Open Access

Potential Influence of Urban Sprawl and Changing Land Surface Temperature on Outdoor Thermal Comfort in Lagos State, Nigeria


Cite

Achour-Younsi S., Kharrat F., 2016. Outdoor thermal comfort: Impact of the geometry of an urban street canyon in the Mediterranean subtropical climate – Case study Tunis, Tunisia. Proceedia – Social and Behavioral Sciences 216: 689–700. DOI 10.1016/j.sbspro.2015.12.062. Achour-YounsiS. KharratF. 2016 Outdoor thermal comfort: Impact of the geometry of an urban street canyon in the Mediterranean subtropical climate – Case study Tunis, Tunisia Proceedia – Social and Behavioral Sciences 216 689 700 10.1016/j.sbspro.2015.12.062 Open DOISearch in Google Scholar

Alademomi A.S., Okolie C.J., Daramola O.E., Agboola R.O., Salami T.J., 2020. Assessing the relationship of LST, NDVI and EVI with land cover changes in the Lagos Lagoon environment. Quaestiones Geographicae 39(3): 87–109. DOI 10.2478/quageo-2020-0025. AlademomiA.S. OkolieC.J. DaramolaO.E. AgboolaR.O. SalamiT.J. 2020 Assessing the relationship of LST, NDVI and EVI with land cover changes in the Lagos Lagoon environment Quaestiones Geographicae 39 3 87 109 10.2478/quageo-2020-0025 Open DOISearch in Google Scholar

Błażejczyk K., Jendritzky G., Bröde P., Fiala D., Havenith G., Epstein Y., Psikuta A., Kampmann B., 2013. An introduction to the Universal Thermal Climate Index. Geographia Polonica 86(1): 5–10. DOI 10.7163/GPol.2013.1. BłażejczykK. JendritzkyG. BrödeP. FialaD. HavenithG. EpsteinY. PsikutaA. KampmannB. 2013 An introduction to the Universal Thermal Climate Index Geographia Polonica 86 1 5 10 10.7163/GPol.2013.1 Open DOISearch in Google Scholar

Błażejczyk, K., Epstein Y., Jendritzky G., Staiger H., Tinz B., 2012. Comparison of UTCI to selected thermal indices. International Journal of Biometeorology 56: 515–535. DOI 10.1007/s00484-011-0453-2. BłażejczykK. EpsteinY. JendritzkyG. StaigerH. TinzB. 2012 Comparison of UTCI to selected thermal indices International Journal of Biometeorology 56 515 535 10.1007/s00484-011-0453-2 333741921614619 Open DOISearch in Google Scholar

Bröde P., 2020. UTCI Universal Thermal Climate Index. Online: utci.org/ (accessed 12 March 2020). BrödeP. 2020 UTCI Universal Thermal Climate Index Online: utci.org/ (accessed 12 March 2020). Search in Google Scholar

Chadchan J., Shankar R., 2009. Emerging urban development issues in the context of globalization. Journal of ITPI (Institute of Town Planners, India) 6(2): 78–85. ChadchanJ. ShankarR. 2009 Emerging urban development issues in the context of globalization Journal of ITPI (Institute of Town Planners, India) 6 2 78 85 Search in Google Scholar

Chen F., Liu Y., Liu Q., Qin F., 2015. A statistical method based on remote sensing for the estimation of air temperature in China. International Journal of Climatology 35(8): 2131–2143. DOI 10.1002/joc.4113. ChenF. LiuY. LiuQ. QinF. 2015 A statistical method based on remote sensing for the estimation of air temperature in China International Journal of Climatology 35 8 2131 2143 10.1002/joc.4113 Open DOISearch in Google Scholar

Cheng V., Ng E., 2006. Thermal comfort in urban open spaces for Hong Kong. Architectural Science Review 49: 236–242. ChengV. NgE. 2006 Thermal comfort in urban open spaces for Hong Kong Architectural Science Review 49 236 242 10.3763/asre.2006.4932 Search in Google Scholar

Choi S., Jin D., Seong N., Jung D., Han K., 2020. Correlation of air temperature and land surface temperature of Landsat-8 in cities of South Korea. EGU General Assembly 2020. DOI 10.5194/egusphere-egu2020-13886 (accessed: 18 January 2021). ChoiS. JinD. SeongN. JungD. HanK. 2020 Correlation of air temperature and land surface temperature of Landsat-8 in cities of South Korea EGU General Assembly 2020 10.5194/egusphere-egu2020-13886 (accessed: 18 January 2021). Open DOISearch in Google Scholar

Climate CHIP, 2020. Climate change heat impact & prevention. Online: climatechip.org/ (accessed 3 December 2020). Climate CHIP 2020 Climate change heat impact & prevention Online: climatechip.org/ (accessed 3 December 2020). Search in Google Scholar

Cui L., Shi J., 2012. Urbanization and its environmental effects in Shanghai, China. Urban Climate 2: 1–15. DOI 10.1016/j.uclim.2012.10.008. CuiL. ShiJ. 2012 Urbanization and its environmental effects in Shanghai, China Urban Climate 2 1 15 10.1016/j.uclim.2012.10.008 Open DOISearch in Google Scholar

De Sherbinin A., Schiller A., Pulsipher A., 2007. The vulnerability of global cities to climate hazards. Environment and Urbanisation 19: 39–64. DOI 10.1177/0956247807076725. De SherbininA. SchillerA. PulsipherA. 2007 The vulnerability of global cities to climate hazards Environment and Urbanisation 19 39 64 10.1177/0956247807076725 Open DOISearch in Google Scholar

Deng Y., Shijie W., Xiaoyong B., Yichao T., Luhua W., Jianyong X., Fei, C., Qinghuan Q., 2018. Relationship among land surface temperature and LUCC, NDVI in typical karst area. Scientific Reports 8: 641. 12p. DOI 10.1038/s41598-017-19088-x. DengY. ShijieW. XiaoyongB. YichaoT. LuhuaW. JianyongX. FeiC. QinghuanQ. 2018 Relationship among land surface temperature and LUCC, NDVI in typical karst area Scientific Reports 8 641 12p. 10.1038/s41598-017-19088-x 576648629330526 Open DOISearch in Google Scholar

Dewan A.M., Corner R.J., 2012. The impact of land use and land cover changes on land surface temperature in a rapidly urbanizing megacity. IGARSS 2012. 6337–6339. DewanA.M. CornerR.J. 2012 The impact of land use and land cover changes on land surface temperature in a rapidly urbanizing megacity IGARSS 2012. 6337 6339 10.1109/IGARSS.2012.6352709 Search in Google Scholar

Ferrelli F., Bustos M., Huamantinco-Cisneros M., Piccolo M., 2015. Utilization of satellite images to study the thermal distribution in different soil covers in Bahia Blanca city (Argentina). Revista de Teledetección 4: 31–42. FerrelliF. BustosM. Huamantinco-CisnerosM. PiccoloM. 2015 Utilization of satellite images to study the thermal distribution in different soil covers in Bahia Blanca city (Argentina) Revista de Teledetección 4 31 42 10.4995/raet.2015.4018 Search in Google Scholar

Fiala D., Havenith G., Bröde P., Kampmann B., Jendritzky G., 2012. UTCI Fiala multi-node model of human heat transfer and temperature regulation. International Journal of Biometeorology 56(3): 429–441. DOI 10.1007/s00484-011-0424-7. FialaD. HavenithG. BrödeP. KampmannB. JendritzkyG. 2012 UTCI Fiala multi-node model of human heat transfer and temperature regulation International Journal of Biometeorology 56 3 429 441 10.1007/s00484-011-0424-7 21503622 Open DOISearch in Google Scholar

Fu Y., Ren Z., Yu Q., He X., Xiao L., Wang Q., Liu C., 2019. Long-term dynamics of urban thermal comfort in China’s four major capital cities across different climate zones. PeerJ 7: e8026. DOI 10.7717/peerj.8026. FuY. RenZ. YuQ. HeX. XiaoL. WangQ. LiuC. 2019 Long-term dynamics of urban thermal comfort in China’s four major capital cities across different climate zones PeerJ 7 e8026 10.7717/peerj.8026 685526531737450 Open DOISearch in Google Scholar

Global Mass Transit 2015. Project update – Lagos bus rapid transit (BRT) system, Nigeria. Online: https://www.globalmasstransit.net/archive.php?id=18222 (accessed 19 December 2020). Global Mass Transit 2015 Project update – Lagos bus rapid transit (BRT) system, Nigeria Online: https://www.globalmasstransit.net/archive.php?id=18222 (accessed 19 December 2020). Search in Google Scholar

Gómez J., Naranjo M., Lousada S., Velarde J.G., Castanho R.A., Loures L., 2020. Land-use changes in the canary archipelago using the CORINE data: A retrospective analysis. Land 2020. 9: 232. DOI 10.3390/land9070232i. GómezJ. NaranjoM. LousadaS. VelardeJ.G. CastanhoR.A. LouresL. 2020 Land-use changes in the canary archipelago using the CORINE data: A retrospective analysis Land 2020 9 232 10.3390/land9070232i Open DOISearch in Google Scholar

Good E.J., Ghent D.J., Bulgin C.E., Remedios J.J., 2017. A spatiotemporal analysis of the relationship between near-surface air temperature and satellite land surface temperatures using 17 years of data from the ATSR series. Journal of Geophysical Research: Atmospheres 122: 9185–9210. DOI 10.1002/2017JD026880. GoodE.J. GhentD.J. BulginC.E. RemediosJ.J. 2017 A spatiotemporal analysis of the relationship between near-surface air temperature and satellite land surface temperatures using 17 years of data from the ATSR series Journal of Geophysical Research: Atmospheres 122 9185 9210 10.1002/2017JD026880 Open DOISearch in Google Scholar

Good E., 2015. Daily minimum and maximum surface air temperatures from geostationary satellite data. Journal of Geophysical Research: Atmospheres 120: 2306–2324. DOI 10.1002/2014JD022438. GoodE. 2015 Daily minimum and maximum surface air temperatures from geostationary satellite data Journal of Geophysical Research: Atmospheres 120 2306 2324 10.1002/2014JD022438 Open DOISearch in Google Scholar

Goshayeshi D., Shahidan M.F., Khafi F., Ehtesham E., 2013. A review of researches about human thermal comfort in semi-outdoor spaces. European Online Journal of Natural and Social Sciences 2: 516–523. GoshayeshiD. ShahidanM.F. KhafiF. EhteshamE. 2013 A review of researches about human thermal comfort in semi-outdoor spaces European Online Journal of Natural and Social Sciences 2 516 523 Search in Google Scholar

Guha S., Govil H., Dey A., Gill N., 2020. A case study on the relationship between land surface temperature and land surface indices in Raipur City, India. Geografisk Tidsskrift-Danish Journal of Geography 120(1): 35–50. DOI 10.1080/00167223.2020.1752272. GuhaS. GovilH. DeyA. GillN. 2020 A case study on the relationship between land surface temperature and land surface indices in Raipur City, India Geografisk Tidsskrift-Danish Journal of Geography 120 1 35 50 10.1080/00167223.2020.1752272 Open DOISearch in Google Scholar

Gutman G., Huang C., Chander G., Noojipady P., Masek J.G., 2013. Assessment of the NASA-USGS global land survey (GLS) datasets. Remote Sensing of Environment 134: 249–265. GutmanG. HuangC. ChanderG. NoojipadyP. MasekJ.G. 2013 Assessment of the NASA-USGS global land survey (GLS) datasets Remote Sensing of Environment 134 249 265 10.1016/j.rse.2013.02.026 Search in Google Scholar

Hahs A.K., McDonnell M.J., McCarthy M.A., Vesk P.A., Corlett R.T., Norton B.A., Clemants S.E., Duncan R.P., Thompson K., Schwartz M.W., Williams N.S.G., 2009. A global synthesis of plant extinction rates in urban areas. Ecology Letters 12: 1165–1173. DOI 10.1111/j.1461-0248.2009.01372.x. HahsA.K. McDonnellM.J. McCarthyM.A. VeskP.A. CorlettR.T. NortonB.A. ClemantsS.E. DuncanR.P. ThompsonK. SchwartzM.W. WilliamsN.S.G. 2009 A global synthesis of plant extinction rates in urban areas Ecology Letters 12 1165 1173 10.1111/j.1461-0248.2009.01372.x 19723284 Open DOISearch in Google Scholar

Hamoodi M.N., Corner R., Dewan A., 2019. Thermophysical behaviour of LULC surfaces and their effect on the urban thermal environment. Journal of Spatial Science 64(1): 111–130. DOI 10.1080/14498596.2017.1386598. HamoodiM.N. CornerR. DewanA. 2019 Thermophysical behaviour of LULC surfaces and their effect on the urban thermal environment Journal of Spatial Science 64 1 111 130 10.1080/14498596.2017.1386598 Open DOISearch in Google Scholar

Harris Geospatial., 2020. Parallelepiped. Online: harrisgeospatial.com/docs/Parallelepiped.html (accessed 2 September 2020). Harris Geospatial 2020 Parallelepiped Online: harrisgeospatial.com/docs/Parallelepiped.html (accessed 2 September 2020). Search in Google Scholar

Honjo T., 2009. Thermal comfort in outdoor environment. Global Environment Research 13: 43–47. HonjoT. 2009 Thermal comfort in outdoor environment Global Environment Research 13 43 47 Search in Google Scholar

Hou G.L., Zhang H.Y., Wang Y.Q., Qiao Z.H., Zhang, Z.X., 2010. Retrieval and spatial distribution of land surface temperature in the middle part of Jilin Province based on MODIS data. Scientia Geographica Sinica 30: 421–427. HouG.L. ZhangH.Y. WangY.Q. QiaoZ.H. ZhangZ.X. 2010 Retrieval and spatial distribution of land surface temperature in the middle part of Jilin Province based on MODIS data Scientia Geographica Sinica 30 421 427 Search in Google Scholar

Ibe A.C., 1988. Coastline Erosion in Nigeria. Ibadan University Press. 217p. IbeA.C. 1988 Coastline Erosion in Nigeria Ibadan University Press 217 Search in Google Scholar

Isioye O.A., Ikwueze H.U. Akomolafe E.A., 2020. Urban heat island effects and thermal comfort in Abuja Municipal Area Council of Nigeria. FUTY Journal of the Environment 14(2): June 2020. IsioyeO.A. IkwuezeH.U. AkomolafeE.A. 2020 Urban heat island effects and thermal comfort in Abuja Municipal Area Council of Nigeria FUTY Journal of the Environment 14 2 June 2020 Search in Google Scholar

Jago-on K.A.B., Kaneko S., Fujukura R., Fujiwara A., Imai T., Matsumoto T., 2009. Urbanization and subsurface environmental issues: An attempt at DPSIR model application in Asian cities. Science of the total Environment 407(9): 3089–3104. DOI 10.1016/j.scitotenv.2008.08.004. Jago-onK.A.B. KanekoS. FujukuraR. FujiwaraA. ImaiT. MatsumotoT. 2009 Urbanization and subsurface environmental issues: An attempt at DPSIR model application in Asian cities Science of the total Environment 407 9 3089 3104 10.1016/j.scitotenv.2008.08.004 18922564 Open DOISearch in Google Scholar

Janatian N., Sadeghi M., Sanaeinejad S.H., Bakhshian E., Farid A., Hasheminia S.M., Ghazanfari S., 2016. A statistical framework for estimating air temperature using MODIS land surface temperature data. International Journal of Climatology 37(3): 1181–1194. DOI 10.1002/joc.4766. JanatianN. SadeghiM. SanaeinejadS.H. BakhshianE. FaridA. HasheminiaS.M. GhazanfariS. 2016 A statistical framework for estimating air temperature using MODIS land surface temperature data International Journal of Climatology 37 3 1181 1194 10.1002/joc.4766 Open DOISearch in Google Scholar

Jendritzky G., de Dear R., Havenith G., 2012. UTCI – Why another thermal index? International Journal of Biometeorology 56(3): 421–428. DOI 10.1007/s00484-011-0513-7. JendritzkyG. de DearR. HavenithG. 2012 UTCI – Why another thermal index? International Journal of Biometeorology 56 3 421 428 10.1007/s00484-011-0513-7 22187087 Open DOISearch in Google Scholar

Johansson E., Thorsson S., Emmanuel R., Krüger E., 2014. Instruments and methods in outdoor thermal comfort studies – The need for standardization. Urban Climate 10: 346–366. DOI 10.1016/j.uclim.2013.12.002. JohanssonE. ThorssonS. EmmanuelR. KrügerE. 2014 Instruments and methods in outdoor thermal comfort studies – The need for standardization Urban Climate 10 346 366 10.1016/j.uclim.2013.12.002 Open DOISearch in Google Scholar

Kim Y.H., Baik J.J., 2005. Spatial and temporal structure of urban heat island in Seoul. Journal of Applied Meteorology 44: 591–605. DOI 10.1175/JAM2226.1. KimY.H. BaikJ.J. 2005 Spatial and temporal structure of urban heat island in Seoul Journal of Applied Meteorology 44 591 605 10.1175/JAM2226.1 Open DOISearch in Google Scholar

Liu J.G., Diamond J., 2005. China’s environment in a globalizing world. Nature 435: 1179–1186. DOI 10.1038/4351179a. LiuJ.G. DiamondJ. 2005 China’s environment in a globalizing world Nature 435 1179 1186 10.1038/4351179a 15988514 Open DOISearch in Google Scholar

Mushore T.D., Mutanga O., Odindi J., Dube T., 2017a. 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. MushoreT.D. MutangaO. OdindiJ. DubeT. 2017a 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 10.1016/j.uclim.2017.04.005 Open DOISearch in Google Scholar

Mushore T.D., Odindi J., Dube T., Mutanga O., 2017b. Outdoor thermal discomfort analysis in Harare, Zimbabwe in Southern Africa. South African Geographical Journal 2017. 18p. DOI 10.1080/03736245.2017.1339630. MushoreT.D. OdindiJ. DubeT. MutangaO. 2017b Outdoor thermal discomfort analysis in Harare, Zimbabwe in Southern Africa South African Geographical Journal 2017 18 10.1080/03736245.2017.1339630 Open DOISearch in Google Scholar

Mutiibwa D., Strachan S., Albright T., 2015. Land surface temperature and surface air temperature in complex terrain. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 8(10): 4761–4774. DOI 10.1109/JSTARS.2015.2468594. MutiibwaD. StrachanS. AlbrightT. 2015 Land surface temperature and surface air temperature in complex terrain IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 8 10 4761 4774 10.1109/JSTARS.2015.2468594 Open DOISearch in Google Scholar

Napoli C.D., Pappenberger F., Cloke H.L., 2018. Assessing heat-related health risk in Europe via the Universal Thermal Climate Index (UTCI). International Journal of Biometeorology 62: 1155–1165. DOI 10.1007/s00484-018-1518-2. NapoliC.D. PappenbergerF. ClokeH.L. 2018 Assessing heat-related health risk in Europe via the Universal Thermal Climate Index (UTCI) International Journal of Biometeorology 62 1155 1165 10.1007/s00484-018-1518-2 602889129546489 Open DOISearch in Google Scholar

Nse O.U., Okolie C.J., Nse V.O., 2020. Dynamics of land cover, land surface temperature and NDVI in Uyo Capital City. Nigeria. Scientific African 10: e00599. DOI 0.1016/j.sciaf.2020.e00599. NseO.U. OkolieC.J. NseV.O. 2020 Dynamics of land cover, land surface temperature and NDVI in Uyo Capital City. Nigeria Scientific African 10 e00599 0.1016/j.sciaf.2020.e00599 Open DOISearch in Google Scholar

Nwilo P.C., Olayinka D.N., Obiefuna J.N., Atagbaza A.O., Adzandeh A.E., 2012. Determination of Land Surface Temperature (LST) and potential urban heat island effect in parts of Lagos State using satellite imageries. FUTY Journal of the Environment 7(1), 19–33. DOI 10.4314/fje.v7i1.2. NwiloP.C. OlayinkaD.N. ObiefunaJ.N. AtagbazaA.O. AdzandehA.E. 2012 Determination of Land Surface Temperature (LST) and potential urban heat island effect in parts of Lagos State using satellite imageries FUTY Journal of the Environment 7 1 19 33 10.4314/fje.v7i1.2 Open DOISearch in Google Scholar

Obiefuna J.N., Nwilo P.C., Okolie C.J., Emmanuel E.I., Daramola O.E., 2018. Dynamics of land surface temperature in response to land cover changes in Lagos metropolis. Nigerian Journal of Environmental Sciences and Technology (NIJEST) 2(2): 148–159. DOI 10.36263/nijest.2018.02.0074. ObiefunaJ.N. NwiloP.C. OkolieC.J. EmmanuelE.I. DaramolaO.E. 2018 Dynamics of land surface temperature in response to land cover changes in Lagos metropolis Nigerian Journal of Environmental Sciences and Technology (NIJEST) 2 2 148 159 10.36263/nijest.2018.02.0074 Open DOISearch in Google Scholar

Odindi J., Mutanga O., Abdel-Rahman E.M., Adam E., Bangamwabo V., 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 OdindiJ. MutangaO. Abdel-RahmanE.M. AdamE. BangamwaboV. 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 10.1080/03736245.2015.1117015 Open DOISearch in Google Scholar

Oguz H., 2013. LST calculator: A program for retrieving land surface temperature from Landsat TM/ETM+ imagery. Environmental Engineering and Management Journal 12(3): 549–555. DOI 10.30638/eemj.2013.067. OguzH. 2013 LST calculator: A program for retrieving land surface temperature from Landsat TM/ETM+ imagery Environmental Engineering and Management Journal 12 3 549 555 10.30638/eemj.2013.067 Open DOISearch in Google Scholar

Ohwo O., Abotutu A., 2015. Environmental Impact of Urbanisation in Nigeria. British Journal of Applied Science & Technology 9(3): 212–221. DOI 10.9734/bjast/2015/18148. OhwoO. AbotutuA. 2015 Environmental Impact of Urbanisation in Nigeria British Journal of Applied Science & Technology 9 3 212 221 10.9734/bjast/2015/18148 Open DOISearch in Google Scholar

Ojeh Vincent N., Balogun A.A., Okhimamhe A.A., 2016. Urban-rural temperature differences in Lagos. Climate 4(2): 29. DOI 10.3390/cli4020029. Ojeh VincentN. BalogunA.A. OkhimamheA.A. 2016 Urban-rural temperature differences in Lagos Climate 4 2 29 10.3390/cli4020029 Open DOISearch in Google Scholar

Ongoma V., Muange P.K., Shilenje Z.W., 2016. Potential effects of urbanization on urban thermal comfort, a case study of Nairobi City, Kenya: A review. Geographica Pannonica 20(1): 19–31. OngomaV. MuangeP.K. ShilenjeZ.W. 2016 Potential effects of urbanization on urban thermal comfort, a case study of Nairobi City, Kenya: A review Geographica Pannonica 20 1 19 31 10.5937/GeoPan1601019O Search in Google Scholar

Orosa J.O., Costa A.M., Rodriguez-Fernandez A., Roshan G., 2014. Effect of climate change on outdoor thermal comfort in humid climates. Journal of Environmental Health Science & Engineering 12(46): 1–9. DOI 10.1186/2052-336X-12-46. OrosaJ.O. CostaA.M. Rodriguez-FernandezA. RoshanG. 2014 Effect of climate change on outdoor thermal comfort in humid climates Journal of Environmental Health Science & Engineering 12 46 1 9 10.1186/2052-336X-12-46 393830324517127 Open DOISearch in Google Scholar

Oyler J.W., Ballantyne A., Jencso K., Sweet M., Running S.W., 2015. Creating a topoclimatic daily air temperature dataset for the conterminous United States using homogenized station data and remotely sensed land skin temperature. International Journal of Climatology 35: 2258–2279. DOI 10.1002/joc.4127. OylerJ.W. BallantyneA. JencsoK. SweetM. RunningS.W. 2015 Creating a topoclimatic daily air temperature dataset for the conterminous United States using homogenized station data and remotely sensed land skin temperature International Journal of Climatology 35 2258 2279 10.1002/joc.4127 Open DOISearch in Google Scholar

Parmentier B., McGill B.J., Wilson A.M., Regetz J., Jetz W., Guralnick R., Tuanmu M.N., Schildhauer M., 2015. Using multi-timescale methods and satellite-derived land surface temperature for the interpolation of daily maximum air temperature in Oregon. International Journal of Climatology 35: 3862–3878. DOI 10.1002/joc.4251. ParmentierB. McGillB.J. WilsonA.M. RegetzJ. JetzW. GuralnickR. TuanmuM.N. SchildhauerM. 2015 Using multi-timescale methods and satellite-derived land surface temperature for the interpolation of daily maximum air temperature in Oregon International Journal of Climatology 35 3862 3878 10.1002/joc.4251 Open DOISearch in Google Scholar

Polydoros A., Cartalis C., 2014. Assessing thermal risk in urban areas – An application for the urban agglomeration of Athens. Advances in Building Energy Research 8: 74–83. PolydorosA. CartalisC. 2014 Assessing thermal risk in urban areas – An application for the urban agglomeration of Athens Advances in Building Energy Research 8 74 83 10.1080/17512549.2014.890536 Search in Google Scholar

Radeloff V.C., Stewart S.I., Hawbaker T.J., Gimmi U., Pidgeon A.M., Flather C.H., Hammer R.B., Helmers D.P., 2010. Housing growth in and near United States protected areas limits their conservation value. Proceedings of the National Academy of Sciences 107(2): 940–945. DOI 10.1073/pnas.0911131107. RadeloffV.C. StewartS.I. HawbakerT.J. GimmiU. PidgeonA.M. FlatherC.H. HammerR.B. HelmersD.P. 2010 Housing growth in and near United States protected areas limits their conservation value Proceedings of the National Academy of Sciences 107 2 940 945 10.1073/pnas.0911131107 Open DOISearch in Google Scholar

Richards J., 1999. Remote sensing digital image analysis. Berlin. Springer-Verlag. 240p. RichardsJ. 1999 Remote sensing digital image analysis Berlin Springer-Verlag 240 10.1007/978-3-662-03978-6 Search in Google Scholar

Rizwan A.M., Denis Y.C., Leung L.C., 2008. A review on the generation, determination and mitigation of urban heat island. Journal of Environmental Sciences 20(1): 120–128. DOI 10.1016/s1001-0742(08)60019-4. RizwanA.M. DenisY.C. LeungL.C. 2008 A review on the generation, determination and mitigation of urban heat island Journal of Environmental Sciences 20 1 120 128 10.1016/s1001-0742(08)60019-4 Open DOISearch in Google Scholar

Rohat G., Flacke J., Dosio A., Dao H., van Maarseveen M., 2019. Projections of human exposure to dangerous heat in African cities under multiple socioeconomic and climate scenarios. Earth’s Future 7: 528–546. DOI 10.1029/2018EF001020. RohatG. FlackeJ. DosioA. DaoH. van MaarseveenM. 2019 Projections of human exposure to dangerous heat in African cities under multiple socioeconomic and climate scenarios Earth’s Future 7 528 546 10.1029/2018EF001020 Open DOISearch in Google Scholar

Setaih K., Hamza N., Mohammed M.A., Dudek S., Townshend T., 2014. CFD modeling as a tool for assessing outdoor thermal comfort conditions in urban settings in hot arid climates. Journal of Information Technology in Construction (ITcon) 19: 248–269. SetaihK. HamzaN. MohammedM.A. DudekS. TownshendT. 2014 CFD modeling as a tool for assessing outdoor thermal comfort conditions in urban settings in hot arid climates Journal of Information Technology in Construction (ITcon) 19 248 269 Search in Google Scholar

Seto K.C., Fragkias M., Guneralp B., Reilly M.K., 2011. A meta-analysis of global urban land expansion. PLoS one 6(8): 1–9. DOI 10.1371/journal.pone.0023777. SetoK.C. FragkiasM. GuneralpB. ReillyM.K. 2011 A meta-analysis of global urban land expansion PLoS one 6 8 1 9 10.1371/journal.pone.0023777 315810321876770 Open DOISearch in Google Scholar

Shi T., Huang Y., Wang H., Shi C.E., Yang Y.J., 2015. Influence of urbanization on the thermal environment of meteorological station: Satellite-observed evidence. Advances in Climate Change Research 6(1): 7–15. DOI 10.1016/j.accre.2015.07.001 ShiT. HuangY. WangH. ShiC.E. YangY.J. 2015 Influence of urbanization on the thermal environment of meteorological station: Satellite-observed evidence Advances in Climate Change Research 6 1 7 15 10.1016/j.accre.2015.07.001 Open DOISearch in Google Scholar

Tarawally M., Wenbo X., Weiming H., Terence D.M., 2018. Comparative analysis of responses of land surface temperature to long-term land use/cover changes between a coastal and inland city: A case of Freetown and Bo town in Sierra Leone. Remote Sensing 10(1): 112. DOI 10.3390/rs10010112. TarawallyM. WenboX. WeimingH. TerenceD.M. 2018 Comparative analysis of responses of land surface temperature to long-term land use/cover changes between a coastal and inland city: A case of Freetown and Bo town in Sierra Leone Remote Sensing 10 1 112 10.3390/rs10010112 Open DOISearch in Google Scholar

Tatem A.J., Nayar A., Hay S.I., 2006. Scene selection and the use of NASA’s global orthorectified Landsat dataset for land cover and land use change monitoring. International Journal of Remote Sensing 27: 3073–3078. TatemA.J. NayarA. HayS.I. 2006 Scene selection and the use of NASA’s global orthorectified Landsat dataset for land cover and land use change monitoring International Journal of Remote Sensing 27 3073 3078 10.1080/01431160600589195 Search in Google Scholar

Uejio C.K., Wilhelmi O.V., Golden J.S., Mills D.M., Gulino S.P., Samenow J.P., 2011. Intra-urban societal vulnerability to extreme heat: The role of heat exposure and the built environment, socioeconomics, and neighborhood stability. Health Place 17(1): 498–507. DOI 10.1016/j.healthplace.2010.12.005. UejioC.K. WilhelmiO.V. GoldenJ.S. MillsD.M. GulinoS.P. SamenowJ.P. 2011 Intra-urban societal vulnerability to extreme heat: The role of heat exposure and the built environment, socioeconomics, and neighborhood stability Health Place 17 1 498 507 10.1016/j.healthplace.2010.12.005 Open DOISearch in Google Scholar

Ullah S., Tahir A.A., Akbar T.A., Hassan Q.K., Dewan A., Khan A.J., Khan M., 2019. Remote sensing-based quantification of the relationships between land use land cover changes and surface temperature over the Lower Himalayan Region. Sustainability 11: 5492. DOI 10.3390/su11195492. UllahS. TahirA.A. AkbarT.A. HassanQ.K. DewanA. KhanA.J. KhanM. 2019 Remote sensing-based quantification of the relationships between land use land cover changes and surface temperature over the Lower Himalayan Region Sustainability 11 5492 10.3390/su11195492 Open DOISearch in Google Scholar

UN [United Nations Department of Economic and Social Affairs, Population Division], 2014. The 2014 Revision World Urbanization Prospects. United Nations, New York. Online: un.org/en/desa/2014-revision-world-urbanization-prospects (accessed 12 March 2020). UN [United Nations Department of Economic and Social Affairs, Population Division] 2014 The 2014 Revision World Urbanization Prospects United Nations, New York Online: un.org/en/desa/2014-revision-world-urbanization-prospects (accessed 12 March 2020). Search in Google Scholar

UN [United Nations Department of Economic and Social Affairs, Population Division], 2018. The 2018 revision world urbanization prospects. United Nations, New York. Online: un.org/development/desa/publications (accessed 12 March 2020). UN [United Nations Department of Economic and Social Affairs, Population Division] 2018 The 2018 revision world urbanization prospects United Nations, New York Online: un.org/development/desa/publications (accessed 12 March 2020). Search in Google Scholar

USGS [United States Geological Survey], 2015. Landsat 8 (L8) data users handbook, version 1.0. LSDS-1574. Department of the Interior, U.S. Geological Survey. USGS [United States Geological Survey] 2015 Landsat 8 (L8) data users handbook, version 1.0 LSDS-1574. Department of the Interior, U.S. Geological Survey. Search in Google Scholar

USGS [United States Geological Surveys], 2020. Global visualisation online portals. Online: glovis.usgs.gov; earthexplorer.usgs.gov/ (accessed 12 March 2020). USGS [United States Geological Surveys] 2020 Global visualisation online portals Online: glovis.usgs.gov; earthexplorer.usgs.gov/ (accessed 12 March 2020). Search in Google Scholar

Walls W., Parker N., Walliss J., 2015. Designing with thermal comfort indices in outdoor sites. In Crawford R.H., Stephen A. (eds), Living and Learning: Research for a Better Built Environment: 49th International Conference of the Architectural Science Association 2015. 1117–1128. Online: https://anzasca.net/wp-content/uploads/2015/12/107_Walls_Parker_Walliss_ASA2015.pdf (accessed 19 December 2020). WallsW. ParkerN. WallissJ. 2015 Designing with thermal comfort indices in outdoor sites In CrawfordR.H. StephenA. (eds), Living and Learning: Research for a Better Built Environment: 49th International Conference of the Architectural Science Association 2015 1117 1128 Online: https://anzasca.net/wp-content/uploads/2015/12/107_Walls_Parker_Walliss_ASA2015.pdf (accessed 19 December 2020). Search in Google Scholar

Wang C., Zhan W., Liu Z., Li J., Li L., Fu P., Huang F., Lai J., Chen J., Hong F., Jiang S., 2020. Satellite-based mapping of the Universal Thermal Climate Index over the Yangtze River Delta urban agglomeration. Journal of Cleaner Production 277: 123830. DOI 10.1016/j.jclepro.2020.123830. WangC. ZhanW. LiuZ. LiJ. LiL. FuP. HuangF. LaiJ. ChenJ. HongF. JiangS. 2020 Satellite-based mapping of the Universal Thermal Climate Index over the Yangtze River Delta urban agglomeration Journal of Cleaner Production 277 123830 10.1016/j.jclepro.2020.123830 Open DOISearch in Google Scholar

Wei-Wu W., Li-Zhong Z., Ren-Chao W., 2004. An analysis on spatial variation of urban human thermal comfort in Hangzhou, China. Journal of Environmental Sciences 16: 332–338. Wei-WuW. Li-ZhongZ. Ren-ChaoW. 2004 An analysis on spatial variation of urban human thermal comfort in Hangzhou, China Journal of Environmental Sciences 16 332 338 Search in Google Scholar

Widyasamratri H., Souma K., Suetsugi T., Ishidaira H., Ichikawa Y., Kobayashi H., Inagaki I., 2013. Air temperature estimation from satellite remote sensing to detect the effect of urbanization in Jakarta, Indonesia. Journal of Emerging Trends in Engineering and Applied Sciences 4: 800–805. WidyasamratriH. SoumaK. SuetsugiT. IshidairaH. IchikawaY. KobayashiH. InagakiI. 2013 Air temperature estimation from satellite remote sensing to detect the effect of urbanization in Jakarta, Indonesia Journal of Emerging Trends in Engineering and Applied Sciences 4 800 805 Search in Google Scholar

WWO [World Weather Online], 2020. Historical Weather Data. Online: worldweatheronline.com/ (accessed 12 March 2020). WWO [World Weather Online] 2020 Historical Weather Data Online: worldweatheronline.com/ (accessed 12 March 2020). Search in Google Scholar

Yahia M.W., Johansson E., Thorsson S., Lindberg F., Rasmussen M.I., 2018. Effect of urban design on microclimate and thermal comfort outdoors in warm-humid Dar es Salaam, Tanzania. International Journal of Biometeorology 62: 373–385. DOI 10.1007/s00484-017-1380-7. YahiaM.W. JohanssonE. ThorssonS. LindbergF. RasmussenM.I. 2018 Effect of urban design on microclimate and thermal comfort outdoors in warm-humid Dar es Salaam, Tanzania International Journal of Biometeorology 62 373 385 10.1007/s00484-017-1380-7 Open DOISearch in Google Scholar

Yilmaz S., 2007. Human thermal comfort over three different land surfaces during summer in the city of Erzurum, Turkey. Atmosfera 20: 289–297. YilmazS. 2007 Human thermal comfort over three different land surfaces during summer in the city of Erzurum, Turkey Atmosfera 20 289 297 Search in Google Scholar

Yuan F., 2008. Land-cover change and environmental impact analysis in the Greater Mankato area of Minnesota using remote sensing and GIS modeling. International Journal of Remote Sensing 29(4): 1169–1184. DOI 10.1080/01431160701294703 YuanF. 2008 Land-cover change and environmental impact analysis in the Greater Mankato area of Minnesota using remote sensing and GIS modeling International Journal of Remote Sensing 29 4 1169 1184 10.1080/01431160701294703 Open DOISearch in Google Scholar

Zare S., Hasheminejad N., Shirvan H. E., Hemmatjo R., Sarebanzadeh K., Ahmadi S., 2018. Comparing Universal Thermal Climate Index (UTCI) with selected thermal indices/environmental parameters during 12 months of the year. Weather and Climate Extremes 19: 49–57. DOI 10.1016/j.wace.2018.01.004. ZareS. HasheminejadN. ShirvanH. E. HemmatjoR. SarebanzadehK. AhmadiS. 2018 Comparing Universal Thermal Climate Index (UTCI) with selected thermal indices/environmental parameters during 12 months of the year Weather and Climate Extremes 19 49 57 10.1016/j.wace.2018.01.004 Open DOISearch in Google Scholar

Zareie S., Khosravi H., Nasiri A., 2016. Derivation of land surface temperature from Landsat Thematic Mapper (TM) sensor data and analysing relation between land use changes and surface temperature. Solid Earth Discussions 1–15. DOI 10.5194/se-2016-22. ZareieS. KhosraviH. NasiriA. 2016 Derivation of land surface temperature from Landsat Thematic Mapper (TM) sensor data and analysing relation between land use changes and surface temperature Solid Earth Discussions 1 15 10.5194/se-2016-22 Open DOISearch in Google Scholar

Zhang Y., Odeh I.O.A., Han, C., 2009. Bi-temporal characterization of land surface temperature in relation to impervious surface area, NDVI and NDBI, using a sub-pixel image analysis. International Journal of Applied Earth Observation and Geoinformation 11: 256–264. ZhangY. OdehI.O.A. HanC. 2009 Bi-temporal characterization of land surface temperature in relation to impervious surface area, NDVI and NDBI, using a sub-pixel image analysis International Journal of Applied Earth Observation and Geoinformation 11 256 264 10.1016/j.jag.2009.03.001 Search in Google Scholar

Zhao S.Q., Da L.J., Tang Z.Y., Fang H.J., Song K., Fang J.Y., 2006. Ecological consequences of rapid urban expansion: Shanghai, China. Frontier Ecology and Environment 4(7): 341–346. DOI 10.1890/1540-9295(2006)004[0341:ECORUE]2.0.CO;2. ZhaoS.Q. DaL.J. TangZ.Y. FangH.J. SongK. FangJ.Y. 2006 Ecological consequences of rapid urban expansion: Shanghai, China Frontier Ecology and Environment 4 7 341 346 10.1890/1540-9295(2006)004[0341:ECORUE]2.0.CO;2 Open DOISearch in Google Scholar

Zhou D., Zhang L., Hao L., Sun G., Liu Y., Zhu C., 2016. Spatiotemporal trends of urban heat island effect along the urban development intensity gradient in China. Science of the Total Environment 544: 617–626. DOI 10.1016/j.scitotenv.2015.11.168. ZhouD. ZhangL. HaoL. SunG. LiuY. ZhuC. 2016 Spatiotemporal trends of urban heat island effect along the urban development intensity gradient in China Science of the Total Environment 544 617 626 10.1016/j.scitotenv.2015.11.168 26674691 Open DOISearch in Google Scholar

eISSN:
2081-6383
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Geosciences, Geography