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Publications

Found 340 results
Author Title [ Type(Desc)] Year
Technical Report
Ekstrom, M. Accounting for Rater Credibilty when Evaluating Construction Industry Service Providers. (2004). at <https://purl.stanford.edu/ps782tv8202>
Garcia, A. Cristina B., Howard, C. H. & Stefik, M. Active Design Documents: A New Approach for Supporting Documentation in Preliminary Routine Design. (1993). at <https://purl.stanford.edu/dm643ry3036>
Flager, F., Adya, A. & Haymaker, J. AEC Multidisciplinary Design Optimization: Impact of High Performance Computing. (2009). at <https://purl.stanford.edu/rb200qx5476>
Shoham, Y. Agent-Oriented Programming. (1990). at <https://purl.stanford.edu/dj741bx2661>
Barg, S., Flager, F. & Fischer, M. An Analytical Method to Estimate the Total Installed Cost of Steel Frames during Early Design. (2017). at <https://purl.stanford.edu/yb503ws4475>
Gane, V., Haymaker, J., Fischer, M. & Bazjanac, V. Application of Design Scenarios Methodology to Evaluate the Effectiveness of Transparent Parametric Design Spaces. (2011). at <https://purl.stanford.edu/pp624fk9938>
Winstanley, G., Chacon, M. A. & Levitt, R. E. The Application of Model-Based Planning Technology to Full-Scale Construction Projects. (1992). at <https://purl.stanford.edu/bh273xp2834>
Koskela, L. Application of the New Production Philosophy to Construction. (1992). at <https://purl.stanford.edu/kh328xt3298>
Law, K. H. & Barsalou, T. Applying a Semantic Structural Model for Engineering Design. (1989). at <https://purl.stanford.edu/pc102tg3656>
Ichioka, Y., Teicholz, P. & Chinowsky, P. An Approach to Automated Architectural Floor Layout Generation with Case-Based Reasoning. (1991). at <https://purl.stanford.edu/zg998zb3669>
El-Bibany, H. Architecture for Human-Computer Design, Management and Coordination in a Collaborative AEC Environmentac. (1992). at <https://purl.stanford.edu/tx139zs2717>
Dong, N. Automated Look-Ahead Schedule Generation and Optimization for the Finishing Phase of Complex Construction Projects. (2012). at <https://purl.stanford.edu/bq677kv8158>
Yee, P. Ho. An Automated Method to Identify Occupant Interactions in Renovations of Occupied Buildings. (2009). at <https://purl.stanford.edu/yr010gb4669>
Riitahuhta, A. Automatic Selection of Components (ASCO). (1990). at <https://purl.stanford.edu/xn445hf8679>
Mahoney, J. J. & C. Tatum, B. Barriers to CADD in the AEC Industry. (1990). at <https://purl.stanford.edu/kq567vf4968>
Russel, W. & Teicholz, P. Barriers to Electronic Data Exchange in the A/E/C Industry. (1993). at <https://purl.stanford.edu/bd299dp9861>
Gane, V. & Haymaker, J. Benchmarking Conceptual High-Rise Design Processes. (2008). at <https://purl.stanford.edu/xm514gk6039>
Behrman, W. Best Practices for the Development and Use of XML Data Interchange Standards. (2002). at <https://purl.stanford.edu/dc516zk9688>
Welle, B., Rogers, Z. & Fischer, M. BIM-Centric Daylight Profiler for Simulation (BDP4SIM): A Methodology for Automated Product Model Decomposition and Recomposition for Climate-Based Daylighting Simulation. (2012). at <https://purl.stanford.edu/vw132vb9883>

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