4.7 Article

Development of SLEUTH-Density for the simulation of built-up land density

期刊

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compenvurbsys.2020.101586

关键词

Built-up density; Vertical growth; Simulation; Cellular automata; SLEUTH

资金

  1. Ministry of Human Resources and Development (MHRD), India
  2. FIST program of DST. Govt. of India

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Urban growth is a complex phenomenon involving both horizontal and vertical built-up activities. Simulating built-up land density can help planning authorities make better decisions, and a new version of the SLEUTH model has been used to simulate built-up land density in Ajmer city, India, with results validating the accuracy of the simulation.
Urban growth is a complex spatio-temporal phenomenon that includes built-up activities taking place both horizontally and vertically. The built-up land density in a city is a function of land desirability and suitability of a location in terms of the quality of the available public services, access to infrastructure, neighborhood type, vibrancy of socio-economic and cultural characteristics. The simulation of built-up land density may help planning and development authorities in making better land developmental decisions, making appropriate provisions for services, long term land use planning, and allocation of natural resources. In the recent past, various efforts have been made to assess built-up density in terms of the densification of built-up activities at the city scale in terms of floor space indices, building density, residential density (number of housing units per hectare) and urban volume. However, only limited research was reported on the simulation and prediction of spatially distributed built-up land density. In the present study, an algorithm is developed to simulate the spatial distribution of built-up land density as a function of a set of selected urbanization explanatory variables. Its application has been demonstrated using a newly developed version of the SLEUTH model (SLEUTH-Density) to simulating the built-up land density for Ajmer city in India. Development of SLEUTH-Density included designing a density algorithm, writing the programming code, integrating the code with the existing SLEUTH model, and testing the algorithm. The model results were validated indirectly using few built-up land density indices and directly through field verification, which were found to be in good agreement with the simulated built-up land density from SLEUTH-Density

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