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Joint-user Complex at Site G2, Anderson Road Quarry

Location: Hong Kong, China
Building Type: Communal Facilities
Module Type: Concrete Volumetric System
Construction type: New Construction
Finished in: On going
Area: 675㎡
Floors: 8
Modules: 141
Work scope: Module Supply +Transportation+On-site Installation
The Anderson Road Quarry Development is one of the largest public housing programmes in Hong Kong in recent years. It will accommodate around 30,000 new residents upon full completion and serve nearly 50,000 existing residents in the surrounding neighbourhoods. Previously, residents living in Anderson Road and nearby areas had to walk for over 30 minutes to reach the nearest sports centre, library or community hall, while existing public facilities were constantly in short supply.

To bridge this community infrastructure gap, the Hong Kong SAR Government has adopted a multi-use land development model and planned an integrated complex on Site G2, combining sports, cultural, welfare and parking functions. Once completed, the complex will provide one-stop facilities including a modern sports centre, a small public library and a community hall, together with a full range of age-inclusive welfare services covering elderly day care, residential care homes for the elderly, youth services, family support, mental health services, early childhood rehabilitation and hostel accommodation for street sleepers. Approximately 200 public parking spaces will also be provided at the basement level.

As CIMC Modular Building’s first concrete modular construction project, this development adopts an embedded self-bearing concrete modular system. It deeply integrates BIM (Building Information Modelling) technology to enable collaborative design and clash detection across architecture, structure, MEP and other full disciplines. Backed by a comprehensive quality management system and digital production control, traditional on-site construction processes — including main structure, MEP installations and interior finishing — are relocated to factory assembly lines. This approach greatly improves construction precision, reduces on-site wet trades and minimises on-site uncertainties.


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