y., 2011. Urban heat Island analysis using the LANDSAT TM data and ASTER data: a case study in Hong Kong. Remote Sensing, 3 (7), 1535–1552. doi:10.3390/rs3071535
  • Ministry of MSME, 2013. Brief industrial profile of Burdwan District. West Bengal: Government of India.
  • Mohan, M., Kandya, A., and Battiprolu, A., 2011. Urban heat island effect over national capital region of India: a study using the temperature trends. Scientific Research, 2 (2011), 465–472.
  • Mushore, T., et al., 2017. Linking major shifts in land surface temperatures to long term land use and land cover changes: A case of Harare, Zimbabwe. Urban Climate, 20, 120–134. doi:10.1016/j.uclim.2017.04.005
  • Odindi, J., et al., 2017. Determination of urban land-cover types and their implication on thermal characteristics in three South African coastal metropolitans using remotely sensed data. South African Geographical Journal, 99 (1), 52–67. doi:10.1080/03736245.2015.1117015
  • Odindi, J.O., Bangamwabo, V., and Mutanga, O., 2015. Assessing the value of urban green spaces in mitigating multi-seasonal urban heat using MODIS land surface temperature (LST) and landsat 8 data. International Journal Environment Researcher, 9 (1), 9–18.
  • Oke, T.R., 1988. The urban energy balance. Progress in Physical Geography, 12, 471–508. doi:10.1177/030913338801200401
  • Pal, S., 2015. A study of rapid development of Durgapur rural area into a modern steel city. The Journal of Social Science Researcher, 4 (7), 25–38.
  • Patz, J.A., et al., 2005. Impact of regional climate change on human health. Nature, 438, 310–317. doi:10.1038/nature04188
  • Rahman, M.T., 2016. Detection of land use/land cover changes and urban sprawl in Al-Khobar, Saudi Arabia: an analysis of multi-temporal remote sensing data. ISPRS International Journal Geo-Information, 5, 2016. doi:10.3390/ijgi5020015
  • Rahman, M.T., Aldosary, A.S., and Mortoja, G., 2017. Modeling future land cover changes and their effects on the land surface temperatures in the Saudi Arabian eastern coastal city of Dammam. Land, 6 (2), 36. doi:10.3390/land6020036
  • Rao, P.K., 1972. Remote sensing of urban heat islands from an environmental satellite. Bulletin of the American Meteorological Society, 53, 647–648.
  • Rasul, A., Balzter, H., and Smith, C., 2015. Spatial variation of the daytime surface urban cool Island during the dry season in Erbil, Iraqi Kurdistan, from Landsat 8. Urban Climate, 14 (2015), 176–186. doi:10.1016/j.uclim.2015.09.001
  • Rossiter, D., 2004. Technical note: statistical methods for accuracy assessment of classified thematic maps. Enschede (NL): International Institute for Geo-information Science and Earth Observation, (ITC), 25.
  • Sahana, M., Ahmed, R., and Sajjad, H., 2016. Analysing land surface temperature distribution in response to land use land cover change using split window algorithm and spectral radiance model in Sunderban Biosphere Reserve, India. Modeling Earth Systems and Environment. doi:10.1007/s40808-016-0135-5
  • Shahmohamadi, P., et al., 2010. Healthy environment: the need to mitigate urban heat island effect on human health. Procidia Engineering, 20, 61–70. doi:10.1016/j.proeng.2011.11.139
  • Shastri, H., et al., 2017. Flip flop of day-night and summer- winter surface urban heat island intensity in India. Scientific Reports, 7, 40178. doi:10.1038/srep40178
  • Sobrino, J.A., Jimenez-Munoz, J.C., and Paolini, L., 2004. Land surface temperature retrieval from Landsat TM 5. Remote Sensing of Environment, 90, 434–440. doi:10.1016/j.rse.2004.02.003
  • Spronken-Smith, R.A., Oke, T.R., and Lowry, W.P., 2000. Advection and surface energy balance across an irrigated urban park. International Journal of Climatology, 20, 1033–1047. doi:10.1002/1097-0088(200007)20:9<1033::AID-JOC508>3.0.CO;2-U
  • Srivastava, P.K., Majumdar, T.J., and Bhattacharya, A.K., 2009. Surface temperature estimation in Singhbhum Shear Zone of India using Landsat-7 ETM+ thermal infrared data. Advancement Sp Researcher, 43 (2009), 1563–1574. doi:10.1016/j.asr.2009.01.023
  • Streutker, D.R., 2003. Satellite measured growth of the urban heat island of Houston, Texas. Remote Sensing of Environment, 85, 282–289. doi:10.1016/S0034-4257(03)00007-5
  • Sun, H., Forsythe, W., and Waters, N., 2007. Modeling urban land use change and urban Sprawl: calgary, Alberta, Canada. Networks Spat. Econ., 7, 353–376. doi:10.1007/s11067-007-9030-y
  • Thi Van, T. and Bao, X., 2010. Study of the impact of urban development on surface tempertaure using remote sensing in Ho Chi Minh city, northern Vietnam. Geographical Research, 48, 86–96. doi:10.1111/j.1745-5871.2009.00607.x
  • Voogt, J.A. and Oke, T.R., 2003. Thermal remote sensing of urban climates. Remote Sensing of Environment, 86 (3), 370–384. doi:10.1016/S0034-4257(03)00079-8
  • Yadav, N.K., Santra, A., and Samanta, A.K., 2016. Identification of urban heat islands from multi temporal MODIS land surface temperature data in the southern part of West Bengal, India. International Journal of Engineering Sciences & Research Technology, 5 (5), 640–645.
  • Zhang, L., et al., 2017. Spatial and temporal analysis of the mitigating effects of industrial relocation on the surface urban heat island over China. ISPRS International Journal of Geo-Information, 6 (4), 121. doi:10.3390/ijgi6040121

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.