4D optimization of intra-urban cut-and-cover method

Research output: ThesisMaster's Thesis

Standard

4D optimization of intra-urban cut-and-cover method. / Mattner, Kristoph.
2022.

Research output: ThesisMaster's Thesis

Harvard

Mattner, K 2022, '4D optimization of intra-urban cut-and-cover method', Dipl.-Ing., Montanuniversitaet Leoben (000).

APA

Mattner, K. (2022). 4D optimization of intra-urban cut-and-cover method. [Master's Thesis, Montanuniversitaet Leoben (000)].

Bibtex - Download

@mastersthesis{afb45e6cac154510972217b571f91abe,
title = "4D optimization of intra-urban cut-and-cover method",
abstract = "The cut-and-cover method is a widely known and often used construction method that limits the time a construction pit is open to the surface. It can be used for different civil engineering construction projects in both densely populated and rural areas. In intra-urban areas it is often the only option to construct an underground building due to limited space, adjacent buildings and negatively affected third parties. Thus, shortening its construction time even further is of great importance to employers, construction companies and those affected by the construction pit. This thesis presents a four-dimensional simulation approach that models, simulates and visualizes the construction of an underground building using the cut-and-cover method. The approach is based on a simple framework using software packages already used in the construction industries, allowing an easy and fast replication of the simulation. Several iterative optimizations are performed, identifying the key aspects that affect the construction time, thereby reducing the total construction duration by up to 14 %. Beside the temporal improvement, additional use-cases of the four-dimensional simulation are presented. Detailed possibilities to expand the analysis are described, providing an overview of data necessary to achieve improvements regarding construction time, use of labor and material and costs within one simulation.",
keywords = "cut-and-cover method, 4D simulation, building information modeling, underground construction, Deckelbauweise, 4D Simulation, Building Information Modeling, Tiefbau",
author = "Kristoph Mattner",
note = "embargoed until 28-02-2027",
year = "2022",
language = "English",
school = "Montanuniversitaet Leoben (000)",

}

RIS (suitable for import to EndNote) - Download

TY - THES

T1 - 4D optimization of intra-urban cut-and-cover method

AU - Mattner, Kristoph

N1 - embargoed until 28-02-2027

PY - 2022

Y1 - 2022

N2 - The cut-and-cover method is a widely known and often used construction method that limits the time a construction pit is open to the surface. It can be used for different civil engineering construction projects in both densely populated and rural areas. In intra-urban areas it is often the only option to construct an underground building due to limited space, adjacent buildings and negatively affected third parties. Thus, shortening its construction time even further is of great importance to employers, construction companies and those affected by the construction pit. This thesis presents a four-dimensional simulation approach that models, simulates and visualizes the construction of an underground building using the cut-and-cover method. The approach is based on a simple framework using software packages already used in the construction industries, allowing an easy and fast replication of the simulation. Several iterative optimizations are performed, identifying the key aspects that affect the construction time, thereby reducing the total construction duration by up to 14 %. Beside the temporal improvement, additional use-cases of the four-dimensional simulation are presented. Detailed possibilities to expand the analysis are described, providing an overview of data necessary to achieve improvements regarding construction time, use of labor and material and costs within one simulation.

AB - The cut-and-cover method is a widely known and often used construction method that limits the time a construction pit is open to the surface. It can be used for different civil engineering construction projects in both densely populated and rural areas. In intra-urban areas it is often the only option to construct an underground building due to limited space, adjacent buildings and negatively affected third parties. Thus, shortening its construction time even further is of great importance to employers, construction companies and those affected by the construction pit. This thesis presents a four-dimensional simulation approach that models, simulates and visualizes the construction of an underground building using the cut-and-cover method. The approach is based on a simple framework using software packages already used in the construction industries, allowing an easy and fast replication of the simulation. Several iterative optimizations are performed, identifying the key aspects that affect the construction time, thereby reducing the total construction duration by up to 14 %. Beside the temporal improvement, additional use-cases of the four-dimensional simulation are presented. Detailed possibilities to expand the analysis are described, providing an overview of data necessary to achieve improvements regarding construction time, use of labor and material and costs within one simulation.

KW - cut-and-cover method

KW - 4D simulation

KW - building information modeling

KW - underground construction

KW - Deckelbauweise

KW - 4D Simulation

KW - Building Information Modeling

KW - Tiefbau

M3 - Master's Thesis

ER -