4.5 Article

Impacts of inland water area changes on the local climate of Wuhan, China

Journal

INDOOR AND BUILT ENVIRONMENT
Volume 25, Issue 2, Pages 296-313

Publisher

SAGE PUBLICATIONS LTD
DOI: 10.1177/1420326X14546774

Keywords

Land-use alteration; Meso-scale metrological model; Thermal environment; Urban climate change; Urban heat island; Water areas

Funding

  1. National Nature Science Foundation of China [50978110]
  2. Specialized Research Fund for the Doctoral Program of Higher Education [20100142110040]
  3. China Scholarship Council [2010616031]
  4. National Science and Technology Support Program [2011BAJ03B03]

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A distinct feature of Wuhan is that almost a quarter of the total area of this city is covered with water, leading to its unique hot and humid climate characteristics in summer. However, according to records, water area in built-up zone of Wuhan has been reduced by 130.5 km(2) from 1965 to 2008, while the annual average air temperature has been increased by more than 3?. To investigate the quantitative connection between the water area reduction and air temperature increase, three scenarios were simulated in a summer; to evaluate the impact of water reduction on the local thermal environment in different water areas; and to study the impact of water reduction on the urban heat island (UHI) phenomenon. Meso-scale meteorological models of Weather Research and Forecasting model were applied in this study for quantitative assessment and prediction. With the predictions, this study reveals that the decreased water area could affect air temperature, wind velocity and wind flow direction, energy balance and the UHI intensity. The simulations show that areas with significant wind velocity, wind direction and air temperature differences are distributed among the downwind zones. Moreover, the areas with high UHI intensity are wider and farther from the boundary of urban areas because of the reduction of water areas.

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