Quantifying the Impact of Schedule Compression on Labor Productivity for Mechanical and Sheet Metal Contractor

Author:

Chang Chul-Ki1234,Hanna Awad S.1234,Lackney Jeffery A.1234,Sullivan Kenneth T.1234

Affiliation:

1. Research Fellow, Construction and Economy Research Institute of Korea, 71-2 Nonhyundong, Kangnamgu, Seoul, Korea. E-mail: ckchang@cerik.re.kr

2. Professor, Construction Engineering and Management Program Chair, Dept. of Civil and Environmental Engineering, Univ. of Wisconsin–Madison, 2314 Engineering Hall, 1415 Engineering Dr., Madison, WI 53706. E-mail: hanna@engr.wisc.edu

3. Assistant Professor, Dept. of Engineering Professional Development, Univ. of Wisconsin–Madison, Room 825, 432 N. Lake St., Madison, WI 53706. E-mail: lackney@epd.engr.wisc.edu

4. Assistant Professor, Del E. Webb School of Construction, Arizona State Univ., 136 USE, Tempe, AZ 85287. E-mail: Kenneth.sullivan@asu.edu

Publisher

American Society of Civil Engineers (ASCE)

Subject

Strategy and Management,Industrial relations,Building and Construction,Civil and Structural Engineering

Reference15 articles.

1. Improving motivation and productivity on large projects;Borcherding J. D.;J. Constr. Div.,1980

2. Construction Industry Institute (CII). (1990). “Concepts and methods of schedule compression.” Research Rep. No. 6-7 Austin Tex.

3. Haneiko J. B. and Henry W. C. (1991). “Impacts to construction productivity.” Proc. American Power Conf. 897–900.

4. Hanna A. S. (2001). “Quantifying the impact of change orders on electrical and mechanical labor productivity.” Research Rep. No. 158-11 Construction Industry Institute Austin Tex.

5. Heather P. R. (1989). “‘Mathews curve’—A model for evaluating impact.” American Associate of Cost Engineers International Transactions I.4.1–I.4.6.

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