模块化设计
模块化结构
建筑工程
过程(计算)
质量(理念)
联锁
工程类
更安全的
资源(消歧)
建筑施工
可预测性
土木工程
建筑工程
计算机科学
机械工程
计算机安全
结构工程
哲学
物理
操作系统
认识论
量子力学
计算机网络
作者
Wahid Ferdous,Yu Bai,Tuan Ngo,Wahid Ferdous,Priyan Mendis
标识
DOI:10.1016/j.engstruct.2019.01.061
摘要
Modular construction offers faster and safer manufacturing, better predictability to completion time, superior quality, less workers on site, less resource wastage, and a more environmentally friendly solution than the conventional construction process. Despite having several advantages of modular construction, the private sector still relies heavily on the traditional on-site construction method. To understand the scientific reason behind this situation, this paper critically reviews the recent developments, performances, challenges and future opportunities of modular buildings. Modular constructions are extensively used for low-rise buildings and further attracts strong interest for multi-storey building structures. Prefabricated modules demonstrated satisfactory performance under static, dynamic impact, cyclic, seismic, blast, fire and long-term sustained loading, and offer environmental, economic and social benefits. The acceptance and application of modular construction will further spread with the development of design guidelines, more skilled workers, addressing handing and transportation difficulties, and the development of novel interlocking connections between modules. Recently, composite materials demonstrated high potential to manufacture prefabricated building modules. In Australia, it is expected that modular construction will increase from the current stage of 3% to 5–10% by year 2030.
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