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Derivation and verification of the round trip time equation and two performance coefficients for double-deck elevators under incoming traffic conditions

机译:双层电梯在交通状况下往返时间方程和两个性能系数的推导和验证

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摘要

Double-deck elevators are a very efficient mode of transport, especially in high rise buildings. This is due to the fact that they reduce the number of stops in a round trip (leading to a smaller value of the round trip time hence a higher handling capacity) and take up less space of the core of the building leading to high space usage efficiency. This paper provides a comprehensive treatment of the double-deck elevator traffic calculations. It derives an exact set of equations to find the value of the round trip time under incoming traffic conditions, for the cases of equal and unequal floor populations. Moreover, equations have also been derived for two performance coefficients. The first coefficient is called the passenger transfer efficiency coefficient and is representative of the time taken by passenger to alight from the double-deck elevator. The second coefficient is called the coincidental stopping coefficient and is representative of the stopping efficiency. All the results from the equations have been verified using the Monte Carlo simulation method. The method of stepwise verification has been used in order to verify the equations. Under stepwise verification, the equations are derived in stages and each stage is verified against the results from the Monte Carlo Simulation method. The paper ends by suggesting methods of dealing with two of the irregular conditions. Namely two cases are discussed: the case where the number of floors above the main entrance is odd; and the case where the floor heights are unequal and the rated speed is not attained in one double floor journey. Practical application: This paper presents a full set of equations that allow the elevator system designer to fully assess the expected performance of the double-deck elevator system under incoming traffic conditions. These equations (manually or within a software program) can be used to carry out a full design (thus selecting the number, speed, and capacity of the double-deck elevators).
机译:双层电梯是一种非常有效的运输方式,尤其是在高层建筑中。这是由于这样的事实,它们减少了往返行程的停靠次数(导致往返时间的值较小,因此具有更高的处理能力),并且占用了建筑物核心的较少空间,从而导致较高的空间使用率效率。本文对双层电梯的交通量计算提供了全面的处理。对于楼层人口相等和不相等的情况,它推导了一组精确的方程组,以找到传入交通条件下的往返时间值。此外,还针对两个性能系数导出了方程。第一个系数称为乘客转移效率系数,代表乘客从双层电梯下车所需的时间。第二个系数称为同时停止系数,代表停止效率。这些方程式的所有结果均已使用蒙特卡洛模拟方法进行了验证。为了验证方程式,已经使用了逐步验证的方法。在逐步验证中,方程式是分阶段导出的,并且每个阶段都将根据蒙特卡罗模拟方法的结果进行验证。本文最后提出了应对两种不规则条件的方法。即,讨论两种情况:主入口上方的层数为奇数的情况;且楼层高度不相等且在一次双层行程中未达到额定速度的情况。实际应用:本文提出了完整的方程组,使电梯系统设计人员能够在进入的交通状况下全面评估双层电梯系统的预期性能。这些方程式(手动或在软件程序中)可用于执行完整设计(从而选择双层电梯的数量,速度和容量)。

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