Geographic Information Systems (gis) Based Accessibility Modelling Approach in Micro Scale Considering Physically Disabled Users: Case Study of Mimar Muzaffer Campus, Selcuk University
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Date
2018
Authors
Ertuğay, Kıvanç
Journal Title
Journal ISSN
Volume Title
Publisher
Open Access Color
GOLD
Green Open Access
Yes
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Publicly Funded
No
Abstract
The concept of physical accessibility refers to the availability, capability, comfort, convenience of transportation processes considering different urban obstacles / barriers and costs. In this context, there are many approaches for the measurement and evaluation of physical accessibility in the literature which are used extensively as a decision support especially in transportation, geography and city and regional planning related disciplines. Although there are large number of modelling approaches on physical accessibility modelling in macro scales (such as national, regional, city and town scales), the research on physical accessibility modelling, in micro scales (such as street, human, neighbourhood scales), which couldconsider all the details of the perceived space seem to be extremely limited. This study, which emerged from this lack of accessibility modelling literature, proposes a Geographical Information System (GIS) supported methodology to demonstrate how physical obstacles / barriers such as “buildings, landscape areas, walls, steps, stairs, pits, unfitted street furniture, other (garbage, rubbles, trees etc. that prevent access) etc.” and transitions such as “ramps with appropriate slope, elevators and/or “removing walls / steps” could be defined in GIS environment and how access and circulation in (outdoor) urban space could be modelled considering these physical obstacles / barriers and transitions especially taking physically disabled users (users using wheelchair, bicycle, baby's car, market car etc.) into consideration in the micro scale. The proposed accessibility modelling methodology is conducted at Selçuk University, Faculty of Architecture, Mimar Muzaffer Campus Area. A polyline-based spatial GIS database has been developed to demonstrate how physical barriers and transitions could be modelled in micro scale in GIS environment in order to evaluate physical accessibility. The results of the study could provide an accessibility based decision support environment by visualizing and presenting how physical obstacles in urban space prevent physically disabled users from access and circulation and how the elimination or removal of these physical obstacles and creation of transitions will create a difference in access and circulation for the users in a comparable manner especially in micro scale. This study is thought to make a significant contribution to increase accessibility levels of physically disabled users (users using wheelchair, bicycle, baby's car, market car etc.) in the outdoor urban areas in terms of demonstrating their accessibility and circulation capabilities. The primitive experimental model related with this research was carried out with the participants of the accessibility measurement and modelling session at the 3rd National Disability Workshop which is held in Selcuk University, Mimar Muzaffer Campus dated 2-3 May 2018.
Description
Keywords
Ulaşılabilirlik modellemesi, Micro scale, NA1-9428, Engelli insanlar, physically disabled users, accessibility modeling, Accessibility modeling, Physical obstacles, neighborhood scales), HT165.5-169.9, Physically disabled people, urban planning; transportation planning; accessibility modeling, Fiziksel engeller, Architecture, Mikro ölçek, Accessibility modeling, physically disabled users, physical obstacles / barriers / transitions, micro scale (street, human, neighborhood scales), micro scale (street, human, physical obstacles / barriers / transitions, City planning
Turkish CoHE Thesis Center URL
Fields of Science
0208 environmental biotechnology, 0207 environmental engineering, 02 engineering and technology
Citation
WoS Q
Scopus Q
N/A

OpenCitations Citation Count
3
Source
ICONARP International Journal of Architecture and Planning
Volume
6
Issue
0
Start Page
81
End Page
104
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CrossRef : 1
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Mendeley Readers : 20
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