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Junrong Wang Portfolio 2023

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MARCHING TOWARD THE POST ANTHROPOCENE

DUPLICATION ASSEMBLAGE STANDARDIZATION JUNRONG WANG TEL: +86-130-3219-3275 +1-401-699-1705

CUSTOMIZATION


COLLA BOR ATOR: Y U FA N X U

INSTRUCTOR: GAVIN ZEITZ

The contaminants on the site are mainly Cadmium, Lead, and Chromium.They can cause damage to bone, kidney, liver,stomach, intestine, bladder,kidney, and thyrold.

The contaminants such as arsenic, lead, PCB are mapped corresponding to the location of the spots and facilites the contaminants are from.

Philipsdale is a post-industrial site. The pollurion on Philipsdale are mainly from the steel industry and oil tank leakage. Many rust gadges and fabric from the people who lived, worked, camped on the site are left there. We hope that by remediating the ecosystem of this site, it can be brought back to life and gain the ability to grow itself.At the same time, we also hope that the process and transformation of making the site healthy can convey the concept of “HEALTH” to the people who come to the site.


CONCEPT The demolished washburn wire, old rod mill has left the site as a complex brownfield. The contamination on the site are lead and metal. There are several types of landfills on the site, which are soil fi ll, calcine waste, copper slag area, and air quenched slag area. The industry contamination could be seen from the surface of the ground and the debris on the ground. HISTORIC A L PL A N OV ER L AY ED ON SATELITE M A P

There is also a rail road track on the site. Beside the rail road and on the site, there are many vegetation which are very tolerant to saline-alkali soil, such as sumac. They show the impact of industrial history on the ecosystem. After the steel plants are demolished, we are going to locate the remaining pollutants on the site and give sollutions on these pollutants. We try to engage the remediation with the revival of Philipdale in the form of landscape architecture. Through mapping the material collected from the site on the map, experience of the site has been materialized.

M ATERIA LS COLLECTED FROM TH E SITE COR R ESPON DING TO THE LOC ATIONS THEY A R E COLLECTED


Terrace wetland Emergent wetlands Submergent wetlands

Submergent wetlands

Water puri cation through submergent and emergent wetland

W ETLA ND

Habitats for Gruidaes, raptors, anseriformes, ardeidaes, various passerines

Remedy Plaza

Emergent wetlands Mud at

BIR D H A BITAT Marshland Habitats for Gruidaes, raptors, anseriformes, ardeidaes, various passerines Slope head into the water

Dam

Habitats for shes

TERR ACE GA R DEN


The site is graded to let the water flow from the east to the west and be purified during this process. The remediation would thus be achieved through landscape design.


COLLA BOR ATOR: TONG W U, XIAO FEI SU N, LINGE LI

INSTRUCTOR: EN RIQUETA LL A BR ES VA LLS, WILLIA M H UA NG

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Burial ground sanctury plays an important role in Chinese people mental need for landscape. As a place for Chinese people to memorize their passed away families and ancestors, it becomes a waste of land as well when population becomes denser and land becomes scarce and expensive in cities. Such sancturies could be combined with brownfield remediation so as to satisfy the mental need of respectful and noble burial ground and ecological value. This project leverage Genetic algorithm to generate the best solution which could gather runoff in the pollutant areas and embed human bone ash with seeds and nourish trees. In the meantime, with the tree species selection, pollutants could be gathered in the lower points by runoffs.


AC A DE M EIC PROJECT

INSTRUCTOR: THEODOR E HOER R


IN DIVIDUA L AC A DEM EIC PROJ ECT

INSTRUCTOR: LIQING ZH U Existing Elements

History: Confluence Project & Dazhi Reclamation

River flow

Causes

Causes

Water Pressure High Low

Minhang Riverfront Park

‘The First Bay’

Embankment wall

Dock

Huangpu River

Flood Gate 2m Dazhi River Depth: Width: 64m

Warehouse

Embankment wall

1.5m Jinghui River Depth: Width: 80m

I2. Storm

5.0m

5.5m 100yrs flood 5.0m 50yrs flood 3.3m High tide

I3. Flood

1.8m Low tide

Land Salinization Water pollution

Fe, Bacteria Fe mg/kg

100% exceed

Precipitation

Zn, Cu, As Zn mg/kg Cu mg/kg

Bacteria CFU/ 3600% exceed

I1. Sunken ground

Soil pollution

As mg/kg

13.3% exceed

Annual Flood Frequency

Tide on Huangpu River

Height) (m

Monthly precipitation (mm) 230

8.5% exceed 25% exceed

10

5

8

4

6

3:00-6:00 3 23:00-3:00

4

2 15:00-18:00

2

1

34 0

JAN

FEB

MAR

APR

MAY

JUN

JUL

AUG

SEP

OCT

NOV

DEC

1949

1959

1969

1979

1989

1999

2009

0

High Tide

Low Tide

12:00-15:00

JAN

FEB

MAR

APR

MAY

JUN

JUL

AUG

SEP

OCT

NOV

DEC

Aims

General Strategy

Flood discharge gate

New Strategy


B1. Wetland

A1. Bioswale

C1. Terrace

P h r a g m i t e s Typha orientalis

Arundo donax

Sapium sebiferum

Cortaderia selloana

Iris tectorum

Alisma plantago

Lythrum salicaria

Broussonetia papyrifera

Juncus effusus

Zizania latifolia

Cyperus alternifolius

Trapa incisa

Nymphoides cristata

Amorpha fruticosa

Stipa capillata

Cinnamomum camphora

P e n n i s e t u mM e t a s e q u o i a

Cortaderia selloana

Sapium sebiferum

Cynodon dactylon

Cynodon dactylon

Taxodium distichum

P e n n i s e t u m M e t a s e q u o i a

Iris tectorum

Phalaris arundinacea

Hibiscus mutabilis

Cinnamomum camphora

Cynodon dactylon

Taxodium distichum

C e r a t o p h y l l u m Elodea nuttalli

Cortaderia selloana

Amorpha fruticosa

Sapium sebiferum

Pyracantha fortuneana

Nandina domestica

Pyracantha fortuneana

M e t a s e q u o i a Broussonetia papyrifera

P e n n i s e t u m Pinus elliottii

Hibiscus mutabilis

Ligustrum lucidum

Broussonetia papyrifera Ligustrum lucidum


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COLLA BOR ATOR: FEI WA NG

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INSTRUCTOR: K EXIN NI


Strategy Redesign the urban grid

Optimize

Elements

Y shape intersection

Proposal

X shape intersection

1. Gtree Model

Gtree system during pandemic

+

+ Cellular

New Cellular Grid system in normal times

2. Cellular Grids

+

+ Circulation

3. Circulation

Decentrialization A circulation to connect districts


COLLA BOR ATOR: X UQI LIU

INSTRUCTOR: Y U FEI DING


Green Infrastructure

Drainage System - Section A-A During Normal Times

Reuse Purify

Retain

Retain

Purify

Purify

During Flood Period

Evacuation Corrodor

People can get to the higher area from the rooftop and escape throught the evacuation corridor.

Public Spaces

The corrIdor and evacuation spaces is also the place for acitivities. Thus provides social equalty to the residents in the whole town.


AC A DE MIC PROJECT

INSTRUCTOR: EL AIN E STOK E


AC A DE MIC PROJECT - M ATERIA L TEST AT RISD M L A INSTRUCTOR: A DRIA N FEH R M A N N, SA R A COHEN


IN DIVIDUA L PROJECT THE LEGEN DA RY HIG H WAY 14 TOW ER A RCHITECTU R E COM PETITION


THE WOR LD IN TH E EY E OF AI LOC ATION: SH A NGH AI L A NGUAGE: CHIN ESE SU M M ER WOR KSHOP

INSTRUCTOR: H AO ZH ENG

DIGITA L FUTUR ES WOR KSHOP INSTRUCTOR: H AO ZH ENG PA RTICIPA NT: J UN RONG WA NG


THE WOR LD IN TH E EY E OF AI LOC ATION: SH A NGH AI L A NGUAGE: CHIN ESE

DIGITA L FUTUR ES WOR KSHOP INSTRUCTOR: H AO ZH ENG PA RTICIPA NT: J UN RONG WA NG


COLLA BOR ATOR: RUIHUA LIU, PEIY U LIN, TE LI, Y UCH EN SONG INSTRUCTOR: ZAO LI, ZHE GUO, ZIH UA N ZH A NG


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Junrong Wang Portfolio 2023 by Junrong Wang - Issuu