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Monitoring Preload Performance

机译:监视预加载性能

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摘要

Reconstruction of State Highway 29 (STH 29) in north central Wisconsin was complicated by two separate deposits of compressible peat and organic silt within the highway right-of-way. The depeosits ranged from about 3 to 11 meters in thickness over about 900 meters of the reconstruction alignment. Excavation and removal of the peat and organic silt was evaluated, but was determined to be cost prohibitive. Preloading was determined to be a cost effective and environmentally friendly solution, and was implemented at both deposits to induce the expected consolidation and long-term secondary compression of the final highway embankment and pavement sections. This paper presents the design, instrumentation, and rheological modeling procedures used to complete the project.
机译:威斯康星州中北部的29号州际公路(STH 29)的重建工作由于公路通行权内的两个可压缩泥炭和有机淤泥的单独沉积而变得复杂。在重建路线的约900米范围内,垂线的厚度范围从约3米到11米不等。对泥炭和有机淤泥的开挖和去除进行了评估,但确定成本高昂。预加载被认为是一种经济高效且环保的解决方案,并且在两个沉积物上均进行了预加载,以诱导最终公路路堤和人行道路段的预期固结和长期二次压缩。本文介绍了用于完成该项目的设计,仪器和流变建模程序。

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