The construction process for pre-stressed ultra high performance concrete communication tower.

Towers are important structures for installing radio equipment to emit electromagnetic waves that allow radio, television and/or mobile communications to function. Feasibility, cost, and speed of the construction are considered in the design process as well as providing stability and functionality f...

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Main Authors: Voo Yen Lai, Farzad Hejazi, Sarah Saleem
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0238654
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spelling doaj-36f3d973e32443b8ac2b49cbe1e893a62021-03-04T11:52:49ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-011511e023865410.1371/journal.pone.0238654The construction process for pre-stressed ultra high performance concrete communication tower.Voo Yen LaiFarzad HejaziSarah SaleemTowers are important structures for installing radio equipment to emit electromagnetic waves that allow radio, television and/or mobile communications to function. Feasibility, cost, and speed of the construction are considered in the design process as well as providing stability and functionality for the communication tower. This study proposes the new design for construction of segmental tubular section communication tower with ultra-high-performance fibre concrete (UHPFC) material and prestress tendon to gain durability, ductility, and strength. The proposed mix design for UHPFC in this study which used for construction of communication tower is consisted of densified Silica Fume, Silica fine and coarse Sand and hooked-ends Steel Fiber. The prestressed tendon is used in the tower body to provide sufficient strength against the lateral load. The proposed design allows the tower to be built with three precast segments that are connected using bolts and nuts. This paper presents a novel method of construction and installation of the communication tower. The advantages of proposed design and construction process include rapid casting of the precast segment for the tower and efficient installation of segments in the project. The use of UHPFC material with high strength and prestress tendon can reduce the size and thickness of the tower as well as the cost of construction. Notably, this material can also facilitate the construction and installation procedure.https://doi.org/10.1371/journal.pone.0238654
collection DOAJ
language English
format Article
sources DOAJ
author Voo Yen Lai
Farzad Hejazi
Sarah Saleem
spellingShingle Voo Yen Lai
Farzad Hejazi
Sarah Saleem
The construction process for pre-stressed ultra high performance concrete communication tower.
PLoS ONE
author_facet Voo Yen Lai
Farzad Hejazi
Sarah Saleem
author_sort Voo Yen Lai
title The construction process for pre-stressed ultra high performance concrete communication tower.
title_short The construction process for pre-stressed ultra high performance concrete communication tower.
title_full The construction process for pre-stressed ultra high performance concrete communication tower.
title_fullStr The construction process for pre-stressed ultra high performance concrete communication tower.
title_full_unstemmed The construction process for pre-stressed ultra high performance concrete communication tower.
title_sort construction process for pre-stressed ultra high performance concrete communication tower.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description Towers are important structures for installing radio equipment to emit electromagnetic waves that allow radio, television and/or mobile communications to function. Feasibility, cost, and speed of the construction are considered in the design process as well as providing stability and functionality for the communication tower. This study proposes the new design for construction of segmental tubular section communication tower with ultra-high-performance fibre concrete (UHPFC) material and prestress tendon to gain durability, ductility, and strength. The proposed mix design for UHPFC in this study which used for construction of communication tower is consisted of densified Silica Fume, Silica fine and coarse Sand and hooked-ends Steel Fiber. The prestressed tendon is used in the tower body to provide sufficient strength against the lateral load. The proposed design allows the tower to be built with three precast segments that are connected using bolts and nuts. This paper presents a novel method of construction and installation of the communication tower. The advantages of proposed design and construction process include rapid casting of the precast segment for the tower and efficient installation of segments in the project. The use of UHPFC material with high strength and prestress tendon can reduce the size and thickness of the tower as well as the cost of construction. Notably, this material can also facilitate the construction and installation procedure.
url https://doi.org/10.1371/journal.pone.0238654
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