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MONTE CARLO STUDY OF HOLDING FORCES FOR TANK CARS ON GRADES

机译:Monte Carlo在成绩上举行坦克汽车的努力研究

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This paper describes a numerical procedure to examine the holding forces needed to secure a cut of railroad tank cars staged on a grade during loading and unloading operations. Holding forces are created by applying emergency brake systems and blocking (or chocking) wheels. Moreover, the holding force to secure the cut of cars must be greater than or equal to the gravitational component of force acting on the cars that is parallel to the grade. Engineering statics are applied to examine the forces acting on the individual cars resting on an inclined plane. An equation to calculate holding force is developed that includes two types of factors: constants (i.e. nonrandom or deterministic factors) and probabilistic variables (i.e. factors with inherent uncertainty or randomness). The numerical procedure applies Monte Carlo simulation techniques to study the uncertainties in the engineering analysis. The Monte Carlo approach is well suited to study the uncertainties and inherent variability associated with some of these factors. The factors assumed to be deterministic in this procedure are: steepness of the grade, total number of cars on the grade, number of cars with hand brakes applied, number of chocked wheels, and weight of the tank cars. The factors treated as random variables are: tension in the hand brake chain, mechanical efficiency in the linkages of the brake system, coefficient of friction between the brake pad and the wheel, and the coefficient of friction between the chocks and the rail. Probability distributions are assumed for each of the random variables. In addition, a probabilistic sensitivity analysis is conducted to examine the relative effect of the random variables on the reliability of the braking system to secure the cut of tank cars on a grade.
机译:本文介绍了一种数值手术,以检查在装载和卸载操作期间固定在等级上分阶段上延伸的铁路罐车所需的保持力。通过应用紧急制动系统和阻挡(或塞管)轮来创建持有力。此外,固定汽车切割的保持力必须大于或等于作用在与等级平行的汽车上的力的重力分量。应用工程估计来检查作用在倾斜平面上的单个汽车上的力量。开发了计算保持力的等式,包括两种类型的因素:常数(即非谐波或确定性因素)和概率变量(即具有固有的不确定性或随机性的因素)。数值手术应用Monte Carlo仿真技术来研究工程分析中的不确定性。 Monte Carlo方法非常适合研究与一些因素相关的不确定性和固有的可变性。在此程序中假设是确定性的因素是:等级陡峭,汽车等级的总数,用手制动的汽车数量,塞车车轮数量和坦克汽车的重量。将作为随机变量的因素是:手动制动链中的张力,制动系统的连杆中的机械效率,制动垫和轮子之间的摩擦系数,以及楔子和轨道之间的摩擦系数。对于每个随机变量,假设概率分布。此外,进行了概率灵敏度分析,以检查随机变量对制动系统可靠性的相对效果,以固定在等级上的罐车切割。

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