Underwater Load Transfer Platform in Compressible Marine Clay

Deep Foundations Institute
Mike Senior Philip Shull George Aristorenas Matthew Paquet
Organization:
Deep Foundations Institute
Pages:
11
File Size:
1101 KB
Publication Date:
Oct 31, 2023

Abstract

The Long Slip Canal is located in Hoboken, New Jersey. To reduce flood risk and raise the site for future rail facilities, New Jersey (NJ) Transit constructed an extension to the Combined Sewer Overflow (CSO) and backfilled the canal. A significant challenge of the site was the compressibility of the soft marine clay in the canal during backfilling and impacts to adjacent CSO structures and an existing king-pile wall due to lateral spread of the clay. To limit impacts to the aforementioned structures when backfilling, NJ Transit’s designer specified soil mix ground improvement to be designed by the contractor. The contractor elected to Value Engineer (VE) the ground improvement with a pile-supported concrete Load Transfer Platform (LTP) to be constructed in the wet. Since the VE design bounded structures designed by NJ Transit’s designer, emphasis was placed on the impact of the VE design on adjacent structures. This paper will cover the unique aspects of this VE design and construction, including: comparison of the 2D and 3D Finite Element analyses, use of concrete to function as a LTP for underwater construction, and construction challenges in soft marine clays.
Citation

APA: Mike Senior Philip Shull George Aristorenas Matthew Paquet  (2023)  Underwater Load Transfer Platform in Compressible Marine Clay

MLA: Mike Senior Philip Shull George Aristorenas Matthew Paquet Underwater Load Transfer Platform in Compressible Marine Clay. Deep Foundations Institute, 2023.

Export
Purchase this Article for $25.00

Create a Guest account to purchase this file
- or -
Log in to your existing Guest account