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提出了体系目标的概念,分析建立了战场体系目标的典型结构,并探讨了系统目标毁伤效果评估模型;最后给出了战场体系目标毁伤效果评估的方法步骤。 相似文献
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通过建立水下航行体空间的操纵运动数学模型,运用Visual C++设计开发水下航行体操纵运动预报系统,对水下航行体水平面、垂直面及空间典型操纵运动进行数值预报,数值模拟结果合理,能够较为全面地预报水下航行体的空间操纵运动。 相似文献
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Terry L. Friesz Taeil Kim Changhyun Kwon Matthew A. Rigdon 《Transportation Research Part B: Methodological》2011,45(1):176-207
In this paper we present a dual-time-scale formulation of dynamic user equilibrium (DUE) with demand evolution. Our formulation belongs to the problem class that Pang and Stewart (2008) refer to as differential variational inequalities. It combines the within-day time scale for which route and departure time choices fluctuate in continuous time with the day-to-day time scale for which demand evolves in discrete time steps. Our formulation is consistent with the often told story that drivers adjust their travel demands at the end of every day based on their congestion experience during one or more previous days. We show that analysis of the within-day assignment model is tremendously simplified by expressing dynamic user equilibrium as a differential variational inequality. We also show there is a class of day-to-day demand growth models that allow the dual-time-scale formulation to be decomposed by time-stepping to yield a sequence of continuous time, single-day, dynamic user equilibrium problems. To solve the single-day DUE problems arising during time-stepping, it is necessary to repeatedly solve a dynamic network loading problem. We observe that the network loading phase of DUE computation generally constitutes a differential algebraic equation (DAE) system, and we show that the DAE system for network loading based on the link delay model (LDM) of Friesz et al. (1993) may be approximated by a system of ordinary differential equations (ODEs). That system of ODEs, as we demonstrate, may be efficiently solved using traditional numerical methods for such problems. To compute an actual dynamic user equilibrium, we introduce a continuous time fixed-point algorithm and prove its convergence for effective path delay operators that allow a limited type of nonmonotone path delay. We show that our DUE algorithm is compatible with network loading based on the LDM and the cell transmission model (CTM) due to Daganzo (1995). We provide a numerical example based on the much studied Sioux Falls network. 相似文献
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可回收锚索锚固段应力分布及锚固长度研究 总被引:2,自引:0,他引:2
以深圳地铁3号线停车场基坑工程为背景,根据可回收锚索锚固段受力状态,讨论锚索的锚固段黏结应力分布规律.研究表明,可回收锚索的黏结应力沿锚固段并非均匀分布,而是呈指数曲线形式分布,在此基础上提出基于锚固段黏结应力实际分布状态进行锚固段长度设计的方法,并应用到锚索支护参数设计中.工程实践表明,所提出的锚索锚固段长度设计方法是合理可行的. 相似文献