ARCHITECTURE PORTFOLIO by HE CHUAN John H. Daniels Faculty of Architecture, Landscape and Design, University of Toronto Projects from 2016-2021 Email: chuan.he@mail.utoronto.ca Tel: +1 437-362-4169
CONTENTS PROJECT 01. MORE THAN FRAMES
PROJECT 02. HYPER SCHOOL
Timber Design
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High-rise Building Design
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Material & Structure
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Concept of School In the Future
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Detail of Connection
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Intergrated Storey Units
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PROJECT 04. TIMBER BLOCKS
PROJECT 03. CONNECT THE SKY •
Crossover of Urban & Landscape Design
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Connection of Blocked Urban Context
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Accessability
PROJECT 05. URBAN GREEN NECKLACE
OTHER WORK
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Modular Living Unit Design
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Context Analysis
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Drawings, Models & Photograph
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Prefabricated Timber House
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Urban Design
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Other Courses
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Enjoy Holiday In Forest
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Affordable Housing Strategy
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Intern
PROJECT 01. MORE THAN FRAMES A form begins with structure and material
This is a timber design based on some tipical items of structure and material. For the former, portal frame can be used to create large-span structure so we are easy to make spacious interior. For the latter, wood could be stronger and sustainable compared with traditional building materials. So, when we combine these two advantages together, we are sure to create an amazing community centre made of wood.
Course: Timber Design Studio (UBC Summer School) Type: Timber Design Date: 2020.07 Location: Yicheng Courty, Xiangyang, Hubei Province Group project (together with Mao Yu, Peng Baihan) Instructors: Prof. Frank Lam, Associate Prof. Zhang Haiyan, Associate Prof. Shu Xin
SITE ANALYSIS
CONCEPT EVOLUTION: STRUCTURE
Site
Drainage
Site View
Vegetation Cover
1. Two frames create a basic indoor feeling
Thermal Analysis
2. Frame element, a half-open space prototype
Farmland & Flora High temperature
With the combination of frames and massing, which is a cooperation of structure and architecture , we can create the timber community centre.
STRUCTURE MODEL
CONCEPT EVOLUTION: FORM 1. Roof and mountain outline
2. using curvilinear roof which better corresponds to mountain
3. Interior, massing and voild
4. Outdoor stage
3. Frame can change its original position, making the space more interesting
4. Insert a storey, conssess too large interior space
PLAN
MASTER PLAN
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3 2
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5 10
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1 11
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1F PLAN 1. 2. 3.
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Multifunction Room Office Washroom
EAST FACADE 1:200
2F PLAN 4. 5. 6.
Library Lobby & Exhibition Hall Children area
7. 8. 9.
Cafe Internet centre Terrace
10. Amphitheatre 11. Pavilion
INTERIOR DESIGN
A.Library The library creates an all-timber interior atmosphere for readers.
1-1 SECTION 1:200
B.Children area Children can have fun by using the facilities adjusted by frames.
C.Pavilion Outdoor space has similar structure with the main building, as well as the shared spacial experience.
1.Wooden frame single frame element
roof: NLT
steel plate nail
2.Wooden frame & concreate base Connection2. frame: steel plate and nails
wood frame
Connection3. column and beam: SHEPRA connector
nail steel connector
frame: CLT
interior wall: plywood
3. Column & beam Connection1. wooden frame and concreate base: rigid point
N N
DETAILS OF CONNECTIONS Modern wooden structure should be really careful about connections, particularly those points near outdoor area. Also, if we must use more than one type of structure, we have to think how to make transition. In my work, I use some ways to add beams and columns to main frames. These amazing little gadgets are really interesting.
PROJECT 02. HYPER SCHOOL Sky-scraper School in 2050 future Course: Architectural Design ( Ⅳ ) Type: Skyscraper Design Date: 2020.06 Location: Xiangshan Park, Xinyi District, Taipei Individual project Instructor: Associate Prof. Cai Zhichang
In the future megacities, population, traffic, and environmental issues will add burden for land. But the number of highrise buildings could rapidly increase due to the expansion of cities, and realated land need. People have gradually adapted to live in the vertical direction. So, is it possible to shift the school’s layout from land to the sky? Now, I will rise a conception of a super school in the future. It is located in crowded Asia, along the hillside. I break the boundary between storeys and then connect them together.
URBANIZATION TREND
A CONCEPT OF VERTICAL CAMPUS
In the near future in Taipei, a crowded, island megacity, we are having fewer land for everything. In this case, school which requires high-standard site should consider to develop in the vertical dimension.
1. tranditioanl building
1970s
1990s
1980s
2000s
Downtown
Taipei's territory
2020s & future…… Surrounding territory
SITE ANALYSIS There should be a building holding all needed things for a campus, but, how to make some difference? Anyway, Taipei does not lack high-rise buildings.
2. slope, the vague divide
3. podium adjustment
4. new form, new tower
PROTOTYPE OF STANDARDED STOREYS
TYPE A
TYPE B The Final model is combined by 3 main parts: stacked Floors, cantiliverd podium and cores.
Stack and rotate each floor, 2 types of combinations.
3 basical storeys
SPECIAL COMBINATIONS
1.Intergrated Type A
2.Split In
3.Intergrated Type B
4.Nest
5.Go through
6.Cantilivered Platform
7.Light Well
8.Inclination
PLAN & FACADE & SECTION
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TypeA Plan (9-17F) 1. 2.
1:800
Design Studio Presentation Area
TypeB Plan (19-35F) 3. 4.
Office Meeting Room
1. 2. 3. 4. 5. 6. 7. 8.
5. 6.
1:800
Pubilc Space Core
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Library Atrium Art Gallery Reporting Hall Refuge Storey Classrooms Office&Research Roof Garden
7 5 6
2 5 4
3 1
South Facade
1:2000
Originally, the south side are built along the hill, it cannot get enough sunlight. However, we can solve this problem by adding a lighting atrium, which changes the sunlight into diffused light, and then gives people good light-condition.
Section 1-1 1:2000
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SECTION 2-2 PERSPECTIVE
WOW! It's my ideal school. When studying, my team members in another college can easily group up without traveling across a large campus because they are just on the nearby floors. In leisure time, I can also go to the library downstairs, reading, enjoying the beautiful senery out of the window and order a cup of drink. The art gallery between classroom and library is great, too! We're going to hold exhibition of graduation project here and local people are welcomed to enjoy our artworks!
PROJECT 03. CONNECT THE SKY A Combination of Architecture & Landscape
Greenland is a shared place for local residents, as well as a unique mark for the whole city. However, in China, different plazas are usually made separately. They are big enough but fail to give a city an intact greenland. So, why not make up the lost connection, both from the perspective of urban scale and people's view?
Course: Basis of Architectural Design ( Ⅳ ) Type: Community Centre Design Date: 2018.06 Location: Moonlight Square, Gulou District, Nanjing Individual project Instructor: Associate Prof. Shu Xin
SITE ANALYSIS
FORM & EVOLUTION
In Nanjing, greenlands didn’t play an important role in citizens’s lives until the 21 century. However, they seem to be split by buildings. The picture above means skyline split,lack of indoor area and iunpleasant space of walking across the road. According to my research, the local residents want open space, not only a square for taking a walk, but also a community complex, which is bigger than a traditional community centre. Maybe, the whole site should become an ideal place for multi-activities.
Soild and void, when the two intersect each other, a third space type is created, obtaining both of the spatial feelings of its prototypes.
Northern Part:
1. three sparated area
2. connect these area as an interactive plaza
3. use curved wall to strengthen this feeling
4. adjust the edge to make it smoother
Sunlight and rain, when the two weathers meet together, a third route is created, both for people and the drainage.
Southern Part: TRANSPORTATION
Present transport system. Pedestrian can easily conflict with vehicles.
Connect two plazas and add some extra infrastructures.
1. supporting structure
2. split according to contour lines
3. dig pools to collect rain water
4. insert platform and landscape
ROUTES & OPEN SPACE
1. Use a bridge to connect two squares.
2. Cover the whole site, as well as building underground zone.
3. Lift the central area, enabling people walk pass it.
4. Insert green land & open space.
8 PROTOTYPES OF LANDSCAPE DESIGN IN THIS LAYOUT
VIEW OF SPECIFIC SITES E. This part has good sunlight condition. In different time period of a day, people can experience various spatial connections by light and shadow. And the process of crossing different zones is also an interesting experience.
B. North side, space under the cover.
A. Multi-function room' interior design
D. Loops, the between-in space
C. South side, watchpoint
F. The plaza on the other side of the road doesn’t have ideal sunlight condition because of being in the shadow of high-rise buildings. So, we can place some indoor infrastructure here, such as a gym.Although this design has a dome covering a huge area, there is no worry of humidty, stuffiness or lack of sunlight, since I design a good ventilation and drainage system. People can enjoy this area at any time, they do not need to consider whether the bad wether would strike them.
D
E
B A
C
F precipitation heated air
translucent ceiling
drainage
A series of sections telling the spacial experience through the man-made but nature-based landscape architecture.
SECTION PERSPECTIVE OF THE WHOLE SITE
diffused light
PROJECT 04. TIMBER BLOCKS Varoius possibilities of living in a forest
"ARCTIC POLE" Timer Design Competition Theme: Prefabricated Timber Design Date: 2019.06 Location: Great Khingan, Heilongjiang Province, China Group project (together with Wu Changrong, Wang An) Instructors: Associate Prof. Zhang Haiyan, Associate Prof. Shu Xin
UNIT BLOCKS COMBINATION
The two-person unit is the simplest form, but it has complete functions, which fully shows the assembly concept.
Single-person living unit, consisting of a cube unit and sloped roofs, the roof attic scale is suitable for sleep and rest.
Nuclear family unit, consisting of a double unit and a double pitched roof, with one roof for rest and the other for viewing or meditation.
SECTION OF A+B+C+D MODEL
Bird's Eye View
Interior View(Dawn)
Interior View (Night)
PROJECT 05. URBAN GREEN NECKLACE Urban Design & Affordable housing strategy
Thorncliffe Park is situated in the East end of Toronto, Ontario. The site is one of many housing developments in the GTA, built on the principles of post-war multi-family housing. Thorncliffe’s residence towers (below) are home to about 30,000 people, and due to the aging structures and early zoning strategies, the area has become a hub for new immigrants due to it’s affordability in relation to its somewhat disconnected location. Statistics show a dominant number of low-income, first generation individuals call Thorncliffe Park home, making this area a prime opportunity for social revitalization through thoughtful densification.
Course: Design Studio 3 Theme: Urban Design & Affordable housing strategy Date: 2021.12 Location: Thorncliffe Park, Toronto, Ontario, Canada Group Work: with Bo Chen, Ramzi Fakhoury(Urban Design). Individual Work (Affordable Housing Strategy) Instructor: Christos Marcopoulos
MEDIA RESEARCH
Population Density per Hectare
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Among all the communities along Eglinton Avenue, Thorncliffe just sits on a ‘basin’: lower income, higher population diversity and surrounded by large area of green space. This community has high potential to become an urban complex to attract more people as well as income and vitality.
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Population density is an issue at Thorncliffe, mainly due to the poor planning of existing residence blocks and it's proximity to the Don River Parklands at its perimeter. Since Thorncliffe is home to a wide variety of immigrants,opportunities arise to densify the existing urban fabric and create new, meaningful spaces for communal interaction.
SITE ANALYSIS
Aerial Image
Green Space
Parking Lots
Existing Buildings
Transport & Circulation
Existing Programs
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The area originally designed for a vehicle-centric lifestyle has become outdated and irresponsible, but parking lots take much area, and divide communities from one another and disrupt the natural landscape. Residents enjoy public spaces for social gatherings and interaction, yet have expressed desires to provide better options for public amenities such as children's playgrounds, recreational facilities and covered outdoor spaces. Currently, public spaces are the remnants of land found between housing blocks. They are disconnected, and limited in their ability to become a place for leisure. The boundaries of Thorncliffe are not well defined, leading to a sense of irregularity and disconnection throughout the whole community.
CONCEPT: URBAN & COOMUNITY SCALE
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The concept Urban Green Necklace aims at densify Thorncliffe Park in various scales, from urban planning, community to individual buildings. Basically, this ideas gives both blocks and buildings a clear boundary, while still leave openings to connect surrounding context. The boundary is just like a ring, and the intensified centrual area (plaza for community, public space for building) is gemstone. The ring and stone consist 'necklace'.
Urban Scale
Community Scale
1. Existing Condition
2. Demolish for Circulation Flow
1. Focused Area
3. Campus Pedestrian Network
4. Convert Inner Loop Into outer Green Space
2. New Grid
5. Rebuild The Outter And Inner Loop
6.Overall Concept Diagram
3. Strategy Vision
CONCEPT: COOMUNITY & BUILDING SCALE
Community Scale
Building Scale
L-Shape Building
I-Shape Building
Public Space
Vierendeel Truss
Corridor
Combination
Combination
1. Define the Street Boundary
2. Plaza Connect Building and Street
3. Open Ground Floor
4. Insert Cores and Corridor
5. Urbanism Concept Interpret in Architecture
6. Add Amenities
AFFORDABLE STRATEGIES
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Basic Module Size
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Typical Modular Size
Step 1. Setting Up Frames and Cores
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Maximum Transportation Size
All the living units are prefabricated in the factory. In construcation site, we only need pile them, minimizing the influence on community nearby.
Cores and frames are the only parts need pouring reinforced concrete.
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Living unit is modular, and meets the transportation restriction. Each unit can be shipped to construction just once (at most twice), which save the shipping cost. Five different unit types satisfy various living requirements.
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Step 2. Installing Living Units
ISOMETRIC VIEW IN THE CONTEXT
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The whole site now has a very clear boundary, it blocks hustle and bustle from traffic in main road, but still leave opening to the inner community. Site Section
OTHER WORK
Intern Type: Commercial Complex Design Date: 2019.08 Location: Tianming Lake, Ninghai City, Zhejiang Province, China Instructor: Lu Deping (sector manager), Wang Li (chief architect)
Drawings, Models & Photograph Individual work concerning on architecture Date: 2016.10-2019.06
Urban Design Type: Renewal of Old Campus Date: 2020.04 Location: Hongqiao Campus, Nanjing Tech University, Gulou District, Nanjing Group project (together with Cheng Huinan, Kong Jie) Instructor: Dr. Zhao Ye
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