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首页> 外文期刊>International Journal of Information Technology >Simulation of Concrete Wall Subjected to Airblast by Developing an Elastoplastic Spring Model in Modelica Modelling Language
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Simulation of Concrete Wall Subjected to Airblast by Developing an Elastoplastic Spring Model in Modelica Modelling Language

机译:用Modelica建模语言开发弹塑性弹簧模型来模拟遭受爆破的混凝土墙

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摘要

To meet the civilizations future needs for safe living and low environmental footprint, the engineers designing the complex systems of tomorrow will need efficient ways to model and optimize these systems for their intended purpose. For example, a civil defence shelter and its subsystem components needs to withstand, e.g. airblast and ground shock from decided design level explosion which detonates with a certain distance from the structure. In addition, the complex civil defence shelter needs to have functioning air filter systems to protect from toxic gases and provide clean air, clean water, heat, and electricity needs to also be available through shock and vibration safe fixtures and connections. Similar complex building systems can be found in any concentrated living or office area. In this paper, the authors use a multidomain modelling language called Modelica to model a concrete wall as a single degree of freedom (SDOF) system with elastoplastic properties with the implemented option of plastic hardening. The elastoplastic model was developed and implemented in the open source tool OpenModelica. The simulation model was tested on the case with a transient equivalent reflected pressure time history representing an airblast from 100 kg TNT detonating 15 meters from the wall. The concrete wall is approximately regarded as a concrete strip of 1.0 m width. This load represents a realistic threat on any building in a city like area. The OpenModelica model results were compared with an Excel implementation of a SDOF model with an elastic-plastic spring using simple fixed timestep central difference solver. The structural displacement results agreed very well with each other when it comes to plastic displacement magnitude, elastic oscillation displacement, and response times.
机译:为了满足文明未来对安全生活和低环境足迹的需求,设计明天复杂系统的工程师将需要有效的方法来为预期目的对这些系统进行建模和优化。例如,民防庇护所及其子系统组件需要承受例如决定性的设计爆炸所引起的爆炸和地面冲击,会在距建筑物一定距离处爆炸。此外,复杂的民防庇护所需要有功能正常的空气过滤器系统,以保护免受有毒气体的侵害,并通过冲击和振动安全的固定装置和连接来提供清洁的空气,清洁的水,热量和电力。在任何集中的居住或办公区域都可以找到类似的复杂建筑系统。在本文中,作者使用一种称为Modelica的多域建模语言将混凝土墙建模为具有弹塑性特性的单自由度(SDOF)系统,并实现了塑料硬化选项。弹塑性模型是在开源工具OpenModelica中开发和实现的。在具有瞬态等效反射压力时间历史的情况下测试了模拟模型,该历史代表了从100千克TNT爆炸到距墙15米处的爆炸。混凝土墙大约被视为1.0 m宽的混凝土条。此负载代表了城市区域内任何建筑物的现实威胁。使用简单的固定时步中央差分求解器,将OpenModelica模型结果与带有弹塑性弹簧的SDOF模型的Excel实现进行比较。当涉及塑性位移大小,弹性振动位移和响应时间时,结构位移结果彼此非常吻合。

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