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Professor Santiago Pujol

Contact

Department: Civil and Natural Resources Engineering

Email: santiago.pujol@canterbury.ac.nz

Office:

Language: English

About
Research / Creative works

Researcher Summary

Santiago Pujol is Professor of Civil Engineering at the University of Canterbury. Prior to moving to New Zealand, he was Professor of Civil Engineering at the Lyles School of Civil Engineering, Purdue University. His experience includes: earthquake engineering, evaluation and strengthening of existing structures, response of reinforced concrete to impulsive loads and earthquake demands, instrumentation and testing of structures, and failure investigations. He is a Fellow of the American Concrete Institute (ACI), and member of ACI committees 445 (Torsion and Shear), 314 (Simplified Design), 133 (Disaster Reconnaissance), and 318R (High-Strength Reinforcement). He is also member of the Earthquake Engineering Research Institute (EERI), associate editor of Earthquake Spectra, and founder of datacenterhub.org (a site funded by the U.S. National Science Foundation and dedicated to the systematic collection of research data). He received the Chester Paul Siess Award for Excellence in Structural Research from ACI, the Educational Award from Architectural Institute of Japan, and the Walter L. Huber Civil Engineering Research Prize from ASCE.

Subject Area: Disciplines

  • Engineering and Technology: Civil

Research/Scholarly/Creative Works

Journal Articles
  • Alcocer S., Behrouzi A., Brena S., J Elwood K., Irfanoglu A., Kreger M., Lequesne R., Mosqueda G., Pujol S. and Puranam A. (2020) Observations about the seismic response of RC buildings in Mexico City. Earthquake Spectra 36(2_suppl): 154-174. http://dx.doi.org/10.1177/8755293020942523.
  • Guljaš I., Penava D., Laughery L. and Pujol S. (2020) Dynamic Tests of a Large-Scale Three-Story RC Structure with Masonry Infill Walls. Journal of Earthquake Engineering 24(11): 1675-1703. http://dx.doi.org/10.1080/13632469.2018.1475313.
  • Opabola EA., Elwood KJ. and Pujol S. (2020) Influence of biaxial lateral loading on seismic response of reinforced concrete columns. ACI Structural Journal 117(6): 211-224. http://dx.doi.org/10.14359/51728069.
  • Pujol S., Laughery L., Puranam A., Hesam P., Cheng LH., Lund A. and Irfanoglu A. (2020) Evaluation of seismic vulnerability indices for low-rise reinforced concrete buildings including data from the 6 february 2016 Taiwan earthquake. Journal of Disaster Research 15(1): 9-19. http://dx.doi.org/10.20965/jdr.2020.p0009.
  • Wang Y. and Pujol S. (2020) Effects of longitudinal reinforcement discontinuities on the seismic response of structural walls. Bulletin of Earthquake Engineering 18(15): 6735-6760. http://dx.doi.org/10.1007/s10518-020-00963-4.
  • Ardila-Giraldo OA. and Pujol S. (2019) Failure mechanisms of small-scale reinforced concrete beams impacted by soft missiles. Structures 20: 620-634. http://dx.doi.org/10.1016/j.istruc.2019.06.009.
  • Laughery LA. and Pujol S. (2019) Drift demands on reinforced concrete structures subjected to strong ground motions. ACI Structural Journal 116(1): 103-116. http://dx.doi.org/10.14359/51710872.
  • Puranam AY. and Pujol S. (2019) Reinforcement limits for reinforced concrete elements with high-strength steel. ACI Structural Journal 116(5): 201-212. http://dx.doi.org/10.14359/51716762.
  • Puranam AY., Irfanoglu A., Pujol S., Chiou TC. and Hwang SJ. (2019) Evaluation of seismic vulnerability screening indices using data from the Taiwan Earthquake of 6 February 2016. Bulletin of Earthquake Engineering 17(4): 1963-1981. http://dx.doi.org/10.1007/s10518-018-0519-1.
  • Takahashi S., Hotta K., Hirosawa M., Ichinose T., Maeda M., Laughery L. and Pujol S. (2019) Seismic damage of a building caused by post-installed anchors intended to increase shear strength of structural wall. Journal of Advanced Concrete Technology 17(3): 128-150. http://dx.doi.org/10.3151/jact.17.3.138.
  • Yeum CM., Dyke SJ., Benes B., Hacker T., Ramirez J., Lund A. and Pujol S. (2019) Postevent Reconnaissance Image Documentation Using Automated Classification. Journal of Performance of Constructed Facilities 33(1) http://dx.doi.org/10.1061/(ASCE)CF.1943-5509.0001253.
  • Benavent-Climent A., Ramírez-Márquez A. and Pujol S. (2018) Seismic strengthening of low-rise reinforced concrete frame structures with masonry infill walls: Shaking-table test. Engineering Structures 165: 142-151. http://dx.doi.org/10.1016/j.engstruct.2018.03.026.
  • Catlin AC., Hewanadungodage C., Pujol S., Laughery L., Sim C., Puranam A. and Bejarano A. (2018) A Cyberplatform for Sharing Scientific Research Data at DataCenterHub. Computing in Science and Engineering 20(3): 49-70. http://dx.doi.org/10.1109/MCSE.2017.3301213.
  • Daluga D., McCain K., Murray M. and Pujol S. (2018) Effect of geometric scaling on shear strength of reinforced concrete beams with stirrups. ACI Structural Journal 115(1): 5-14. http://dx.doi.org/10.14359/51700947.
  • Daluga D., McCain K., Murray M. and Pujol S. (2018) Effect of geometric scaling on shear strength of reinforced concrete beams without stirrups. ACI Structural Journal 115(6): 1813.
  • Klaboe K., Pujol S. and Laughery L. (2018) Seismic response of rocking blocks. Earthquake Spectra 34(3): 1051-1063. http://dx.doi.org/10.1193/060517EQS107DP.
  • Puranam A., Wang Y. and Pujol S. (2018) Estimating drift capacity of reinforced concrete structural walls. ACI Structural Journal 115(6): 1563-1574. http://dx.doi.org/10.14359/51702444.
  • Villalobos E., Sim C., Smith-Pardo JP., Rojas P., Pujol S. and Kreger ME. (2018) The 16 April 2016 Ecuador earthquake damage assessment survey. Earthquake Spectra 34(3): 1201-1217. http://dx.doi.org/10.1193/060217EQS106M.
  • Villalobos E., Escolano-Margarit D., Ramírez-Márquez AL. and Pujol S. (2017) Seismic response of reinforced concrete walls with lap splices. Bulletin of Earthquake Engineering 15(5): 2079-2100. http://dx.doi.org/10.1007/s10518-016-0051-0.
  • Pujol S., Hanai N., Ichinose T. and Sozen MA. (2016) Using Mohr-Coulomb criterion to estimate shear strength of reinforced concrete columns. ACI Structural Journal 113(3): 459-468. http://dx.doi.org/10.14359/51688743.
  • Wang Y., Villalobos E., Pujol S., Al-Washali H., Suzuki K., Maeda M., Takahashi S. and Ichinose T. (2016) On the seismic response of the faculty of architecture and engineering building at Tohoku University. Earthquake Spectra 32(1): 523-545. http://dx.doi.org/10.1193/053013EQS139M.
  • Laughery L. and Pujol S. (2015) Compressive strength of unreinforced struts. ACI Structural Journal 112(5): 617-623. http://dx.doi.org/10.14359/51687711.
  • Lew HS., Bao Y., Pujol S. and Sozen MA. (2014) Experimental study of reinforced concrete assemblies under column removal scenario. ACI Structural Journal 111(4): 881-892. http://dx.doi.org/10.14359/51686739.
  • Tavallali H., Lepage A., Rautenberg JM. and Pujol S. (2014) Concrete beams reinforced with high-strength steel subjected to displacement reversals. ACI Structural Journal 111(5): 1037-1048. http://dx.doi.org/10.14359/51686967.
  • Henkhaus K., Pujol S. and Ramirez J. (2013) Axial failure of reinforced concrete columns damaged by shear reversals. Journal of Structural Engineering (United States) 139(7): 1172-1180. http://dx.doi.org/10.1061/(ASCE)ST.1943-541X.0000673.
  • Pujol S., Nelson MD. and Smith-Pardo JP. (2013) Virtual velocity: Connecting the concepts of Kinematics and Virtual Work. Engineering Structures 56: 2249-2252. http://dx.doi.org/10.1016/j.engstruct.2013.08.033.
  • Rautenberg JM., Pujol S., Tavallali H. and Lepage A. (2013) Drift capacity of concrete columns reinforced with high-strength steel. ACI Structural Journal 110(2): 307-317.
  • Zhou W., Zheng W. and Pujol S. (2013) Seismic vulnerability of reinforced concrete structures affected by the 2008 wenchuan earthquake. Bulletin of Earthquake Engineering 11(6): 2079-2104. http://dx.doi.org/10.1007/s10518-013-9517-5.
  • Lepage A., Tavallali H., Pujol S. and Rautenberg JM. (2012) High-performance steel bars and fibers as concrete reinforcement for seismic-resistant frames. Advances in Civil Engineering 2012 http://dx.doi.org/10.1155/2012/450981.
  • Pujol S. and Richter B. (2012) Experimental investigation on compressive behavior of bottle-shaped struts. Paper by Giuseppe Campione and Giovanni Minafò. ACI Structural Journal 109(2): 268.
  • Rautenberg JM., Pujol S., Tavallali H. and Lepage A. (2012) Reconsidering the use of high-strength reinforcement in concrete columns. Engineering Structures 37: 135-142. http://dx.doi.org/10.1016/j.engstruct.2011.12.036.
  • Song C., Pujol S. and Lepage A. (2012) The collapse of the alto río building during the 27 February 2010 Maule, Chile, earthquake. Earthquake Spectra 28(SUPPL.1) http://dx.doi.org/10.1193/1.4000036.
  • Tavallali H., Lepage A., Rautenberg J. and Pujol S. (2012) Drift limits of concrete frame members reinforced with high-performance steel bars and fibers. RILEM Bookseries 2: 329-337. http://dx.doi.org/10.1007/978-94-007-2436-5_40.
  • Hacker TJ., Eigenmann R., Bagchi S., Irfanoglu A., Pujol S., Catlin A. and Rathje E. (2011) The NEEShub cyberinfrastructure for earthquake engineering. Computing in Science and Engineering 13(4): 67-77. http://dx.doi.org/10.1109/MCSE.2011.70.
  • O'Brien P., Eberhard M., Haraldsson O., Irfanoglu A., Lattanzi D., Lauer S. and Pujol S. (2011) Measures of the seismic vulnerability of reinforced concrete buildings in haiti. Earthquake Spectra 27(SUPPL. 1) http://dx.doi.org/10.1193/1.3637034.
  • Bedirhanoglu I., Llki A., Pujol S. and Kumbasar N. (2010) Behavior of deficient joints with plain bars and low-strength concrete. ACI Structural Journal 107(3): 300-310.
  • Pujol S. and Fick D. (2010) The test of a full-scale three-story RC structure with masonry infill walls. Engineering Structures 32(10): 3112-3121. http://dx.doi.org/10.1016/j.engstruct.2010.05.030.
  • Pujol S., Muttoni A. and Ruiz MF. (2010) Reinforced concrete slab shear prediction competition: Entries and discussion. ACI Structural Journal 107(2): 249-251.
  • Sözen MA. and Pujol S. (2010) A sensor for confident identification of structural damage in reinforced concrete buildings. Smart Structures and Systems 6(3): 291-307. http://dx.doi.org/10.12989/sss.2010.6.3.291.
  • Chin JC., Rautenberg JM., Ma CYT., Pujol S. and Yau DKY. (2009) An experimental low-cost, low-data-rate rapid structural assessment network. IEEE Sensors Journal 9(11): 1361-1369. http://dx.doi.org/10.1109/JSEN.2009.2019355.
  • Pujol S. and Paul Smith-Pardo J. (2009) A new perspective on the effects of abrupt column removal. Engineering Structures 31(4): 869-874. http://dx.doi.org/10.1016/j.engstruct.2008.11.022.
  • Griffiths JHP., Irfanoglu A. and Pujol S. (2007) Response to M. Erdik's discussion of "Istanbul at the threshold: An evaluation of the seismic risk in Istanbul". Earthquake Spectra 23(3): 731-733. http://dx.doi.org/10.1193/1.2754302.
  • Pyper Griffiths JH., Irfanoglu A. and Pujol S. (2007) Istanbul at the threshold: An evaluation of the seismic risk in Istanbul. Earthquake Spectra 23(1): 63-75. http://dx.doi.org/10.1193/1.2424988.
  • Pujol S., Sozen MA. and Ramirez JA. (2006) Displacement history effects on drift capacity of reinforced concrete columns. ACI Structural Journal 103(2): 253-262.
  • Dönmez C. and Pujol S. (2005) Spatial distribution of damage caused by the 1999 earthquakes in Turkey. Earthquake Spectra 21(1): 53-69. http://dx.doi.org/10.1193/1.1850527.
  • Pujol S., Ramirez J., Azizinamini A., Darwin D., Eligehausen R., Pavel R. and Ghosh SK. (2000) Proposed modifications to ACI 318-95 tension development and lap splice for high-strength concrete paper by Atorod Azizinamini, David Darwin, Rolf Eligehausen, Rob Pavel, and S. K. Ghosh. ACI Structural Journal 97(5): 790-791.
  • Pujol S., Sözen M. and Ramírez J. (2000) Transverse reinforcement for columns of RC frames to resist earthquakes. Journal of structural engineering New York, N.Y. 126(4): 461-466. http://dx.doi.org/10.1061/(ASCE)0733-9445(2000)126:4(461).
  • Pujol S., Sozen M., Wehbe NI., Saiid Saiidi M. and Sanders DH. (2000) Seismic performance of rectangular bridge columns with moderate confinement. Paper by Nadim I. Wehbe, M. Saiid Saudi, and David H. Sanders. ACI Structural Journal 97(1): 208-210.
Authored Books
  • Sozen MA., Ichinose T. and Pujol S. (2014) Principles of reinforced concrete design. 1-276. http://dx.doi.org/10.1201/b17165.
Chapters
  • Chen J., Pujol S., Yau DKY. and Miao D. (2009) Integrated RFID and sensor networks for structure monitoring. RFID and Sensor Networks: Architectures, Protocols, Security, and Integrations: 583-605.
Conference Contributions - Published
  • Chiou TC., Hwang SJ. and Pujol S.. (2018) Comparison of seismic vulnerable indices by building data of the 2016 Taiwan earthquake. In 11th National Conference on Earthquake Engineering 2018, NCEE 2018: Integrating Science, Engineering, and Policy 2: 1171-1180.
  • Haselton CB., Deierlein G., Bono S., Ghannoum W., Hachem M., Malley J., Hooper J., Lignos D., Mazzoni S. and Pujol S.. (2018) Guidelines on nonlinear dynamic analysis for performance-based seismic design of steel and concrete moment frames. In 11th National Conference on Earthquake Engineering 2018, NCEE 2018: Integrating Science, Engineering, and Policy 1: 197-208.
  • Pujol S., Irfanoglu A., Gülkan P., Heaton TH., Sozen MA. and Laughery L.. (2018) A potential problem in estimating the drift response of long-period structures. In 11th National Conference on Earthquake Engineering 2018, NCEE 2018: Integrating Science, Engineering, and Policy 11: 6701-6709.
  • Shah P., Skillen K., Laughery L., Pujol S. and Irfanoglu A.. (2018) Dynamic tests of stone masonry walls with earth mortar for improved construction in rural Nepal. In 11th National Conference on Earthquake Engineering 2018, NCEE 2018: Integrating Science, Engineering, and Policy 2: 778-782.
  • Song C. and Pujol S.. (2018) Collapse assessment of vulnerable reinforced concrete structures under earthquakes. In 11th National Conference on Earthquake Engineering 2018, NCEE 2018: Integrating Science, Engineering, and Policy 12: 7825-7835.
  • Wu ZY., Peng X., Pujol S., Puranam A., Christenson R. and Lobo-Aguilar S.. (2018) Development and validation of video camera as sensor for structural health monitoring. In Proceedings of the 7th Asia-Pacific Workshop on Structural Health Monitoring, APWSHM 2018: 1134-1144.
  • Yeum CM., Dyke SJ., Benes B., Hacker T., Ramirez J., Lund A., Sim C. and Pujol S.. (2018) Automating visual data processing to support post-earthquake reconnaissance. In 11th National Conference on Earthquake Engineering 2018, NCEE 2018: Integrating Science, Engineering, and Policy 3: 1898-1902.
  • Yeum CM., Dyke SJ., Benes B., Hacker T., Ramirez J., Lund A. and Pujol S.. (2017) Rapid, automated post-event image classification and documentation. In International Conference on Advances in Experimental Structural Engineering 2017-September: 419-431. http://dx.doi.org/10.7414/7aese.T3.69.
  • Gopavarapu P., Pouchard LC. and Pujol S.. (2016) Increasing datasets discoverability in an engineering data platform using keyword extraction. In Proceedings of the ACM/IEEE Joint Conference on Digital Libraries 2016-September: 225-226. http://dx.doi.org/10.1145/2910896.2925443.
  • Villalobos E., Pujol S. and Moehle JP.. (2016) Panel zones in structural walls. In American Concrete Institute, ACI Special Publication 2016-January(SP 311): 96-120.
  • Villalobos E. and Pujol S.. (2014) Seismic response of reinforced concrete walls with lap splices. In NCEE 2014 - 10th U.S. National Conference on Earthquake Engineering: Frontiers of Earthquake Engineering http://dx.doi.org/10.4231/D38K74X3B.
  • Wang Y. and Pujol S.. (2014) The Capacity Spectrum Method: Evaluation against the measured response of a nine-story structure. In NCEE 2014 - 10th U.S. National Conference on Earthquake Engineering: Frontiers of Earthquake Engineering http://dx.doi.org/10.4231/D34F1MJ8Q.
  • Rautenberg JM. and Pujol S.. (2012) Numerical estimates of the seismic response of building structures reinforced with high-strength steel. In American Concrete Institute, ACI Special Publication(293 SP): 34-43.
  • Tavallali H., Lepage A., Rautenberg J. and Pujol S.. (2011) Cyclic response of concrete frame members reinforced with ultrahigh strength steel. In Structures Congress 2011 - Proceedings of the 2011 Structures Congress: 560-570. http://dx.doi.org/10.1061/41171(401)49.
  • Henkhaus K., Pujol S. and Ramirez J.. (2010) Axial failure of reinforced concrete columns containing ties with inadequate seismic detailing. In 9th US National and 10th Canadian Conference on Earthquake Engineering 2010, Including Papers from the 4th International Tsunami Symposium 7: 5319-5321.
  • Rautenberg JM., Pujol S., Tavallali H. and Lepage A.. (2010) Cyclic response of concrete columns reinforced with high-strength steel. In 9th US National and 10th Canadian Conference on Earthquake Engineering 2010, Including Papers from the 4th International Tsunami Symposium 3: 2169-2177.
  • Henkhaus KW., Ramirez JA. and Pujol S.. (2009) Simultaneous shear and axial failures of reinforced concrete columns. In Improving the Seismic Performance of Existing Buildings and Other Structures - Proc. 2009 ATC and SEI Conference on Improving the Seismic Performance of Existing Buildings and Other Structures: 536-546. http://dx.doi.org/10.1061/41084(364)49.
  • Chin JC., Rautenberg JM., Ma CYT., Pujol S. and Yau DKY.. (2008) A low-cost, low-data-rate rapid structural assessment network: Design, implementation, and experimentation. In 2008 5th IEEE International Conference on Mobile Ad-Hoc and Sensor Systems, MASS 2008: 173-182. http://dx.doi.org/10.1109/MAHSS.2008.4660014.
  • Pujol S., Ramfrez JA. and Sozen MA.. (1999) Drift capacity of reinforced concrete columns subjected to cyclic shear reversals. In Seismic response of concrete bridges. SP-187 Special publication of the American Concrete Institute.: 255-274.
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