Geographical Modelling of Transit Deserts in Cape Town
Abstract
:1. Introduction
1.1. Characteristics of Transit Deserts
1.2. Objectives
1.3. The Case of Cape Town
2. Method
3. Results
3.1. Measuring Transit Demand
3.2. Measuring Transit Supply
3.3. Calculating of Demand and Supply Gaps and Identifying Transit Deserts
4. Discussion
5. Conclusions and Recommendations
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Hulchanski, D. The Three Cities within Toronto: Income Polarization among Toronto’s Neighborhoods, 1970–2005; University of Toronto: Toronto, ON, Canada, 2010. [Google Scholar]
- Clarke, G.; Eyre, H.; Guy, C. Deriving Indicators of Access to Food Retail Provision in British Cities: Studies of Cardiff, Leeds and Bradford. Urban Stud. 2002, 39, 2041–2060. [Google Scholar] [CrossRef]
- Whelan, A.; Wrigley, N.; Warm, D.; Cannings, E. Life in a Food Desert. Urban Stud. 2002, 39, 2083–2100. [Google Scholar] [CrossRef]
- Wrigley, N.; Warm, D.; Margetts, B.; Whelan, A. Assessing the Impact of Improved Retail Access on Diet in a Food Desert: A Preliminary Report. Urban Stud. 2002, 39, 2061–2082. [Google Scholar] [CrossRef]
- Martin Prosperity Institute. Transit Deserts and Hulchanski’s Three Cities; Rotman School of Management, University of Toronto: Toronto, ON, Canada, 2011. [Google Scholar]
- Jiao, J.; Dillivan, M. Transit Deserts: The Gap between Demand and Supply. J. Public Transp. 2013, 16, 23–39. [Google Scholar] [CrossRef] [Green Version]
- Jiao, J. Identifying Transit Deserts in Major Texas Cities where the Supplies Missed the Demands. J. Transp. Land Use 2017, 10, 529–540. [Google Scholar] [CrossRef]
- Allen, D.J. Operating within Transit Deserts: The Application of Just, Open and Equitable Circulator Systems within Outer Urban Residential Neighbourhoods. Ph.D. Thesis, Department of Civil Engineering, Morgan State University, Baltimore, MA, USA, 2014. [Google Scholar]
- Bernstein, A.; Solomon, N.; Yuen, L.; Casey, M. Back of the Bus: Mass Transit, Race, and Inequality; Transportation Nation, Supported by the Rockefeller Foundation: New York, NY, USA, 2013; Available online: https://project.wnyc.org/backofthebus/ (accessed on 5 September 2018).
- Western Cape Government (WCG). Socio-Economic Profile: City of Cape Town. Cape Town; South African Government Publication: Pretoria, South Africa, 2017. [Google Scholar]
- Vanderschuren, M.; Galaria, S. Can the Post-Apartheid South African City Move Towards Accessibility, Equity and Sustainability? Int. Soc. Sci. J. 2003, 55, 265–277. [Google Scholar] [CrossRef]
- Transport and Urban Development Authority Cape Town (TDACT). Comprehensive Integrated Transport Plan 2018–2023; City of Cape Town: Cape Town, South Africa, 2018. [Google Scholar]
- South African Department of Transport (SADOT). White Paper on National Transport Policy. Pretoria; South African Government Publication: Pretoria, South Africa, 1996. [Google Scholar]
- Behrens, R.; McCormick, D.; Mfinanga, M. (Eds.) Paratransit in African Cities: Operations, Regulation and Reform; Earthscan Routledge: Oxford, UK, 2016. [Google Scholar]
- McCormick, D.; Schalekamp, H.; Mfinanga, D. The Nature of Paratransit Operations. In Paratransit in African Cities: Operations, Regulation and Reform; Behrens, R., McCormick, D., Mfinanga, D., Eds.; Earthscan Routledge: Oxford, UK, 2016. [Google Scholar]
- Coetzee, J.; Krogscheepers, C.; Spotten, J. Mapping Minibus-Taxi Operations at a Metropolitan Scale—Methodologies for Unprecedented Data Collection using a Smartphone Application and Data Management Techniques. In Proceedings of the 37th Annual Southern African Transport Conference, Pretoria, South Africa, 9–12 July 2018. [Google Scholar]
- Williams, S.; White, A.; Waiganjo, P.; Orwa, D.; Klopp, J. The Digital Matatu Project: Using Cell Phones to Create an Open Source Data for Nairobi’s Semi-Formal Bus System. J. Transp. Geogr. 2015, 49, 39–51. [Google Scholar] [CrossRef] [Green Version]
- Behrens, R.; Hawver, H.; Birungi, C.; Zuidgeest, M. Case Study Investigation of Unscheduled Feeder and Scheduled Trunk Service Relationships in Cape Town. In Proceedings of the 36th Annual Southern African Transport Conference, Pretoria, South Africa, 10–13 July 2017. [Google Scholar]
- Goldberg, E. An Informal Transit System Hiding in Plain Sight: Brooklyn’s Dollar Vans and Transportation Planning and Policy in New York City. Ph.D. Thesis, Urban Planning, Columbia University, New York, NY, USA, 2017. [Google Scholar]
- Steiss, T. Calculating/Analyzing Transit Dependent Populations Using 2000 Census Data and GIS; Census Transportation Planning Package 2000 Status Report; U.S. Department of Transportation: Washington, DC, USA, 2006. [Google Scholar]
- Estupiñán, N.; Rodríguez, D.A. The Relationship between Urban Form and Station Boardings for Bogota’s BRT. Transp. Res. Part A: Policy Pract. 2008, 42, 296–306. [Google Scholar] [CrossRef]
- Pucher, J.; Buehler, R. Integrating Bicycling and Public Transport in North America. J. Public Transp. 2009, 12, 79–104. [Google Scholar] [CrossRef] [Green Version]
- Hitge, G.; Vanderschuren, M. Comparison of Travel Time between Private Car and Public Transport in Cape Town. J. South Afr. Inst. Civil Eng. 2015, 57, 35–43. [Google Scholar] [CrossRef]
- Heyes, A. Z-Score Definition. 2019. Available online: https://www.investopedia.com/terms/z/zscore.asp (accessed on 14 October 2020).
- Vanderschuren, M. Intelligent Transport Systems for South Africa: Impact Assessment through Microscopic Simulation in the South African Context; TRAIL Research School, Transport, Infrastructure and Logistics: Enschede, The Netherlands, 2006. [Google Scholar]
- STATSSA. National Household Travel Survey. South African Wide Database; Statistics South Africa: Pretoria, South Africa, 2013. [Google Scholar]
- Gibb, M. Cape Town, a Secondary Global City in a Developing Country. Environ. Plan. C Politics Space 2007, 25, 537–552. [Google Scholar] [CrossRef]
- Crane, R. The Influence of Urban Form on Travel: An Interpretive Review. J. Plan. Lit. 2000, 15, 3–23. [Google Scholar] [CrossRef]
- Transportation Research Board. Transit and Urban Form. Volume 1, Part 1: Transit, Urban Form, and the Built Environment: A Summary of Knowledge. 1996. Available online: http://onlinepubs.trb.org/onlinepubs/tcrp/tcrp_rpt_16-1.pdf (accessed on 5 September 2018).
- Frith, A. Population Data from Census 2011-Ethnicity; Statistics South Africa: Pretoria, South Africa, 2011; Available online: https://dotmap.adrianfrith.com/?layers=B0FT (accessed on 22 April 2018).
- Gutiérrez, J.; García-Palomares, J.C. Distance-Measure Impacts on the Calculation of Transport Service Areas using GIS. Environ. Plan. B Plan. Des. 2008, 28, 480–503. [Google Scholar] [CrossRef]
- Kimpel, T.K.; Dueker, K.; El-Geneidy, A. Using GIS to Measure the Effect of Overlapping Service Areas on Passenger Boardings at Bus Stops. Urban Reg. Inf. Syst. Assoc. J. 2007, 19, 5–11. [Google Scholar]
- Zhao, F.; Chow, L.; Li, M.; Ubaka, I.; Gan, A. Forecasting Transit Walk Accessibility: Regression Model Alternative to Buffer. Transp. Res. Rec. 2003, 1835, 34–41. [Google Scholar] [CrossRef] [Green Version]
- Ewing, R.; Cervero, R. Travel and the Built Environment. J. Am. Plan. Assoc. 2010, 76, 265–294. [Google Scholar] [CrossRef]
- McCormack, G.; Shiell, A.; Giles-Corti, B.; Begg, S.; Veerman, J.; Geelhoed, E.; Amarasinghe, A.; Emer, J.C. The Association between Sidewalk Length and Walking for Different Purposes in Established Neighbourhoods. Int. J. Behav. Nutr. Phys. Act. 2012, 9, 92. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Litman, T. Evaluating Active Transport Benefits and Costs; Online TDM Encyclopedia, Victoria Transport Policy Institute: Victoria, BC, Canada, 2018; p. 2. [Google Scholar]
- Archer, J.; Fotheringham, N.; Symmons, M.; Corben, B. The Impact of Lowered Speed Limits in Urban Areas; Transport Accident Commission (TAC); Monash University Accident Research Centre: Melbourne, Australia, 2007; Available online: http://acrs.org.au/files/arsrpe/RS07003.pdf (accessed on 21 August 2018).
- Botha, M. Development of the Northern Growth Corridor in Cape Town: Towards a More Sustainable City. Master’s Thesis, School of Architecture, Planning and Geomatics, University of Cape Town, Cape Town, South Africa, 2015. Available online: http://hdl.handle.net/11427/18177 (accessed on 13 October 2020).
- Frith, A. Population Data from Census 2011-Household Income; Statistics South Africa: Pretoria, South Africa, 2011; Available online: https://dotmap.adrianfrith.com/ (accessed on 22 April 2018).
Category | Jiao (2017) [7] | Cape Town Case City | |
---|---|---|---|
Formal Transit | Informal Transit | ||
Demand | Household drivers = (population age 16 and over) − (persons living in group quarters) | Household drivers = (population age 18 and over) | |
Transit-dependent household population = (household drivers) − (vehicles available) * national level carpooling ratio | Transit-dependent household population = (household drivers) − (vehicles available) * Cape Town carpooling ratio [25] | ||
Ineligible household drivers = population age 18 and over − household drivers | |||
Transit-dependent population = (transit-dependent household population) + (population ages 12–15) + (non-institutionalised population living in group quarters) | Transit-dependent population = (transit-dependent household population) + (population ages 12–17) + Ineligible household drivers | ||
Supply | Number of transit stops (400 m catchment) | Number of transit stops 1360 m catchment, [23]) | Number of transit stops (500 m catchment, experience based) |
Frequency of transit service (based on weekday service) | Number of transit vehicle trips (BRT and rail) | Number of transit vehicle trips (MBTs) | |
Number of transit routes | Number of transit routes (BRT, conventional bus and rail) | Number of transit routes (MBT) | |
Total length of sidewalks (mi) | Number of footbridges | ||
Total length of bike routes (mi) | Total length of bike routes (km) | ||
Total length of low speed limit roads (mi) | Total length of low speed limit roads (km) | ||
Intersection density | Intersection density | ||
Zone | Block Group | Transport Analysis Zone (TAZ) | |
Z-score | Supply–demand | Supply–demand | |
Source | Census Transit agencies | South African National Household Travel Survey. Transit agencies Transport and Urban Development Authority. Open Data Portal GoMetro MBT Survey (via City of Cape Town) |
Measurement | Cape Town | Austin | Fort Worth | Houston |
---|---|---|---|---|
Population (2013) | 3,740,026 | 885,400 | 792,727 | 2,195,914 |
Dependent Population | 670,037 | 130,147 | 178,059 | 839,284 |
Transit Dependent Population | (17.9%) | (14.7%) | (22.5%) | (38.2%) |
Area (km2) | 2459 | 790 | 904 | 1624 |
Built Environment Area (km2) | 1932 | 772 | 880 | 1553 |
Density (dep.pop/km2) | 346.81 | 168.68 | 202.31 | 540.45 |
Zone | Name | Rail Trips | BRT Trips | Rail Routes | BRT Routes | Bus Routes | Formal Z-Score | MBT Trips | MBT Routes | Total Z-Score |
---|---|---|---|---|---|---|---|---|---|---|
1 | Sea Point | 0 | 17,674 | 0 | 29 | 462 | 4.38 | 1135 | 197 | 3.36 |
2 | Central Cape Town | 2379 | 11,200 | 8 | 48 | 738 | 2.30 | 5622 | 503 | 2.25 |
3 | Belgravia | 252 | 0 | 2 | 0 | 838 | 1.66 | 6049 | 603 | 2.43 |
4 | Langa/Bishop Lavis | 188 | 33 | 2 | 10 | 869 | 1.31 | 3598 | 581 | 1.39 |
5 | Mitchells Plain/Gugulethu | 343 | 1321 | 2 | 7 | 1056 | 1.16 | 17,262 | 827 | 2.88 |
6 | Khayelitsha | 130 | 1719 | 2 | 4 | 477 | 0.46 | 2778 | 288 | 0.33 |
7 | Blue Downs | 238 | 0 | 2 | 0 | 613 | −0.16 | 7007 | 607 | 0.37 |
8 | Parow/Bellville | 1268 | 0 | 4 | 0 | 652 | −0.26 | 9743 | 587 | 0.25 |
9 | Wynberg | 1268 | 0 | 2 | 0 | 557 | −0.37 | 6815 | 509 | −0.12 |
10 | Grassy Park | 126 | 0 | 2 | 0 | 576 | −0.61 | 5384 | 349 | −0.73 |
11 | Northern Corridor * | 0 | 28,326 | 0 | 53 | 393 | −0.92 | 6993 | 308 | −1.38 |
12 | Kuilsrivier | 54 | 0 | 1 | 0 | 176 | −0.95 | 1928 | 198 | −1.00 |
13 | Simonstown | 649 | 0 | 1 | 0 | 145 | −1.08 | 1836 | 116 | −1.35 |
14 | Kraaifontein | 174 | 0 | 1 | 0 | 46 | −1.31 | 2071 | 134 | −1.28 |
15 | Strand | 139 | 0 | 1 | 0 | 101 | −1.37 | 2244 | 145 | −1.70 |
16 | Durbanville | 0 | 0 | 0 | 0 | 278 | −1.4 | 1199 | 149 | −1.90 |
17 | Somerset West | 0 | 0 | 0 | 0 | 67 | −1.42 | 150 | 53 | −1.92 |
18 | Oostenberg | 0 | 0 | 0 | 0 | 110 | −1.44 | 1685 | 70 | −1.90 |
Analysis Zone | Formal Supply | Demand | Formal Gap | Description | Total Supply | Total Gap | Description | |
---|---|---|---|---|---|---|---|---|
1 | Durbanville | −6.49 | 0.79 | −5.70 | Desert | −4.57 | −3.78 | Gap |
2 | Oostenberg | −5.30 | 0.78 | −4.52 | Desert | −4.08 | −3.30 | Gap |
3 | Somerset West | −5.10 | 0.81 | −4.29 | Desert | −4.21 | −3.40 | Gap |
4 | Northern Corridor | −4.69 | 0.70 | −3.99 | Gap | −3.61 | −2.91 | Gap |
5 | Kuilsrivier | −3.42 | 0.57 | −2.85 | Gap | −1.96 | −1.39 | Gap |
6 | Khayelitsha | 0.31 | −2.70 | −2.39 | Gap | 0.58 | −2.12 | Gap |
7 | Strand | −2.72 | 0.45 | −2.27 | Gap | −2.65 | −2.20 | Gap |
8 | Grassy Park | −1.92 | 0.35 | −1.57 | Gap | −0.92 | −0.57 | Gap |
9 | Kraaifontein | −0.97 | −0.30 | −1.27 | Gap | −1.33 | −1.63 | Gap |
10 | Simonstown | −0.32 | 0.51 | −0.19 | Gap | −0.81 | −1.32 | Gap |
Analysis Zone | Formal Supply | Demand | Formal Excess | Description | Total Supply | Total Excess | Description | |
---|---|---|---|---|---|---|---|---|
1 | Sea Point | 10.23 | −0.33 | 10.59 | Excess | 5.55 | 5.88 | Excess |
2 | Central Cape Town | 7.80 | −0.35 | 8.15 | Excess | 4.16 | 4.51 | Excess |
3 | Belgravia | 5.01 | 0.17 | 4.84 | Excess | 4.28 | 4.11 | Excess |
4 | Mitchells Plain/Gugulethu | 3.93 | 2.22 | 1.71 | Adequate | 4.71 | 2.49 | Excess |
5 | Wynberg | 0.43 | −0.61 | 1.04 | Adequate | 0.19 | 0.80 | Adequate |
6 | Parow/Bellville | 0.06 | −0.31 | 0.37 | Adequate | 0.94 | 1.25 | Adequate |
7 | Blue Downs | 0.98 | 0.61 | 0.37 | Adequate | 1.37 | 0.76 | Adequate |
8 | Langa/Bishop Lavis | 0.59 | 0.56 | 0.03 | Adequate | 2.35 | 1.79 | Adequate |
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Vanderschuren, M.; Cameron, R.; Newlands, A.; Schalekamp, H. Geographical Modelling of Transit Deserts in Cape Town. Sustainability 2021, 13, 997. https://doi.org/10.3390/su13020997
Vanderschuren M, Cameron R, Newlands A, Schalekamp H. Geographical Modelling of Transit Deserts in Cape Town. Sustainability. 2021; 13(2):997. https://doi.org/10.3390/su13020997
Chicago/Turabian StyleVanderschuren, Marianne, Robert Cameron, Alexandra Newlands, and Herrie Schalekamp. 2021. "Geographical Modelling of Transit Deserts in Cape Town" Sustainability 13, no. 2: 997. https://doi.org/10.3390/su13020997
APA StyleVanderschuren, M., Cameron, R., Newlands, A., & Schalekamp, H. (2021). Geographical Modelling of Transit Deserts in Cape Town. Sustainability, 13(2), 997. https://doi.org/10.3390/su13020997