Reestablishing the Delta as a New City's Framework
{"autoplay":"true","autoplay_speed":"8000","speed":"1000","arrows":"true","dots":"false","loop":"true","nav_slide_column":5,"rtl":"false"}
{"autoplay":"true","autoplay_speed":"8000","speed":"1000","arrows":"true","dots":"false","loop":"true","nav_slide_column":5,"rtl":"false"}

DETAILS

LocationShunde, Guangdong, China
ClientGuangzhou Scenery Urban Design Ltd.
Size72 km2

The Pearl River Delta is the second largest bird migration delta and estuary in Southeast Asia. Preserving and restoring bird and wildlife corridors while also providing regional connectivity, transportation, and development options is at the pinnacle of today’s development challenges. In the Shunde New City Plan, urban development and nature are integrated to form a unique and comprehensive system beneficial to both people and the natural environment. The Shunde New City Plan weaves a constructed wetland delta system into a multi-modal, pedestrian-oriented city. At 72 square kilometers, the plan utilizes the form of a wetland delta to break the city fabric into multiple nodes, with water as the connective tissue between development centers. Between water corridors, the plan contains multiple islands as pedestrian-scaled, mixed-use villages linked by an environmental infrastructure containing greenbelts, water corridors, wetlands, and trails.

A layered transportation network and multiple urban centers serve to create connected yet self-contained units of residential, retail, office, educational, and/or civic spaces. Two major stations consolidate regional rail, local monorail, water taxis, buses, and cars for the region. In addition, a comprehensive trail network parallels the greenbelts, and a water taxi system and a monorail network promote connectivity between the neighborhood centers. Throughout the project, human and environmental sustainability takes center stage. Fine-textured neighborhoods with compact blocks and small street cart-ways contribute to a human-scaled, walkable environment. The plan proposes compact blocks and a fine-scaled network of streets designed as human corridors, augmenting the pedestrian environment and allowing for a more delicate, environmentally-sensitive approach to planning and development. The net effect is a greater number of smaller streets, collectively mitigating traffic while expanding circulation choice. This smaller-grained fabric encourages walkability, reinforces a sense of place, and creates more development parcels and opportunity for architectural variation.

Related Projects

Ricardo Lara Park

Ricardo Lara Park is a vibrant city park and a case study in landscape infrastructure.  It demonstrates how a small investment and creative thinking about landscape can transform the very infrastructure that has long divided and isolated a community into an amenity that unites it, offering much-needed environmental and recreational benefits.

Here, more ...

Shunde Guipan River Waterfront

SWA participated in a competition reimagining 19-kilometers of the Guipan River waterfront in Shunde, China. While the Pearl River Delta is one of the fastest growing regions of Southern China, one of the many casualties of this growth was the delta itself. Presently, Shunde has a growing flooding problem enhanced by channelizing, condensing, and containing th...

Bray's Bayou

Stretching 35 miles from the mouth of the Houston Ship Channel westward through residential, commercial and institutional developments, Brays Bayou is one of the most important waterways in Harris County, and a critical link in the area’s watershed. The $450-million project was first established in the early 2000s, with the goal of mitigatin...

Buji River Urban Redevelopment Plan

The Buji River urban review master plan integrates strategies of recreation, reconnection, culture, and ecology to bring the river back to the people of Shenzhen. Based on a restored Buji River ecosystem, the urban review master plan for this flourishing environment aims to reconnect the river with the city.

The program is to be implemented at three sca...