REFEREED PAPER
Po, Yin-Ming, Chih-Ping Lin, Ernian Pan, Quoc Kinh Tran, Tsai-Jung Wu, and Shih-Hsien Yang. "Non-destructive testing methods for in-situ pavement profiling: a review and comparative assessment." Measurement (2026): 121512.
Rachman, F., Yang, S. H., Syammaun, T., & Rani, H. A. (2026, March). Valorization of Paper Pulp Black Liquor and Waste Cooking Oil for Sustainable Rejuvenation of Aged Bitumen. In IOP Conference Series: Earth and Environmental Science (Vol. 1605, No. 1, p. 012009). IOP Publishing.
Yang, S. H., Tran, N. H., Chang, A. S., Tsai, C. Y., & Yueh, H. R. (2026). Economic and societal indicators in sustainable roadway rating systems–a comparative analysis. Environment, Development and Sustainability, 1-29. [SCIE]
Wu, T. J., Lin, C. P., Po, Y. M., Tran, Q. K., Pan, E., & Yang, S. H. (2025). Accurate non-destructive evaluation of pavement stiffness profile based on Monte Carlo inversion of surface-wave dispersion spectra. NDT & E International, 156, 103496. [DOI: 10.1016/j.ndteint.2025.103496] [SCIE]
Yang, S.-H., Hoai Tran, N., Rachman, F., & Dao, H. (2025). Application of a hybrid approach in Developing Urban Road Livability-Related Indicators for the Sustainable Urban Road Rating System. Journal of Infrastructure Systems, 31(2), 04025002. [DOI: 10.1061/JITSE4.ISENG-2555] [SCIE]
Liu, P., Fu, C., Li, Y., Du, C., Jin, J., & Yang, S. H. (2025). Computational analysis of mechanical responses in asphalt pavements using three-dimensional multiscale thermo-mechanical modelling. Road Materials and Pavement Design, 1-35. [SCIE]
Yang, S. H., Rachman, F., Gunawan, H. C. F., Liu, P., Rachman, A., Kao, B. Y., & Tran, N. H. (2024). Enhancing asphalt sustainability: Anti-aging performance characterization of bio-asphalt using black liquor lignin modifier. Journal of the Chinese Institute of Civil and Hydraulic Engineering, 36(8), 667-678. [DOI: 10.6652/JoCICHE.202412_36(8).0003] [EI]
Rachman, A., Yang, S.-H., Nguyen, M. N., & Rachman, F. (2024). Enhancing Hamburg wheel tracking test analysis: A novel energy-based performance index. Construction and Building Materials, 445, 137666. [DOI: 10.1016/j.conbuildmat.2024.137666] [SCI]
Bayrak, A. T., Shaban, N., Choubi, S. S., Tuncer, E., Yang, S.-H., Yılmaz, H. D., Alkilani, A. Z., Dal, H., Unluer, C., Dino, I. G., Örtemiz, E., Sarıtaş, A., & Akgul, C. M. (2024). Spatial variation of physical, mechanical, and thermophysical properties of 3D printed concrete across a full-scale wall. Construction and Building Materials, 431, 136574. [DOI: 10.1016/j.conbuildmat.2024.136574] [SCI]
Rachman, A., & Yang, S.-H. (2023). A cleaner pavement preventive maintenance approach: Performance and emission impact analysis of slurry surfacing containing electric arc furnace slag. Construction and Building Materials, 402, 133056. [DOI: 10.1016/j.conbuildmat.2023.133056] [SCI]
Rachman, F., Yang, S.-H., Chintya, H., Chen, Y.-H., & Tran, H.-N. (2023). Characterization of physical and chemical antioxidative performance of asphalt using bio-additive from paper pulp black liquor. Construction and Building Materials, 389, 131676. [DOI: 10.1016/j.conbuildmat.2023.131676] [SCI]
Rachman, F., Yang, S.-H., Riadhotussolihah, S., Chintya, H., Chen, Y.-H., & Fini, E. (2023). Deagglomeration of asphalt binder using kraft lignin: A sustainable valorization of waste from the pulping industry. Construction and Building Materials, 401, 132725. [DOI: 10.1016/j.conbuildmat.2023.132725] [SCI]
Yang, S.-H., Tran, N. H., Suprayoga, G. B., Nguyen, C. V., & Rachman, F. (2023). Developing materials and energy-related indicators and identifying barriers to their adoption in an adjustable urban road sustainable rating system. Sustainable Cities and Society, 98, 104848. [DOI: 10.1016/j.scs.2023.104848] [SCI]
Yang, H., Chen, Q., Liu, H., Chang, H., Yang, S.-H., Wang, L., & Liu, P. (2023). Investigation on distributed vibration damping of bridge based on energy harvesting technique and finite element analysis. Applied Sciences, 13(1), 382. [DOI: 10.3390/app13010382] [SCI]
Wiranata, D. Y., Yang, S.-H., Akgul, C. M., Ho, Y. H., & Muhammad, Z. (2022). Use of coal ash cement stabilized material as pavement base material: Laboratory characterization and field evaluation. Construction and Building Materials, 344(15), 128055. [DOI: 10.1016/j.conbuildmat.2022.128055] [SCI]
楊士賢, 陳若惟, & 陳懷南. (2022). 市區綠道路指標之準備程度與得分改善建議. 中國土木水利工程學刊, 34(8), 709-719. [DOI: 10.6652/JoCICHE.202212_34(8).0006] [EI]
張家瑞, 楊士賢, & 陳誼. (2022). 高速公路定期巡查導入自動化及量化評估研究. 鋪面工程, 20(4), 61-76. [DOI: 10.29996/PE]
楊士賢, 謝家任, Wiranata, D. Y., 呂奇龍, 方水連, & 李寧. (2022). 以力學試驗方法驗證瀝青混凝土施工品質成效之研究. 鋪面工程, 20(2), 1-15. [DOI: 10.29996/PE]
岳含潤, & 楊士賢. (2022). 基於矩陣擴增法發展營建材料碳足跡分析架構-以瀝青混凝土材料為例. 鋪面工程, 20(1), 63-79. [DOI: 10.29996/PE]
Tran, N. H., Yang, S.-H., Tsai, C. Y., Yang, N. C., & Chang, C.-M. (2021). Developing transportation livability-related indicators for green urban road rating system in Taiwan. Sustainability, 13(24), 14016. [DOI: 10.3390/su132414016] [SCI]
Susanto, H. A., Yang, S.-H., Kao, C.-T., & Huang, C.-W. (2021). Effect of viscoelastic material in hot mix asphalt rutting performance correlation using different wheel-tracking test. International Journal of Pavement Research and Technology, 1-13. [DOI: 10.1007/s42947-021-00046-w] [EI]
Susanto, H. A., Yang, S.-H., & Duc, M. A. (2021). Performance evaluation of geogrid in flexible pavement using mechanical-empirical design approach. International Journal of Pavement Research and Technology, 1-15. [DOI: 10.1007/s42947-021-00030-4] [EI]
陳艾懃, 周家蓓, 張家瑞, 楊士賢, 蘇育民, 朱晧睿, 梁健偉, 蕭冠箴, & 吳東縉. (2021). 簡易型平整儀應用於大規模路網檢測之研究. 鋪面工程, 19(1), 69-78. [DOI: 10.29996/PE]
Jihanny, J., Subagio, B. S., Yang, S.-H., Karsaman, R. H., & Hariyadi, E. S. (2021). The overload impact on design life of flexible pavement. International Journal of GEOMATE, 20(78), 65-72. [DOI: 10.21660/2021.78.j2020] [EI]
Tran, N. H., & Yang, S.-H. (2021). Comparative analysis of materials and energy between sustainable roadway rating systems. International Journal of Pavement Research and Technology, 14, 1-12. [DOI: 10.1007/s42947-020-0032-1] [EI]
Tran, N. H., Yang, S.-H., & Huang, T. (2021). Comparative analysis of traffic-and-transportation-planning-related indicators in sustainable transportation infrastructure rating systems. International Journal of Sustainable Transportation, 15(3), 203-216. [DOI: 10.1080/15568318.2020.1722868] [SSCI]
Xie, S., Yi, J., Wang, H., Yang, S.-H., Xu, M., & Feng, D. (2020). Mechanical response analysis of transverse crack treatment of asphalt pavement based on DEM. International Journal of Pavement Engineering, 22(12), 1-21. [DOI: 10.1080/10298436.2020.1849687] [SCI]
Yang, S.-H., & Christianto, F. W. (2020). Preliminary development of an ME-based wearing model for the conductor rail in MCTS. Journal of Infrastructure Systems, 26(4), 04020034. [DOI: 10.1061/(ASCE)IS.1943-555X.0000560] [SCIE]
邱柏凱, & 楊士賢. (2020). 利用複合生命週期評估建立台灣道路工程材料碳足跡計算架構. 鋪面工程, 18(4), 13-25. [DOI: 10.29996/PE]
Zhu, Y., Yi, J., Xu, M., Chen, Z., Yang, S.-H., & Feng, D. (2019). Quantum chemical simulation and laboratory testing of the curing mechanism and performance of resin bio-oil. International Journal of Pavement Engineering, 22(9), 1123-1142. [DOI: 10.1080/10298436.2019.1656808] [SCIE]
Susanto, H. A., Yang, S.-H., & Chou, H.-H. (2019). Mechanical properties of thin surface treatment for pavement maintenance. The Baltic Journal of Road and Bridge Engineering, 14(2), 136-157. [DOI: 10.7250/bjrbe.2019-14.437] [SCIE]
Yang, S.-H., Rachman, F., & Susanto, H. A. (2018). Effect of moisture in aggregate on adhesive properties of warm-mix asphalt. Construction and Building Materials, 190, 1295-1307. [DOI: 10.1016/j.conbuildmat.2018.08.208] [SCIE]
Chang, A. S., Chang, H. J., Tsai, C. Y., Yang, S. H., & Muench, S. T. (2018). Strategy of indicator incorporation for roadway sustainability certification. Journal of Cleaner Production, 203, 836-847. [DOI: 10.1016/j.jclepro.2018.08.047] [SCIE]
Yang, S.-H., Liu, J. Y. H., & Tran, N. H. (2018). Multi-criteria life cycle approach to develop weighting of sustainability indicators for pavement. Sustainability, 10(7), 2325. [DOI: 10.3390/su10072325] [SCIE]
Yang, S.-H., Huang, C.-W., Sun, Y.-N., & Susanto, H. A. (2018). The development of the scaled accelerated loading simulator facility and transfer functions to the full-scale pavement using theory of similitude by finite element analysis. International Journal of Pavement Research and Technology, 11, 733-746. [DOI: 10.1016/j.ijprt.2018.03.004] [EI]
楊士賢, & 王亭雅. (2018). 水泥乳化瀝青系統破乳凝結機制之流變特性. 鋪面工程, 16(3), 37-48. [DOI: 10.29996/PE]
楊士賢, 張芳綺, 林俊豪, 劉彥宏, & 賴明煌. (2017). 盤查臺灣地區熱拌瀝青混凝土產品於生產與鋪築階段之能源消耗與環境衝擊. 鋪面工程, 15(2), 51-58. [DOI: 10.29996/PE]
楊士賢, & 柳冠維. (2017). 利用堆積理論改善超微表配比設計方法並探討對其長期績效表現之影響. 鋪面工程, 15(1), 33-40. [DOI: 10.29996/PE]
楊士賢, 周煥焄, & 柳冠維. (2016). 探討與超薄鋪面技術成效表現相關之力學特性. 鋪面工程, 14(4), 51-62. [DOI: 10.29996/PE]
Yang, S.-H., & Suciptan, T. (2016). Rheological behavior of Japanese cedar-based biobinder as partial replacement for bituminous binder. Construction and Building Materials, 114, 127-133. [DOI: 10.1016/j.conbuildmat.2016.03.155] [SCIE]
Yang, S.-H., & Lee, L.-C. (2016). Characterizing the chemical and rheological properties of severely aged reclaimed asphalt pavement materials with high recycling rate. Construction and Building Materials, 111, 139-146. [DOI: 10.1016/j.conbuildmat.2016.02.058] [SCIE]
楊士賢, & 李利淳. (2015). 再生劑對高度老化再生瀝青膠泥之成效性質影響. 鋪面工程, 13(1), 13-22. [DOI: 10.29996/PE]
楊士賢, 吳政忠, & 劉奕賢. (2014). 應用不完整之國道國際糙度指標建立可靠度鋪面服務壽命模型. 鋪面工程, 12(3), 7-15. [DOI: 10.29996/PE]
Chen, H. C., Yang, S.-H., Liu, Y. W., Sun, P. C., & Lin, D. F. (2013). Development of green paving technology for urban roads. Advanced Materials Research, 723, 601-608. [DOI: 10.4028/www.scientific.net/AMR.723.601] [EI]
Yang, S.-H., & Keita, A. (2013). Preliminary evaluation of field aging characteristic of warm mix asphalt. Advanced Materials Research, 723, 149-156. [DOI: 10.4028/www.scientific.net/AMR.723.149] [EI]
Yang, S.-H., Al-Qadi, I. L., McGraw, J., Masson, J.-F., & McGhee, K. M. (2010). Thresholds identification and field validation of the performance based guidelines for the selection of hot-poured crack sealants. Transportation Research Record, (2180), 87-95. [DOI: 10.3141/2180-10] [SCI]
Al-Qadi, I. L., Dessouky, S., & Yang, S.-H. (2010). Linear viscoelastic constitutive model development for hot-poured crack sealants at low temperature. Journal of Materials in Civil Engineering, 22(10), 996-1004. [DOI: 10.1061/(ASCE)MT.1943-5533.0000113] [SCI]
Faheem, A. F., Bahia, H., Yang, S.-H., & Al-Qadi, I. L. (2010). Evaluation of Rigden fractional voids test method and the relation to mastic viscosity. Journal of the Association of Asphalt Paving Technologists, 79, 1-25. [EI]
Al-Qadi, I. L., Yang, S.-H., Fini, E., Masson, J.-F., & McGhee, K. (2009). Performance based specification guidelines for the selection of bituminous-based hot-poured crack sealants. Journal of the Association of Asphalt Paving Technologists, 78, 491-532. [EI]
Yang, S.-H., & Al-Qadi, I. L. (2008). A modified direct tension test (DTT) for bituminous crack sealant characterization at low temperature. Journal of the Association of Asphalt Paving Technologists, 77, 107-142. [EI]
Elseifi, M. A., Al-Qadi, I. L., Yang, S.-H., & Carpenter, S. H. (2008). Validity of asphalt binder film thickness concept in hot-mix asphalt. Transportation Research Record, 2057, 37-45. [DOI: 10.3141/2057-05] [SCI]
Al-Qadi, I. L., Yang, S.-H., Dessouky, S., & Masson, J.-F. (2007). Low temperature characterization of hot-poured crack sealant using modified SHRP direct tensile tester. Transportation Research Record, 1991, 109-118. [DOI: 10.3141/1991-13] [SCI]
Al-Qadi, I. L., Yang, S.-H., Dessouky, S., Masson, J. F., Loulizi, A., & Elseifi, M. (2007). Development of crack sealant bending beam rheometer (CSBBR) testing to characterize hot-poured bituminous crack sealant at low temperature. Journal of the Association of Asphalt Paving Technologists, 76, 85-122. [EI]
Yang, S.-H., & Al-Qadi, I. L. (2007). Cost-effectiveness of using geotextiles in flexible pavements. Geosynthetics International, 13(1), 2-12. [DOI: 10.1680/gein.2007.14.1.2] [SCI]
Elseifi, M. A., Dessouky, S. H., Al-Qadi, I. L., & Yang, S.-H. (2006). Viscoelastic model to describe mechanical response of bituminous sealants at low temperature. Transportation Research Record, 1958, 82-89. [DOI: 10.3141/1958-10] [SCI]