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Impact of Increased Travel Speed of a Transportation Set on the Dynamic Parameters of a Mine Suspended Monorail

机译:运输速度增加的行驶速度增加对矿井暂停单轨的动态参数的影响

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摘要

The method of increasing the efficiency of using one of the most common means of auxiliary transport in underground coal mines—suspended monorails—is presented. Increase of velocity is one of the key parameters to improve the efficiency and economical effect related with the underground auxiliary transport. On the other hand, increasing the velocity results in bigger value of force acting on the suspended monorail route and its suspensions. The most important issue during increasing the velocity is ensuring the required safety for the passengers and not overloading the infrastructure. In order to analyze how increasing velocity influences the level of loads of the route suspension and the steel arch loads, the computational model of suspended monorail was developed. The computational model included both the physical part (embedded in the program environment based on the Multi-Body System method) and the components of the monorail control system. Two independent software environments were cooperating with each other through the so-called co-simulation. This model was validated on the base of results obtained on the test stand. Then, the numerical simulations of emergency braking with different values of velocity were conducted, which was not possible with the use of physical objects. The presented study can be used by the suspended monorail’s producers during the designing process, and leads to increase the safety on underground transportation routes.
机译:提高了利用地下煤矿悬浮的单轨的地下煤炭矿床中最常见的辅助运输手段之一提高了效率的方法。速度的增加是提高与地下辅助运输相关的效率和经济效果的关键参数之一。另一方面,增加速度导致较大的力量,作用在悬浮的单轨路线及其悬浮液上。增加速度期间最重要的问题是确保乘客所需的安全性,而不是过载基础设施。为了分析速度如何影响路线悬架的负载水平和钢拱载荷,开发了悬浮单轨的计算模型。计算模型包括物理部分(基于多主体系统方法嵌入程序环境中)和单轨控制系统的组件。通过所谓的共模,两个独立的软件环境彼此合作。该模型在测试台获得的结果基础上验证。然后,进行了具有不同速度值的紧急制动的数值模拟,使用物理对象是不可能的。暂停的单轨机器生产商可以在设计过程中使用所提出的研究,并导致增加地下运输路线的安全性。

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