Details

Title

Analysis of cold island effect in city parks from the perspectives of maximum and cumulative values – a case study of Xi'an City

Journal title

Archives of Environmental Protection

Yearbook

2024

Volume

50

Issue

1

Affiliation

Zhang, Yao : Shaanxi University of Science and Technology, China ; Wang, Qian : Shaanxi University of Science and Technology, China ; Kong, Yaqian : Shaanxi University of Science and Technology, China ; Quan, Jing : Shaanxi University of Science and Technology, China ; Zhang, Yuxin : Shaanxi University of Science and Technology, China ; Zhang, Yongjian : Shaanxi University of Science and Technology, China

Authors

Keywords

park cooling island; ; land surface temperate; ; buffer analysis; ; urban planning; ; Xi'an City;

Divisions of PAS

Nauki Techniczne

Coverage

95-109

Publisher

Polish Academy of Sciences

Bibliography

  1. Algretawee, H., Rayburg, S. & Neave, M. (2019). Estimating the effect of park proximity to the central of Melbourne city on Urban Heat Island (UHI) relative to Land Surface Temperature (LST). Ecological Engineering, 138, pp. 374-390. DOI:10.1016/j.ecoleng.2019.07.034
  2. Anjos, M. & Lopes, A. (2017). Urban heat island and park Cool island intensities in the coastal city of Aracaju, north-eastern Brazil. Sustainability, 9, 8, pp. 1379. DOI:10.3390/su9081379
  3. Chatterjee, R., Singh, N., Thapa, S., Sharma, D. & Kumar, D. (2017). Retrieval of land surface temperature (LST) from Landsat TM6 and TIRS data by single channel radiative transfer algorithm using satellite and ground-based inputs. International Journal of Applied Earth Observation and Geoinformation, 58, pp. 264-277. DOI:10.1016/j.jag.2017.02.017
  4. Chen, M., Jia, W., Yan, L., Du, C. & Wang, K. (2022). Quantification and mapping cooling effect and its accessibility of urban parks in an extreme heat event in a megacity. Journal of Cleaner Production, 334, pp. 130252. DOI:10.1016/j.jclepro.2021.130252
  5. Gao, M., Chen, F., Shen, H. & Li, H. (2020). A tale of two cities: Different urban heat mitigation efficacy with the same strategies. Theoretical and Applied Climatology, 142, pp. 1625-1640. DOI:10.1007/s00704-020-03390-2
  6. Gao, Z., Zaitchik, B.F., Hou, Y. & Chen, W. (2022). Toward park design optimization to mitigate the urban heat Island: Assessment of the cooling effect in five US cities. Sustainable Cities and Society, 81, pp. 103870. DOI:10.1016/j.scs.2022.103870
  7. Hong, C., Wang, Y., Gu, Z. & Yu, W. C. (2022). Cool facades to mitigate urban heat island effects. Indoor and Built Environment, 31, 10, pp. 2373-2377. DOI:10.1177/1420326x221115369
  8. Huang, M., Cui, P. & He, X. (2018). Study of the cooling effects of urban green space in Harbin in terms of reducing the heat island effect. Sustainability, 10, 4, pp. 1101. DOI:10.3390/su10041101
  9. Huang, X. & Wang, Y. (2019). Investigating the effects of 3D urban morphology on the surface urban heat island effect in urban functional zones by using high-resolution remote sensing data: A case study of Wuhan, Central China. ISPRS Journal of Photogrammetry and Remote Sensing, 152, pp. 119-131. DOI:10.1016/j.isprsjprs.2019.04.010
  10. Li, H., Zhou, Y., Jia, G., Zhao, K. & Dong, J. (2022). Quantifying the response of surface urban heat island to urbanization using the annual temperature cycle model. Geoscience Frontiers, 13, 1, 101141. DOI: 10.1016/j.gsf.2021.101141
  11. Liao, W., Guldmann, J.-M., Hu, L., Cao, Q., Gan, D. & Li, X. (2023). Linking urban park cool island effects to the landscape patterns inside and outside the park: A simultaneous equation modeling approach. Landscape and Urban Planning, 232, pp. 104681. DOI:10.1016/j.landurbplan.2022.104681
  12. Malakar, N. K., Hulley, G. C., Hook, S.J., Laraby, K., Cook, M. & Schott, J.R. (2018). An operational land surface temperature product for Landsat thermal data: Methodology and validation. IEEE Transactions on Geoscience and Remote Sensing, 56, 10, pp. 5717-5735. DOI:10.1109/tgrs.2018.2824828
  13. Mandeli, K. (2019). Public space and the challenge of urban transformation in cities of emerging economies: Jeddah case study. Cities, 95, pp. 102409. DOI:10.1016/j.cities.2019.102409
  14. Mashu & Puzhi (2020). Research on surface temperature inversion algorithm based on Landsat8 data: A case study of Urumqi. Computer and Digital Engineering, 48, 10, pp. 2316-2320. DOI:10.1088/1755-1315/450/1/012031
  15. Ozgeldinova, Z., Zhanguzhina, A. & Ulykpanova, M. (2023). Spatial and temporal analysis of landscape dynamics in the Kostanay region under an-thropogenic impacts. Archives of Environmental Protection, 49, pp.80-94. DOI:10.24425/aep.2023.148687
  16. Peng, J., Dan, Y., Qiao, R., Liu, Y., Dong, J. & Wu, J. (2021). How to quantify the cooling effect of urban parks? Linking maximum and accumulation perspectives. Remote Sensing of Environment, 252, 112135. DOI:10.1016/j.rse.2020.112135
  17. Qian, W. & Li, X. (2023). A cold island connectivity and network perspective to mitigate the urban heat island effect. Sustainable Cities and Society, 94, 104525. DOI:10.1016/j.scs.2023.104525
  18. Qiu, J., Li, X. &Qian, W. (2023). Optimizing the spatial pattern of the cold island to mitigate the urban heat island effect. Ecological Indicators, 154, pp. 110550. DOI:10.1016/j.ecolind.2023.110550
  19. Ruochen, Y., Jia, X., Dan, Z.& Yang, H. (2022). Measuring the Cooling Benefits of Urban Parks and Climate Adaptation Design Strategies. Chinese Landscape Architecture, 6, pp. 121. DOI:10.3390/ani12172251
  20. Saaroni, H., Amorim, J. H., Hiemstra, J.& Pearlmutter, D. (2018). Urban Green Infrastructure as a tool for urban heat mitigation: Survey of research methodologies and findings across different climatic regions. Urban climate, 24, pp. 94-110. DOI:10.1016/j.uclim.2018.02.001
  21. Sun, C., Wang, Y. & Zhu, Z. (2023). Urbanization and residents’ health: from the perspective of environmental pollution. Environmental Science and Pollution Research, 30, 25, pp.1-19. DOI:10.1007/s11356-023-26979-2
  22. Toparlar, Y., Blocken, B., v. Maiheu, B. & Van Heijst, G. (2018). The effect of an urban park on the microclimate in its vicinity: a case study for Antwerp, Belgium. International Journal of Climatology, 38, pp. e303-e322. DOI:10.1002/joc.5371
  23. Wang, W., Liu, K., Tang, R. & Wang, S. (2019). Remote sensing image-based analysis of the urban heat island effect in Shenzhen, China. Physics and Chemistry of the Earth, Parts a/b/c, 110, pp. 168-175. DOI:10.1016/j.pce.2019.01.002
  24. Wu, C., Li, J., Wang, C., Song, C., Chen, Y., Finka, M. & La Rosa, D. (2019). Understanding the relationship between urban blue infrastructure and land surface temperature. Science of the Total Environment, 694, 133742. DOI:10.1016/j.scitotenv.2019.133742
  25. Wu, P., Zhong, K., Wang, L., Xu, J., Liang, Y., Hu, H., Wang, Y. & Le, J. (2022). Influence of underlying surface change caused by urban renewal on land surface temperatures in Central Guangzhou. Building and Environment, 215, 108985. DOI:10.1016/j.buildenv.2022.108985
  26. Xiao, X. D., Dong, L., Yan, H., Yang, N. & Xiong, Y. (2018). The influence of the spatial characteristics of urban green space on the urban heat island effect in Suzhou Industrial Park. Sustainable Cities and Society, 40, pp. 428-439. DOI:10.1016/j.scs.2018.04.002
  27. Yao, X., Yu, K., Zeng, X., Lin, Y., Ye, B., Shen, X & Liu, J. (2022). How can urban parks be planned to mitigate urban heat island effect in “Furnace cities”? An accumulation perspective. Journal of Cleaner Production, 330, 129852. DOI:10.1016/j.jclepro.2021.129852
  28. Zhou, Y., Zhao, H., Mao, S., Zhang, G., Jin, Y., Luo, Y., Huo, W., Pan, Z., An, P. & Lun, F. (2022). Studies on urban park cooling effects and their driving factors in China: Considering 276 cities under different climate zones. Building and Environment, 222, 109441. DOI:10.1016/j.buildenv.2022.109441
  29. Zhu, X., Wang, X., Yan, D., Liu, Z. & Zhou, Y. (2019). Analysis of remotely-sensed ecological indexes' influence on urban thermal environment dynamic using an integrated ecological index: a case study of Xi’an, China. International journal of remote sensing, 40, 9, pp. 3421-3447. DOI:10.1080/01431161.2018.1547448

Date

08.03.2024

Type

Article

Identifier

DOI: 10.24425/aep.2024.149436

DOI

10.24425/aep.2024.149436

Pages

95-109

Abstracting & Indexing

Abstracting & Indexing


Archives of Environmental Protection is covered by the following services:


AGRICOLA (National Agricultural Library)

Arianta

Baidu

BazTech

BIOSIS Citation Index

CABI

CAS

DOAJ

EBSCO

Engineering Village

GeoRef

Google Scholar

Index Copernicus

Journal Citation Reports™

Journal TOCs

KESLI-NDSL

Naviga

ProQuest

SCOPUS

Reaxys

Ulrich's Periodicals Directory

WorldCat

Web of Science

×