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Life-cycle cost comparison of alternative surfacing for steep slopes on low-volume roads in Ghana

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dc.contributor.author Anochie-Boateng, Joseph
dc.contributor.author Sampson, L
dc.contributor.author Agyekum, P
dc.contributor.author Ampadu, KO
dc.date.accessioned 2017-10-25T12:45:01Z
dc.date.available 2017-10-25T12:45:01Z
dc.date.issued 2017-05
dc.identifier.citation Anochie-Boateng, J.K., Sampson, L., Agyekum, P. et al. Life-cycle cost comparison of alternative surfacing for steep slopes on low-volume roads in Ghana. 8th Africa Transportation Technology Transfer Conference, Livingstone, Zambia, 8th -10th May 2017 en_US
dc.identifier.uri http://www.research4cap.org/Library/AnochieBoatengetal-2017-LifeCycleCostComparisonAlternativeSurfacingsSteepSlopesLVRGhana-T22017-170215.pdf
dc.identifier.uri http://hdl.handle.net/10204/9694
dc.description Paper presented at the 8th Africa Transportation Technology Transfer Conference, Livingstone, Zambia, 8th -10th May 2017 en_US
dc.description.abstract teep hill sections of low-volume (i.e. feeder) roads in Ghana are at high risk of slope failure, erosion, and drainage-related problems that ultimately affect the rural communities in respect of traffic delays, safety, damage to natural resources, and economic activities. These problems have been mainly attributed to prolonged rainy seasons, coupled with weak natural (lateritic) soils that are commonly used as wearing course on the feeder roads. A study was recently conducted to identify alternative surfacing options to gravel wearing courses used on steep gradients (in excess of 12%) of feeder roads in Ghana. A major outcome was three surfacing options (i.e. concrete, bituminous and stone setts/cobbles) that would be more effective to address drainage and erosion problems on the steep section than gravel wearing courses currently used by the Department of Feeder Roads (DFR). The objective of this paper is to present a life-cycle cost comparison of six pavement options proposed for steep hilly sections of feeder roads in Ghana. The economic evaluation methodology adopted is the present worth of cost. Although not very decisively, the life-cycle cost analysis of the six pavements indicated that with a real discount rate of 12%, 70 mm ultra-thin reinforced concrete surfacing has the lowest cost (GBP 69.7/m²), whereas 50 mm hot-mix asphalt emerged as the option with the highest cost (GBP 91.7/m²). Based on the analysis results, it is concluded that all six pavement options remain cost-effective structures compared with a gravel wearing course. However, the current policies of the DFR may influence the decision on particular surfacings to be adopted for feeder roads in Ghana. en_US
dc.language.iso en en_US
dc.relation.ispartofseries Worklist;19604
dc.subject Low-volume roads en_US
dc.subject Steep gradients en_US
dc.subject Concrete surfacing en_US
dc.subject Bituminous surfacing en_US
dc.subject Stone setts/cobbles surfacing en_US
dc.title Life-cycle cost comparison of alternative surfacing for steep slopes on low-volume roads in Ghana en_US
dc.type Conference Presentation en_US
dc.identifier.apacitation Anochie-Boateng, J., Sampson, L., Agyekum, P., & Ampadu, K. (2017). Life-cycle cost comparison of alternative surfacing for steep slopes on low-volume roads in Ghana. http://hdl.handle.net/10204/9694 en_ZA
dc.identifier.chicagocitation Anochie-Boateng, Joseph, L Sampson, P Agyekum, and KO Ampadu. "Life-cycle cost comparison of alternative surfacing for steep slopes on low-volume roads in Ghana." (2017): http://hdl.handle.net/10204/9694 en_ZA
dc.identifier.vancouvercitation Anochie-Boateng J, Sampson L, Agyekum P, Ampadu K, Life-cycle cost comparison of alternative surfacing for steep slopes on low-volume roads in Ghana; 2017. http://hdl.handle.net/10204/9694 . en_ZA
dc.identifier.ris TY - Conference Presentation AU - Anochie-Boateng, Joseph AU - Sampson, L AU - Agyekum, P AU - Ampadu, KO AB - teep hill sections of low-volume (i.e. feeder) roads in Ghana are at high risk of slope failure, erosion, and drainage-related problems that ultimately affect the rural communities in respect of traffic delays, safety, damage to natural resources, and economic activities. These problems have been mainly attributed to prolonged rainy seasons, coupled with weak natural (lateritic) soils that are commonly used as wearing course on the feeder roads. A study was recently conducted to identify alternative surfacing options to gravel wearing courses used on steep gradients (in excess of 12%) of feeder roads in Ghana. A major outcome was three surfacing options (i.e. concrete, bituminous and stone setts/cobbles) that would be more effective to address drainage and erosion problems on the steep section than gravel wearing courses currently used by the Department of Feeder Roads (DFR). The objective of this paper is to present a life-cycle cost comparison of six pavement options proposed for steep hilly sections of feeder roads in Ghana. The economic evaluation methodology adopted is the present worth of cost. Although not very decisively, the life-cycle cost analysis of the six pavements indicated that with a real discount rate of 12%, 70 mm ultra-thin reinforced concrete surfacing has the lowest cost (GBP 69.7/m²), whereas 50 mm hot-mix asphalt emerged as the option with the highest cost (GBP 91.7/m²). Based on the analysis results, it is concluded that all six pavement options remain cost-effective structures compared with a gravel wearing course. However, the current policies of the DFR may influence the decision on particular surfacings to be adopted for feeder roads in Ghana. DA - 2017-05 DB - ResearchSpace DP - CSIR KW - Low-volume roads KW - Steep gradients KW - Concrete surfacing KW - Bituminous surfacing KW - Stone setts/cobbles surfacing LK - https://researchspace.csir.co.za PY - 2017 T1 - Life-cycle cost comparison of alternative surfacing for steep slopes on low-volume roads in Ghana TI - Life-cycle cost comparison of alternative surfacing for steep slopes on low-volume roads in Ghana UR - http://hdl.handle.net/10204/9694 ER - en_ZA


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