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Computer technologies for concrete airfield pavement design

机译:混凝土飞机场路面设计的计算机技术

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The purpose of the research is to develop formulas, expressions and a computer program for concrete airfield pavement design under the impact of all Airbus 380 main landing gears taking into consideration the design factor of tensile stresses at the top and bottom of a concrete slab. The top-down cracking in concrete slabs has not been directly simulated in structural analysis models used for one- and two-layer concrete airfield pavement design by the Ukrainian Standard. Empirical formulas for the calculation of top tensile stress and the coverages to failure using the criterion of top tensile stress are obtained. Computer program “Aerodrom 380” has been developed for the design of concrete airfield pavement thickness. It provides the required thickness of a concrete slab needed to support an Airbus 380 over a particular subgrade and uses the bottom and top tensile stresses as design factors. “Aerodrom 380” contains a fatigue function for determining the number of coverages to failure permissible for a concrete slab before it has top-bottom and bottom-up cracks. The results obtained with this program are compared to other solutions using the Ukrainian Standard SNiP 2.05.08-85, “LIRA-SAPR”, software and the FAARFIELD computer program. The anticipated life of a concrete airfield pavement calculated using computer program “Aerodrom 380” is about 70% of the FAARFIELD pavement life.
机译:该研究的目的是在考虑到混凝土楼板顶部和底部的拉应力设计因素的情况下,在所有空中客车380主起落架的影响下,开发用于混凝土飞机场路面设计的公式,表达式和计算机程序。乌克兰标准并未在用于一层和两层混凝土飞机场路面设计的结构分析模型中直接模拟混凝土板的自上而下的裂缝。得出了使用顶部拉伸应力准则计算顶部拉伸应力和破坏覆盖率的经验公式。已经开发了计算机程序“ Aerodrom 380”,用于设计飞机场的混凝土路面厚度。它提供了在特定路基上支撑空客380所需的混凝土板的所需厚度,并使用底部和顶部拉伸应力作为设计因素。 “ Aerodrom 380”包含一个疲劳函数,用于确定混凝土板在出现自上而下和自下而上的裂缝之前所允许的破坏次数。通过该程序获得的结果与使用乌克兰标准SNiP 2.05.08-85,“ LIRA-SAPR”,软件和FAARFIELD计算机程序的其他解决方案进行比较。使用计算机程序“ Aerodrom 380”计算出的混凝土飞机场路面的预期寿命约为FAARFIELD路面寿命的70%。

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