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INNOVATIVE DESIGN AND CONSTRUCTION TECHNOLOGIES FOR BUILDING INTERNAL PARTITIONS FOR SUPER HI-RISE BUILDINGS ON AN INTERNATIONAL BASIS

机译:国际上超高层建筑内部隔断建筑的创新设计与施工技术

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Construction of high rise buildings is no longer a local industry due to improved methods of transportation and information exchange which means the Global Village is becoming a reality. Moreover, the design and construction functions for very large hi-rise buildings tend to draw from the best practices and technology available on a worldwide basis because of the scale of the investment and the stakes involved. Witness the recent decisions to proceed with two of the tallest buildings in the world - one in Makkah, Saudi Arabia, and the other in Dubai, United Arab Emirates. In attempting to produce a quality product which meets capital cost and time expectations as well as life cycle expectations, amongst a number of challenges that need to be addressed, two very important ones are (ⅰ) how do firms gather and manage knowledge pertaining to new concepts in design and technological developments in terms of materials, physical systems, information systems, management systems, and construction methods in a way that makes it readily accessible to designers and constructors alike; and, (ⅱ) what factors must be considered ( e.g. logistics, codes, cultural norms, etc.) when assessing the suitability of these concepts and technologies for a given building and geographical context? This paper explores these questions by using a case study pertaining to the methods of design and construction of washrooms in the Middle East, an area of the world where the frontier of hi-rise buildings in terms of size and quality of systems is constantly being pushed. Current solutions adopted for building these elements constitute a significant part of the total cost of high rise building construction and have a direct impact on the speed of delivery. In this paper, we describe the rationale behind current practice, and how solutions used elsewhere can be adapted to meet local needs and sensitivities. We then generalize our discussion to describe elements of a framework currently being developed as part of a research program that allows design and construction technologies to be classified and represented in a way that facilitates their speedy assessment as to technical feasibility, environmental feasibility (including social norms), and impact on time, cost, and quality performance. Traditionally, high-rise building wet areas (e.g. washrooms and toilets) are made of blocks, plastering and in-situ finishes and enjoy social acceptance in the Middle East. Such acceptance has created a cultural barrier that inhibits the use of wet areas which are made of moisture resistant dry-wall partitions and in-situ finishing works which are easier and faster to install with minimal cleaning after work completion. The challenges of the traditional method include wet activities with low productivity rate, longer construction and curing times, large crew sizes, and logistical challenges in terms of materials handling and storage. The question becomes: what other technologies exist that can provide the sense of permanence and quality offered by existing partition systems, while addressing the objectives of cost, speed of delivery and quality.
机译:由于交通和信息交换方式的改善,高层建筑的建设不再是当地的行业,这意味着全球村正在成为现实。此外,由于投资规模和涉及的利益,超大型高层建筑的设计和建造功能倾向于借鉴全球范围内的最佳实践和技术。见证最近决定进行世界上最高的两座建筑物的决定-一处在沙特阿拉伯的麦加,另一处在阿拉伯联合酋长国的迪拜。在尝试生产满足资本成本和时间预期以及生命周期预期的高质量产品时,在需要解决的众多挑战中,有两个非常重要的挑战:(ⅰ)企业如何收集和管理与新产品有关的知识从材料,物理系统,信息系统,管理系统和构造方法等方面考虑设计和技术发展的概念,使设计人员和构造人员均易于访问; (ⅱ)在评估这些概念和技术对于特定建筑物和地理环境的适用性时,必须考虑哪些因素(例如物流,法规,文化规范等)?本文通过一个案例研究来探讨这些问题,该案例研究涉及中东地区的洗手间的设计和建造方法,该地区在世界范围内不断推动着高层建筑在规模和系统质量方面的前沿。用于建造这些构件的当前解决方案构成了高层建筑总成本的很大一部分,并直接影响了交付速度。在本文中,我们描述了当前实践的基本原理,以及如何调整其他地方使用的解决方案以满足当地的需求和敏感性。然后,我们将讨论进行概括,以描述当前作为研究计划一部分而开发的框架的要素,该框架允许对设计和建筑技术进行分类和表示,从而有助于其对技术可行性,环境可行性(包括社会规范)进行快速评估。 ),并影响时间,成本和质量效果。传统上,高层建筑的潮湿区域(例如洗手间和洗手间)是由砌块,抹灰和原位饰面制成的,并在中东得到社会认可。这种认可产生了文化障碍,阻碍了使用由防潮干墙隔板制成的潮湿区域和就地完成工作,这些工作更容易,更快速地安装,并且在工作完成后只需很少的清洁。传统方法的挑战包括生产率低的湿作业,更长的施工和固化时间,庞大的工作人员以及在物料搬运和存储方面的后勤挑战。问题就变成了:存在哪些其他技术可以提供现有分区系统提供的持久性和质量,同时又可以解决成本,交付速度和质量的目标。

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