@inproceedings{40e23419c696487dbb34363274d734b1,
title = "Developing a Sustainable and Smart Floating Structure Solution for Enhancing Liveability in Hong Kong{\textquoteright}s Crowded Built Environment",
abstract = "This paper presents a vision for a sustainable and smart floating structure solution (S2FS2) in Hong Kong. It highlights the key features of S2FS2, particularly the adoption of a hybrid approach combining both floating structure solutions and conventional land reclamation for the creation of habitable land from the sea. The paper discusses the challenges and opportunities in deploying a hybrid floating development. These include: examining sustainable and cost-effective construction strategies and materials for floating platforms and superstructures in view of the highly corrosive environment in Hong Kong; the optimal designs of multi-purpose floating platforms to carry a range of superstructures designed to meet various spatial programmatic and functional requirements and sites at different water depths; designing easy-to-instal, reliable, and durable connector systems for joining floating modules under the combination of dynamic (impact and fatigue) loading and a corrosive environment; rapid and precise on-site assembly of floating structures situated at different water levels using innovative construction technology and construction management; active control of dynamic structural movements in the sea during construction and service stages, particularly given the frequency of typhoons in Hong Kong; quantifying the ecological and environment impacts; and obtaining social acceptance. This paper also presents the estimated cost savings using a hybrid approach when compared to a conventional land reclamation approach based on the example of a proposed solution for the Kau Yi Chau artificial island (1000 ha).",
keywords = "Construction materials, Construction technology, Cost comparison, Floating city, Hybrid solution",
author = "Zhao, \{Xiao Lin\} and Jianguo Dai and Xiaoli Ding and \{de Graaf-van Dinther\}, Rutger and Wang, \{Chien Ming\} and Brydon Wang",
note = "Publisher Copyright: {\textcopyright} The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2024.; 3rd World Conference on Floating Solutions, WCFS 2023 ; Conference date: 28-08-2023 Through 30-08-2023",
year = "2024",
month = jun,
day = "30",
doi = "10.1007/978-981-97-0495-8\_1",
language = "English",
isbn = "9789819704941",
series = "Lecture Notes in Civil Engineering",
publisher = "Springer Science and Business Media Deutschland GmbH",
pages = "3--18",
editor = "Tomoki Ikoma and Shigeru Tabeta and Lim, \{Soon Heng\} and Wang, \{Chien Ming\}",
booktitle = "Proceedings of the 3rd World Conference on Floating Solutions - WCFS 2023",
address = "Germany",
}