Formation of production structural units within a construction company using the systemic integrated method when implementing high-rise development projects

Author:

Lapidus Azary,Abramov Ivan

Abstract

Development of efficient algorithms for designing future operations is a vital element in construction business. This paper studies various aspects of a methodology required to determine the integration index for construction crews performing various process-related jobs. The main objective of the study outlined in this paper is to define the notion of integration in respect to a construction crew that performs complete cycles of construction and assembly works in order to find the optimal organizational solutions, using the integrated crew algorithm built specifically for that purpose. As seen in the sequence of algorithm elements, it was designed to focus on the key factors affecting the level of integration of a construction crew depending on the value of each of those elements. The multifactor modelling approach is used to assess the KPI of integrated construction crews involved in large-sale high-rise construction projects. The purpose of this study is to develop a theoretical recommendation and a scientific methodological provision of organizational and technological nature to ensure qualitative formation of integrated construction crews to increase their productivity during integrated implementation of multi-task construction phases. The key difference of the proposed solution from the already existing ones is that it requires identification of the degree of impact of each factor, including the change in the qualification level, on the integration index of each separate element in the organizational and technological system in construction (integrated construction crew).

Publisher

EDP Sciences

Reference19 articles.

1. Rulebook SP 48.13330.2011, Organization of Construction. The Updated Edition of Russian Construction Rules SNiP 12-01-2004, 14-19 (2011).

2. Lapidus A., Abramov I., Organizational and process-related design of private low-rise construction projects when developing a calendar plan, Science Bulletin, 4 (2017).

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