Safety Integrated Network Level Pavement Maintenance Decision Support Framework as a Practical Solution in Developing Countries: The Case of Addis Ababa, Ethiopia
Abstract
:1. Introduction
2. Markov Process in Pavement Management
2.1. Markovian Pavement Deterioration Process
2.1.1. The Deterioration Prediction Model
2.1.2. Output of the Deterioration Prediction Model
2.2. Markovian Pavement Repair Process
The Repair Model
2.3. Life Cycle Cost and Risk Evaluation
3. Road Safety Analytics
3.1. Safety Analysis Input
3.2. The Safety Model
3.2.1. Star Rating
3.2.2. Fatality and Serious Injury (FSI) Estimation
3.2.3. Economic Analysis
3.2.4. Safety Analysis Procedure
4. Empirical Analysis: Performance Goal Setting and Repair Strategy (Counter-Measures) Evaluation
4.1. Pavement Management
4.2. Road Safety Analysis
5. Discussion
6. Conclusions
Author Contributions
Funding
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Classification | Core Level | Recommended Level | Advanced Level | |||
---|---|---|---|---|---|---|
Agency Cost | User Cost | Socio-Environ- mental Cost | ||||
Vehicle Operating Cost (VOC) | Travel Time Cost | Accident | Work Zone | Emission Cost | ||
Essential | · Maintenance | · Fuel | · Travel | · Property | · CO | |
· Inspection | · Tire | time | damage | |||
Optional | · Initial costs | · Depreciation, repair | · Injury | · Travel time and | · , HC | |
· PMS operation | · Engine oil | · Fatality | VOC due to workzone | PM, Pb |
Star Rating | Vehicle Occupants and Motorcyclists | Bicyclists | Pedestrians | ||
---|---|---|---|---|---|
Total | Along | Crossing | |||
5 | 0 to 2.5 | 0 to 5 | 0 to 5 | 0 to 0.2 | 0 to 4.8 |
4 | 2.5 to 5 | 5 to 10 | 5 to 15 | 0.2 to 1 | 4.8 to 14 |
3 | 5 to 12.5 | 10 to 30 | 15 to 40 | 1 to 7.5 | 14 to 32.5 |
2 | 12.5 to 22.5 | 30 to 60 | 40 to 90 | 7.5 to 15 | 32.5 to 75 |
1 | 22.5+ | 60+ | 90+ | 15+ | 75+ |
Condition State | IRI (m/km) | Remark |
---|---|---|
1 | IRI < 2 | Very Good |
2 | 2 ≤ IRI < 4 | Good |
3 | 4 ≤ IRI < 6 | Fair |
4 | 6 ≤ IRI < 8 | Poor |
5 | 8 ≤ IRI | Very Poor |
Rating | 1 | 2 | 3 | 4 | 5 |
---|---|---|---|---|---|
1 | 0.309 | 0.386 | 0.181 | 0.077 | 0.048 |
2 | - | 0.350 | 0.300 | 0.183 | 0.168 |
3 | - | - | 0.229 | 0.282 | 0.488 |
4 | - | - | - | 0.158 | 0.842 |
5 | - | - | - | - | 1 |
Repair Types | Repair Action and Condition Transition |
---|---|
Preventive maintenance | = 1 |
Partial overlay and Patching | = 2 |
Mill and fill | = 1 |
Full overlay | = 3 |
Rehabilitation | = 1 |
Reconstruction | = 1 |
Rating | Road Network Safety Rating (%) | |||
---|---|---|---|---|
Vehicle Occupant | Motorcyclist | Pedestrian | Bicyclist | |
1 | 7.14 | 16.45 | 24.89 | 24.91 |
2 | 19.12 | 23.46 | 36.78 | 26.06 |
3 | 52.47 | 50.25 | 29.54 | 47.00 |
4 | 19.48 | 8.89 | 8.35 | 1.93 |
5 | 1.79 | 0.95 | 0.44 | 0.10 |
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Angelo, A.A.; Sasai, K.; Kaito, K. Safety Integrated Network Level Pavement Maintenance Decision Support Framework as a Practical Solution in Developing Countries: The Case of Addis Ababa, Ethiopia. Sustainability 2023, 15, 8884. https://doi.org/10.3390/su15118884
Angelo AA, Sasai K, Kaito K. Safety Integrated Network Level Pavement Maintenance Decision Support Framework as a Practical Solution in Developing Countries: The Case of Addis Ababa, Ethiopia. Sustainability. 2023; 15(11):8884. https://doi.org/10.3390/su15118884
Chicago/Turabian StyleAngelo, Asnake Adraro, Kotaro Sasai, and Kiyoyuki Kaito. 2023. "Safety Integrated Network Level Pavement Maintenance Decision Support Framework as a Practical Solution in Developing Countries: The Case of Addis Ababa, Ethiopia" Sustainability 15, no. 11: 8884. https://doi.org/10.3390/su15118884
APA StyleAngelo, A. A., Sasai, K., & Kaito, K. (2023). Safety Integrated Network Level Pavement Maintenance Decision Support Framework as a Practical Solution in Developing Countries: The Case of Addis Ababa, Ethiopia. Sustainability, 15(11), 8884. https://doi.org/10.3390/su15118884