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Future access to essential services in a growing smart city: The case of Surrey, British Columbia

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  • Mayaud, Jerome
  • Tran, Martino
  • Pereira, Rafael Henrique Moreas
  • Nuttall, Rohan

Abstract

The concept of accessibility – the ease with which people can reach places or opportunities –lies at the heart of what makes cities livable, workable and sustainable. As urban populations shift over time, predicting the changes to accessibility demand for certain services becomes crucial for responsible and ‘smart’ urban planning and infrastructure investment. In this study, we investigate how projected population change could affect accessibility to essential services in the City of Surrey, one of the fastest growing cities in Canada. Our objectives are two-fold: first, to quantify the additional pressure that Surrey’s growing population will have on existing facilities; second, to investigate how changes in the spatial distribution of different age and income groups will impact accessibility equity across the city. We evaluated accessibility levels to healthcare facilities and schools across Surrey’s multimodal transport network using origin-destination matrices, and combined this information with high-resolution longitudinal census data. Paying close attention to two vulnerable population groups – children and youth (0–19 years of age) and seniors (65+ years of age) – we analyzed shifts in accessibility demand from 2016 to 2022. The results show that population growth both within and outside the catchments of existing facilities will have varying implications for future accessibility demand in different areas of the city. By 2022, the city’s hospitals and walk-in clinics will be accessible to ~9,000 and ~124,000 more people (respectively) within a predefined threshold of 30 minutes by public transport. Schools will also face increased demand, as ~8,000 additional children/youth in 2022 will move to areas with access to at least half of the city’s schools. Conversely, over 27,000 more people – almost half of them seniors – will not be able to access a hospital in under 30 minutes by 2022. Since low-income and senior residents moving into poorly connected areas tend to be more reliant on public transport, accessibility equity may decline in some rural communities. Our study highlights how open-source data and code can be leveraged to conduct in-depth analysis of accessibility demand across a city, which is key for ensuring inclusive and ‘smart’ urban investment strategies.

Suggested Citation

  • Mayaud, Jerome & Tran, Martino & Pereira, Rafael Henrique Moreas & Nuttall, Rohan, 2018. "Future access to essential services in a growing smart city: The case of Surrey, British Columbia," SocArXiv pej8u, Center for Open Science.
  • Handle: RePEc:osf:socarx:pej8u
    DOI: 10.31219/osf.io/pej8u
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    1. Nigel Thrift, 2014. "The Promise of Urban Informatics: Some Speculations," Environment and Planning A, , vol. 46(6), pages 1263-1266, June.
    2. Delmelle, Elizabeth Cahill & Casas, Irene, 2012. "Evaluating the spatial equity of bus rapid transit-based accessibility patterns in a developing country: The case of Cali, Colombia," Transport Policy, Elsevier, vol. 20(C), pages 36-46.
    3. Mokhtarian, Patricia L. & Salomon, Ilan, 2001. "How derived is the demand for travel? Some conceptual and measurement considerations," Transportation Research Part A: Policy and Practice, Elsevier, vol. 35(8), pages 695-719, September.
    4. Ahmed El-Geneidy & David Levinson, 2011. "Place Rank: Valuing Spatial Interactions," Networks and Spatial Economics, Springer, vol. 11(4), pages 643-659, December.
    5. Boisjoly, Geneviève & El-Geneidy, Ahmed M., 2017. "How to get there? A critical assessment of accessibility objectives and indicators in metropolitan transportation plans," Transport Policy, Elsevier, vol. 55(C), pages 38-50.
    6. Q Shen, 1998. "Location Characteristics of Inner-City Neighborhoods and Employment Accessibility of Low-Wage Workers," Environment and Planning B, , vol. 25(3), pages 345-365, June.
    7. El-Geneidy, Ahmed & Levinson, David & Diab, Ehab & Boisjoly, Genevieve & Verbich, David & Loong, Charis, 2016. "The cost of equity: Assessing transit accessibility and social disparity using total travel cost," Transportation Research Part A: Policy and Practice, Elsevier, vol. 91(C), pages 302-316.
    8. Vandenbulcke, Grégory & Steenberghen, Thérèse & Thomas, Isabelle, 2009. "Mapping accessibility in Belgium: a tool for land-use and transport planning?," Journal of Transport Geography, Elsevier, vol. 17(1), pages 39-53.
    9. Wessel, Nate & Allen, Jeff & Farber, Steven, 2017. "Constructing a routable retrospective transit timetable from a real-time vehicle location feed and GTFS," Journal of Transport Geography, Elsevier, vol. 62(C), pages 92-97.
    10. Milakis, Dimitris & Cervero, Robert & van Wee, Bert & Maat, Kees, 2015. "Do people consider an acceptable travel time? Evidence from Berkeley, CA," Journal of Transport Geography, Elsevier, vol. 44(C), pages 76-86.
    11. Wachs, Martin & Kumagai, T. Gordon, 1973. "Physical accessibility as a social indicator," Socio-Economic Planning Sciences, Elsevier, vol. 7(5), pages 437-456, October.
    12. Neutens, Tijs, 2015. "Accessibility, equity and health care: review and research directions for transport geographers," Journal of Transport Geography, Elsevier, vol. 43(C), pages 14-27.
    13. Goddard, Maria & Smith, Peter, 2001. "Equity of access to health care services: : Theory and evidence from the UK," Social Science & Medicine, Elsevier, vol. 53(9), pages 1149-1162, November.
    14. Wolfgang Lutz & Warren Sanderson & Sergei Scherbov, 2008. "The coming acceleration of global population ageing," Nature, Nature, vol. 451(7179), pages 716-719, February.
    15. Meiyappan, Prasanth & Dalton, Michael & O’Neill, Brian C. & Jain, Atul K., 2014. "Spatial modeling of agricultural land use change at global scale," Ecological Modelling, Elsevier, vol. 291(C), pages 152-174.
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    1. Jinghong Shen & Jianquan Cheng & Wencong Huang & Fantao Zeng, 2020. "An Exploration of Spatial and Social Inequalities of Urban Sports Facilities in Nanning City, China," Sustainability, MDPI, vol. 12(11), pages 1-19, May.

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