基于TRIZ理论的双井纵、横电梯创新设计

Jiwen Chen, Xin Li, Hong-Juan Yang, Wang Chen
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引用次数: 2

摘要

产品创新是指创造新产品或重新设计产品功能的过程[1]。为了帮助工程师快速产生创新的想法来完成复杂的设计,出现了许多创新的方法。常用的创新方法有两大类:直观方法和逻辑方法。直觉方法不需要预先分析,而是通过激发人类休眠的思维过程来产生创新的想法[2]。因为直觉通常是发散的,所以通常会出现许多弯路。逻辑方法以科学和工程原理为基础,必须对大量已有的解进行分析,才能系统地解决一个问题。发明问题解决理论(TRIZ)由Ahshuler提出,他分析了全球200多万件高水平专利,提出了基于多学科原理的发明、创造和技术创新理论[3]。由于TRIZ理论具有高度的抽象性,可以在不同的领域反复应用,解决不同的问题,所以现在作为一种科学理论得到了广泛的应用。电梯作为建筑中的垂直运输工具,可以解决高层建筑中的垂直客运问题,得到了越来越广泛的应用[4]。电梯在现代高层建筑中是不可缺少的,它高效、优质地为用户服务。随着经济的快速发展和城市人口的快速增长,现代建筑规模不断扩大,建筑跨度不断增大[5]。传统的电梯只能解决垂直运输的问题。乘客在离开电梯后仍然需要花时间步行到目的地。由于电梯不能水平移动,这就限制了不同竖井的电梯之间的连接。1996年,奥的斯公司首次提出了奥德赛tm电梯系统,该系统在垂直方向上采用传动和牵引驱动,在水平方向上采用直线电机驱动,实现电梯的横向移动[6]。该系统主要用于解决高层建筑不同截面的电梯换乘问题,可用于提高大跨度建筑中乘客的出行效率。[7],基于TRIZ理论的双井纵、横电梯绳索创新设计[j],陈建文1,2,* -李欣1,2 -杨红娟3 -王晨1,2 .山东建筑大学,山东省绿色建筑协同创新中心2山东建筑大学,机电工程学院3山东建筑大学,信息与电气工程学院
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative Design of a Vertical and Transverse Elevator in Double Shafts, Based on TRIZ Theory
Product innovation refers to the process of creating a new product or redesigning the function of a product [1]. To help engineers quickly generate innovative ideas to complete complex designs, many innovative methods have emerged. Commonly used innovative methods fall into two categories: intuitive methods and logical methods. Intuitive methods do not involve pre-analysis but produce innovative ideas by stimulating a dormant human thought process [2]. Because intuition is usually divergent, many detours generally occur. The logical method is based on the principles of science and engineering, and a large number of existing solutions must be analysed to systematically solve a problem. The theory of inventive problem solving (TRIZ) was proposed by Ahshuler, who analysed more than 2 million highlevel patents worldwide and proposed the involving invention, creation and technological innovation based on the principles of multiple disciplines [3]. Because TRIZ theory is highly abstract and can be repeatedly applied in different fields to solve different problems, it is now widely used as a scientific theory. Elevators, as vertical transport tools in buildings, can solve the problem of vertical passenger transport in high-rise buildings and have been increasingly widely used [4]. Elevators are indispensable in modern highrise buildings and serve users with high efficiency and quality. With the rapid development of the economy and the rapid growth of the urban population, the scale of modern buildings is expanding, and the span of buildings is increasing [5]. Traditional elevators can only solve the problem of vertical transportation. Passengers still need to spend time walking to their destination after leaving the elevator. Because an elevator cannot move horizontally, it restricts the connections between different elevators with different shafts. In 1996, the Otis Company first proposed the OdysseyTM elevator system, which uses transmission and traction drives in the vertical direction and a linear motor drive in the horizontal direction to achieve lateral elevator movement [6]. This system is mainly used to solve the transfer problems of elevators in different sections of high-rise buildings and can be applied to improve the mobility efficiency of passengers in large-span buildings. In [7], a ropeInnovative Design of a Vertical and Transverse Elevator in Double Shafts, Based on TRIZ Theory Chen, J. – Li, X. – Yang, H. – Wang, C. Jiwen Chen1,2,* – Xin Li1,2 – Hongjuan Yang3 – Chen Wang1,2 1Shandong Jianzhu University, Co-Innovation Center for Green Building of Shandong Province, China 2Shandong Jianzhu University, School of Mechanical and Electronic Engineering, China 3Shandong Jianzhu University, School of Information and Electrical Engineering, China
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