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COMPARISON OF TWO MODELING APPROACHES FOR SIMULATING THE CONSOLIDATION AND DESICCATION BEHAVIOR OF DREDGED FILL

机译:模拟填充泥浆的固结和干燥行为的两种建模方法的比较

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1 Chief,Operations Office,U.S.Army Corps of Engineers,Detroit District,P.O.Box 1027,Detroit,MI 48231. Douglas.j.zande@usace.army.mil 2 Physical Scientist,U.S.Army Corps of Engineers,Detroit District,P.O.Box 1027,Detroit,MI 48231. Pam.Horner@usasce.army.mil. This paper presents a comparison of two modeling approaches that can be used to predict the consolidation and desiccation behavior of dredged material,using a case study of Poplar Island, Chesapeake Bay.As part of the Site Development Plan(SDP)for Poplar Island,it is necessary to accurately predict the behavior of hydraulically placed dredged material soon after placement, as well as several years following placement.The accuracy of the prediction is critical because the success of the intertidal wetland portion of the site is highly sensitive to final elevations.rn This paper will present the results of comparative analyses using the U.S.Army Corps of Engineers’computer model PSDDF,and the University of Colorado computer model CONDES. In the PSDDF analyses,the desiccation was modeled simultaneously with the consolidation,but the settlement results are computed separately for each process.In the CONDES analyses the settlements from each component cannot be separated in a single run.Thus,in order to facilitate the comparison,CONDES analyses were performed initially for consolidation only and subsequently for consolidation and desiccation simultaneously.rnThe results indicate that both models,PSDDF and CONDES,are comparable tools to predict the consolidation and desiccation processes of fine-grained dredged material.When the same conditions are imposed in both models the results are quite similar.This is not a surprise for the consolidation portion of the process,as both models are based on the same theory.For the desiccation analysis the crucial parameter is the effective desiccation rate.As long as that rate is the same for both models,similar results should be obtained.The effective desiccation rate in PSDDF is obtained as a result of the water balance calculation with a number of empirical factors affecting the outcome.In CONDES,the effective desiccation rate is the top boundary condition and must be specified as input data.For the CONDES analyses the site conditions affect only the boundary conditions for the layer,while the quantities within the layer(void ratio and porewater pressure)are obtained in the solution process.
机译:1底特律区美国工程兵团运营办公室主任,密歇根州底特律市POBox 1027,密歇根州48231。Douglas.j.zande@usace.army.mil 2底特律区美国工程兵团物理科学家,POBox 1027,底特律,MI48231。Pam.Horner@usasce.army.mil。本文以切萨皮克湾白杨岛为例,对两种可用来预测疏ged材料的固结和干燥行为的建模方法进行了比较。作为白杨岛场地开发计划的一部分必须准确地预测水力疏dr材料在放置后以及放置后数年的行为。预测的准确性至关重要,因为该地点的潮间带湿地部分的成功对最终海拔高度敏感。本文将介绍使用USArmy Corps of Engineers的计算机模型PSDDF和科罗拉多大学的计算机模型CONDES进行比较分析的结果。在PSDDF分析中,将干燥与固结同时进行建模,但对每个过程分别计算沉降结果。在CONDES分析中,无法一次性分离出每个组件的沉降。因此,为了便于比较结果表明,PSDDF和CONDES这两种模型都是可预测细粒疏material材料固结和干燥过程的可比较工具。这两个模型都基于相同的理论,这对于过程的合并部分并不感到意外。对于干燥分析,关键参数是有效干燥速率。两种模型的速率相同,应该得到相似的结果。这是水平衡计算的结果,并且有许多影响结果的经验因素。在CONDES中,有效干燥率是最高边界条件,必须指定为输入数据。对于CONDES分析,场地条件仅影响边界在固溶过程中获得层的条件,同时获得层内的量(空隙率和孔隙水压力)。

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