Simulation modeling of weather-sensitive tunnelling construction activities subject to cold weather

Author:

Shahin A.1,AbouRizk S.M.2,Mohamed Y.3,Fernando S.4

Affiliation:

1. CoSyn Technology, 101, 9405-50 Street, Edmonton, AB T6B 2T4, Canada.

2. Hole School of Construction Engineering and Management, Department of Civil and Environmental Engineering, University of Alberta, 3-014 Markin/CNRL Natural Resources Engineering Facility, Edmonton, AB T6G 2W2, Canada.

3. Hole School of Construction Engineering and Management, Department of Civil and Environmental Engineering, University of Alberta, 3-011 Markin/CNRL Natural Resources Engineering Facility, Edmonton, AB T6G 2W2, Canada.

4. Design and Construction, Drainage Services, City of Edmonton, 9803-102A AVE NW, Edmonton, AB T5J 3A3, Canada.

Abstract

In cold regions, weather introduces a great deal of uncertainty to weather-sensitive construction activities, resulting in project schedules that deviate from plans. To maximize construction process productivity, decisions regarding process execution planning and sequence of work need to be made, based on reliable plans and schedules. Faced with winter weather uncertainty in cold regions, this task becomes quite challenging. This paper follows the framework that was proposed in the literature for simulating weather-sensitive construction projects executed under cold weather conditions. In the literature, the authors applied the framework steps to enable simulating and planning pipeline construction activities under severe cold weather. The proposed framework sets out a work breakdown structure of activities to account for and quantify weather impact on the project schedule. The steps outlined in the framework are followed to enable simulating and planning tunnelling construction activities executed under severe cold weather conditions. Relevant simulation findings, which clarify the impact of cold weather events on construction projects and can assist in project planning and decision support, are reported.

Publisher

Canadian Science Publishing

Subject

General Environmental Science,Civil and Structural Engineering

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