The Use of Low-Density Cellular Concrete (LDCC) in Annular Fill Applications: Kaneohe-Kailua Sewer Tunnel Case Study - RETC2021

Society for Mining, Metallurgy & Exploration
Brian Dorwart Lori M. K. Kahikina Don Painter Nico Sutmoller
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
6
File Size:
559 KB
Publication Date:
Jun 13, 2021

Abstract

This paper will address the feasibility of using low-density cellular concrete (LDCC) for an annular fill application where project conditions required pumping the LDCC material for distances of up to 16,000 feet. These conditions occurred during construction of the Kaneohe-Kailua Sewer Tunnel in Oahu, Hawaii, between 2014 and 2018. Located on the island of Oahu, Hawaii, this 13-foot-diameter rock tunnel extends for approximately three miles from the Kaneohe Pre-Treatment Facility to the Kailua Regional Wastewater Treatment Plant. The tunnel was built to convey wastewater and provide temporary storage for peak wet weather flows entering the collection system, thereby reducing the potential for uncontrolled discharges. LDCC was chosen for this project partly due to its environmental benefits, which were essential for an application contiguous to the inland marine and coastal waters of the Pacific Ocean. In order to ensure optimal performance characteristics—compressive strength (with a requirement of 300 psi at 56 days), flowability, and light weight—were achieved, extensive testing of various LDCC products and mix designs was completed. The testing measured the initial set time of the LDCC as well as the compressive strength needed to reduce the quantity of grout lifts required for the project.
Citation

APA: Brian Dorwart Lori M. K. Kahikina Don Painter Nico Sutmoller  (2021)  The Use of Low-Density Cellular Concrete (LDCC) in Annular Fill Applications: Kaneohe-Kailua Sewer Tunnel Case Study - RETC2021

MLA: Brian Dorwart Lori M. K. Kahikina Don Painter Nico Sutmoller The Use of Low-Density Cellular Concrete (LDCC) in Annular Fill Applications: Kaneohe-Kailua Sewer Tunnel Case Study - RETC2021. Society for Mining, Metallurgy & Exploration, 2021.

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