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Structural Responses of Port Interlocking Concrete Block Pavements Based on A Three-dimensional Mechanistic Model

机译:基于三维力学模型的港口联锁混凝土砌块路面结构响应

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To solve the worldwide problem of structural analysis for port interlocking concrete block pavements, a three dimensional mechanistic model is developed. In particular, the layout pattern of interlocking concrete blocks and its size are carefully considered. A dual spring with uniaxial compression and lateral shearing functions is employed to simulate the interlock effects among concrete blocks. The influences of concrete block sizes, sub-grade reaction modulus and the interlock intensity on the structural responses of port interlocking concrete block pavements are discussed. The deflections and the flexural stresses on base are summarized, by comparison of results based on the model hereof and obtained with a multi-layered elastic system model. The validity of the model is logically verified. The study showed that with increase of the lateral shearing stiffness of dual spring, the elections and the flexural stresses on base decrease slightly, and the size of concrete block has somewhat influence on the structural responses of port interlocking concrete block pavements, whereas the effect of sub-grade reaction modulus on the structural responses is substantial. Therefore, the research can be used as a basis for design of port interlocking concrete block pavements.
机译:为了解决港口互锁混凝土砌块路面结构分析的全球性问题,建立了三维力学模型。特别是,要仔细考虑联锁混凝土砌块的布局方式及其尺寸。具有单轴压缩和横向剪切功能的双弹簧被用来模拟混凝土砌块之间的互锁效应。讨论了混凝土砌块尺寸,路基反应模量和联锁强度对港口联锁混凝土砌块路面结构响应的影响。通过比较基于该模型的结果并利用多层弹性系统模型获得的结果,总结了基础上的挠曲和弯曲应力。该模型的有效性在逻辑上得到了验证。研究表明,随着双弹簧侧向抗剪刚度的增加,地基的变形和挠曲应力略有减小,混凝土砌块的尺寸对港口联锁混凝土砌块路面的结构响应有一定的影响,而混凝土的作用则有所不同。土级反应模量对结构的响应是可观的。因此,该研究可作为港口联锁混凝土砌块路面设计的基础。

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