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Derivation of a Universal Elevator Round Trip Time Formula under Up-peak Traffic for the Case of Four Special Conditions

机译:四种特殊情况下在高峰交通情况下通用电梯往返时间公式的推导

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The design of vertical transportation systems still heavily relies on the calculation of the round trip time (x). The round trip time (x) is defined as the average time taken by an elevator to complete a full trip around a building. There are currently two methods for calculating the round trip time: the conventional analytical calculation method; and the Monte Carlo simulation method. The conventional analytical method is based on calculating the expected number of stops and the expected highest reversal floor and then substituting the values in the main formula for the round trip time. This method makes some assumptions as to the existence of some special conditions (such as equal floor heights and a single entrance). Where these assumptions are not true in a building, this invalidates the use of the analytical formula the use of which will lead to errors in the result. The conventional analytical equation can be further developed to cover some of the special conditions in the building, but they do not cover all of these special conditions and also do not cover combinations of these special conditions. The simplest round trip time equation makes the following assumptions: equal floor heights, one single entrance, equal floor populations and that the rated speed is attained in one floor jump. The case of unequal floor populations can be accounted for by amending the values of the probable number of stops and the highest reversal by using the formulae for the unequal floor population case. The work presented in this paper identifies the four special conditions that are assumed in the classical round trip time analytical equation. It then develops analytical formulae for calculating the round trip time equation for any of the four special conditions or any combination of these conditions under incoming traffic conditions.
机译:垂直运输系统的设计仍然严重依赖于往返时间(x)的计算。往返时间(x)定义为电梯完成建筑物完整行程所需的平均时间。目前,有两种计算往返时间的方法:常规的分析计算方法;和和蒙特卡罗模拟方法传统的分析方法是基于计算预期的停车次数和预期的最高反转层,然后将主公式中的值替换为往返时间。此方法对某些特殊条件(例如相等的地板高度和单个入口)的存在做出一些假设。如果这些假设在建筑物中不成立,则会使分析公式的使用无效,而使用分析公式会导致结果错误。常规分析方程式可以进一步扩展,以涵盖建筑物中的某些特殊条件,但它们不能涵盖所有这些特殊条件,也不能涵盖这些特殊条件的组合。最简单的往返时间方程式进行以下假设:相等的楼层高度,一个单一的入口,相等的楼层人口以及一次跳楼即可达到额定速度。地板人数不相等的情况可以通过使用地板人数不相等情况的公式来修改停靠点的数量和最高反转的值来解决。本文介绍的工作确定了经典往返时间分析方程式中假定的四个特殊条件。然后,它开发了用于计算四种特殊条件中的任何一种或传入交通条件下这些条件的任意组合的往返时间方程的分析公式。

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