Fig. 1. PHC-W pile
Fig. 2. The conceptual diagram of basement wall method using PHC-W pile retaining wall
Fig. 3. Diagram of the additional wall
Fig. 4. Detail diagrams for calculation of bending and shear strength
Fig. 5. Schematic diagram of bending tests and shear tests
Fig. 6. Test results of Bending Moment of the composite additional wall
Photo 1. Cracks of composite additional wall during bending test
Fig. 7. Shear test results of the composite additional wall
Photo 2. Failures of composite additional wall during shear test
Fig. 8. Test results of bending moment for non-composite additional wall
Photo 3. Cracks of non-composite additional wall during bending test (N-B-3)
Fig. 9. Shear test results of non-composite additional wall
Photo 4. Failures of non-composite additional wall during shear test (N-S-1)
Table 1. Calculation formula and material’s properties(a) Calculation formula
Table 2. Summary of calculated values
Table 3. Test plan
Table 4. Summary of test results
References
- Choi, J. P., Jin, H. M., Kim, C. M., Kim, S. S., and Choi, Y. K. (2017), "A Study on Behavior of PHC-W Retaining Wall Method Based on the Numerical Analysis Results", Korean Geotechnical Society, Vol.33, No.2, 2017. 1., pp.2-3, ISSN 1229-2427. (in Korean)
- Kim, C. M, Kim, S. S., Jeon, B. H., and Choi, Y. K. (2017), "AStudy on Performance Improvement of a PHC-W Pile for PHC-WRetaining Wall", Korean Geotechnical Society, Vol.33, No.2, 2017.1., pp.27-34, ISSN 1229-2427. (in Korean)
- KCSC (2016), KDS 14 20 00. (in Korean) Concrete structure design (Ultimate design method). (in Korean)
- Musung construction co. Ltd. (2017), Annual performance plan, Korea Agency for infrastructure Technology Advancement, pp.19-22. (in Korean)
- Musung construction co. Ltd & Hill Egnrg. Corp. (2018), Institute For Research & Industry Cooperation of KSU (2018), Report on Structural Design and Performance Test of PHC-W Pile and Additional Wall, 2018. 4., p.3. (in Korean)