基于最大准备度模块化元素应用的设计特征分析

A. Rybakova
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引用次数: 4

摘要

介绍。20世纪中叶,技术进步使得尽可能扩大建筑物的建筑要素成为可能,这导致了新的工业建筑体系的发展,提高了生产率。然而,到目前为止,这个问题还没有完全解决,仍然具有现实意义。模块化建筑目前还没有得到足够广泛的推广,但许多设计专家预测,在不久的将来,它将得到广泛的推广。阻碍模块化建筑发展的因素是模块化设计领域理论基础的缺乏,以及与传统设计方法的显著差异。材料和方法。这项工作的目的是在研究规范性文件、俄罗斯和国外研究工作以及实施项目的基础上发展模块化设计的理论基础。任务是确定最大准备的模块化元素的基本特征:模块化设计的原则,模块化元素的参数,模块化系统的优缺点,设计过程的特征。结果。模块化设计的理论基础包括基本概念、原理和特点;以信息模型的开发为例,描述了概念设计过程;提出了模块化构件的最大准备度参数,分析了模块化构件对建筑设施生命周期的影响。结论。所提出的基于最大准备度的模块化元素和模块化元素参数的设计原则系统使我们能够将已建立的模块化理论方面系统化,从而使模块化建筑成为可能。作者制定了一种新的设计方法,它影响整个生命周期,并为工程活动和科学研究的新领域提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of design features based on the application of modular elements of maximum readiness
Introduction. In the middle of the 20th century, technological progress made it possible to enlarge the building elements of buildings as much as possible, which led to the development of new industrial construction systems and increased production rates. However, to date, the issue has not been completely resolved and remains relevant. Modular construction is not sufficiently widely spread today, but many design experts predict its widespread introduction in the near future. The factor that decelerates the development of modular construction is the lack of theoretical foundations in the field of modular design, as well as significant differences from traditional design approach. Materials and methods. The purpose of this work is to develop the theoretical fundamentals of modular design based on the study of regulatory documents, Russian and foreign sources of research works, as well as the implemented projects. The task is to determine the fundamental features of modular elements of maximum readiness: principles of modular design, parameters of a modular element, advantages and disadvantages of a modular system, features of the design processes. Results. The theoretical basis of modular design includes basic concepts, principles and features; the conceptual design process is described using the case of development of an information model; parameters of modular elements of maximum readiness are presented, and the influence of modular items on the life cycle of a construction facility is analyzed. Conclusions. The presented system of principles of design based on modular elements of maximum readiness and parameters of modular elements allow us to systematize the established theoretical aspects of modularity, which make it possible to make modular buildings. The author formulates a new approach to design, which affects the entire life cycle and serves as the basis for new areas of engineering activities and scientific research.
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