PORTFOLIO TAN JIA MING
AR518 ARCHITECTURE DESIGN STUDIO 5 July 2021 FACULTY OF ENGINEERING, TECHNOLOGY & BUILT ENVIRONMENT
SCHOOL OF ARCHITECTURE & BUILT ENVIRONMENT
Table Of Content
Project 1 Defining Liminality l Site Analysis & Site Reaction Project 1a – Site Analysis Of Meru, Klang (Group) Project 1b – A ‘Warm Up’ Design Thinking Proposal (Individual)
Project 2 Rationalising Neue Norms | Context, Crises, Community & Concepts
Project 2a - Speculative: Literature Review towards Architectural Spatial Concepts in Drawings & Models- A1 drawing board and a conceptual model. Project 2b - Micro site analysis- individual site strategies. Project 2c - Schematic models for the design development.
Project 3 Resilient Design for Crises | Design Development Community Centre – Cycling Centre
Project 1a
Site Analysis Of Meru, Klang (Group)
Poster
Project 1b
A ‘Warm Up’ Design Thinking Proposal (Individual)
Meru Connect Town of Meru, Klang
Site Analysis Diagram below shows the main access to site and some route of user surrounding within 15minute, and the zoning. There are Malay community, SJKC Tiong Hua, kindergarten, shop lot, Chinese community and factory worker community in these area.
Urban Rural Shop lot Suburban
Main road Secondary road Main access to site Alternative Accessibility Route & accessibility
Zoning
User Group
Chosen Site (Site 2) Site 2 is a green area, it is strategic location because it has commercial area, different community, and schools around and it got a distance from main road which can prevent noise from main road, but it is easy to access from main road
Elderly
Adult
Children
Teenager
Foreign worker
Local worker
Issues
Lacking of Public space
Lacking of interaction Between each community
Lacking of Pedestrian walkway
Meru Connect Collage
It is a space that design with tree as natural sun shading. For the elderly, usually they will go to grocery to buy some daily use, so when they go through, they can chitchat with their friend and also playing chess when leisure time. For teenager, in front of site got a food stall so it is a good place for teenager to bring their food and eat with their friend, they also can buy their food from shop lot beside the site and bring it to here. For parent, when they fetch their children from SJKC Tiong Hua to back home, their children also can play at here with their friend using the facility. And last is local worker and foreign worker also can go here for leisure and it is a place for them to gather and make some new friend to enhance relationship especially between local and foreigner
Program & Activities
Eating area
Playing chess
Park area
Chit chat
Project 2a
Speculative: Literature Review towards Architectural Spatial Concepts in Drawings & Models- A1 drawing board and a conceptual model
Theme: Anthropology
Drawing: Cycling City
Issues & Problems
Dead end road
Traffic congestion
Lack of interaction Between community
After viewing the journal, I produce this drawing base on a cycling city which is like a harmony residential area with cycling as a connection between each nationality. In this drawing I propose all difference style of house design but same colour style. This is to represent the difference of community in Meru also can live together as a harmony town. Most of the community in here is use bicycle as their main transportation and create a cycling culture. In this city, I propose all the cycling facilities like bicycle lane, bicycle parking, resting station and some solar charging station which for high tech bicycle that required charging. Besides that, I also propose some public facility for their cycling activities. Such as at the right top part, that is an area like imitation of mountain area. This area is for those who like hiking bike to go and to practice at there. Second is at the left part, that is like a bicycle stadium that for racer cyclist to practice and prepare for their tournament. And next is like a park area in front of a restaurant. This area is a gathering point for cyclist to communicate with each other, and also a resting point for them to have their food and drink. And the last is right bottom part facility, this is an area for those who interest in acrobatics to practice and perform at here. That all is my imagination city which combine with cycling along their live.
Literature Review
Making a pro cycling city
Infrastructure cycling city
Residential perspective
Model I take the intention from the bicycle, which is the gear of bicycle to create this model. In this model, what I want to express is the difference type or pattern of gear is representing difference community in Meru, and the difference size of it is representing difference age of the residence. As you can see at here, whatever type or size are they, if they willing to connect together, working with each other, they can run the whole city and keep it moving. So, what I do now is to create a connection between the residence of Meru which I try to use cycling as a medium for their interaction
Project 2b
Micro site analysis- individual site strategies.
Site 2
SWOT Analysis Strength
Vegetation Accessibility School Commercial area
SiteReaction Reaction Site
Design Strategy
Weakness
Opportunities
Dead end road
Proposed road
Threats
Main road Congestion area
Project 2b
Schematic models for the design development
Design Development
Precedent Study: Bicycle Centre
Initial Program & Activities
Building data Architect: Ferdinand and Ferdinand Architects -
Roof top cycling park Jungle bike Bicycle rental service
-
Roof top café Enjoy scenery
Manufactures: Baumit Year built: 2016 Building area: 800msq Location: Tiszafured, hungary
-
Operative Design
Bicycle workshop Selling bicycle Repairing
-
Community space Police station, Clinic & shop lot
Most bended angle: 106’
Bicycle lane height: 2800mm
Bicycle lane width: 2000mm
Slanted angle: 12’
Precedent Study: Global Change Institute Building data Architect: Hassell architects pty ltd Building type: University campus
Year built: July 2013
Massing Model
Building height: 19.2m Location: St. Lucia campus, Brisbane Site area: 915sqm ETFE atrium roof - Allow natural light - Triple skin operable ETFE roof - Reduce solar load - Light weight material
Open & big volume spaces - Large volume & openness space allow air flow through building & Natural ventilation to occur
Timber material - Reflect light diffusely - Natural insulator - Reduce energy needs - Maximising daylighting Motorised sunshades - Automatically move with sunlight - Control both solar load & glare
Perforated screen & facade - Allow ventilation to Penetrate into building
Wind direction - Oriented towards the prevailing Winds from south & east - Allow natural ventilation
Cross ventilation - Passive building design
Green wall - Draw air up to green wall, filter & cool down air - Bio-filtration & reoxygenation
Project 3
Community Centre – Cycling Centre
Community Centre (Cycling Centre)
Site Analysis
Space Requirement
Sun & wind path
Zoning
Urban (terrace,semidetached,bunglow) Rural (kampung) Shophouse Suburban (kampung,terrace)
Bubble Diagram Main road Secondary road Main access to site Alternative accessibility View
Circulation
Program & Activities
Ground floor
Second floor
First floor
Roof top
-
Roof top cycling park Jungle bike Bicycle rental service
-
Roof top café Enjoy scenery
-
Bicycle exhibition Bicycle workshop Repairing
-
Community space Police station, clinic & shop lot
Passive Design Strategy
Cycling Program & Activities Recreation Target user: Family, children, elderly
Adventure Target user: Teenager
Off-road Target user: Cyclist, athlete
Façade Natural sunlight
Roof top park
Glass panel Brick
Jungle area
Overhang Roof shading & ventilation
Cycling lane, park
Other Bicycle Uses Sitting
Shipping
Generate electric
Generate water
Shading
Ventilation
Natural ventilation
Natural ventilation into middle courtyard
Site Plan
1
2
Scale 1:800
Master Plan
Scale 1:800
Ground Floor Plan
1
4 lobby
storage
Bicycle Service centre
storage
1. This front building is sport building. Going into the building is lobby, behind it is a bicycle service centre. The bicycle service centre is open to the outside and it is all the glass panel that can fully open. And then there are some washroom, staircase, and fire stairs case, lift and there are bicycle lift for cyclist to bring their bicycle from roof top to ground floor.
4. Next will be the loading bay and the storage area. At here the bicycle ramp is around 5meter high which allow lorry to access. And at the middle courtyard has some food stall to sell some snack because it has a lot of food stall around my site.
2. Next will be the bicycle workshop. Bicycle workshop also is open to the outside. And here is the drop off area. Then going into community building is lobby and a lot of shop lot, and surau. This building also got staircase and fire staircase and the lift.
3. The back of this building is the bicycle ramp to going to roof top cycling park.
Bicycle workshop
surau
lobby
Shop lot
3
2 Scale 1:300
First Floor Plan 1. It is a resting point for cyclist and also cyclist can park their bicycle outside and then going into the exhibition.
1 storage
Bicycle exhibition
storage
3
2
2. Loft area. It is a space for visitor from workshop below and also for cyclist to rest. At here cyclist also can park their bicycle outside and going into the building.
loft
Police station
clinic
3. Storage area. The bicycle ramp is gone into the building and the continue going up.
Scale 1:300
Second Floor Plan
The cycling park is connected to the auditorium. It is also a multipurpose hall, so when want to organise some event, it has a bigger space which can extend to outdoor area.
Meeting room office
Cycling park
3
lounge
1
Cycling park
2
gym auditorium 1. The outdoor is one of the cycling parks. at here the cyclist can enjoy the view.
Scale 1:300
2. Then this is another cycling park that has a staircase to connect to roof top cafe. Both side of the staircase is the sitting area for cyclist and visitor to rest and enjoy the activity.
Roof Top Plan
CAFE
2
1. It is a cycling park also and connect to the cafe. Cyclist can park their bicycle outside and walk into the cafe. And it has the lift for cyclist to bring their bicycle going down to ground floor area.
1 2. The cafe is open space which allow the natural ventilation.
CYCLING PARK
Scale 1:300
Section X-X
cafe Cycling park
Meeting room
office
exhibition
lobby
Bicycle service centre
Cycling park
lounge
Bicycle workshop
Drop off
Section Y-Y
gym
auditorium
Police station
lobby
clinic
Shop lot
surau
Section Z-Z
cafe
Cycling park
auditorium
clinic
storage Shop lot
surau
Front & Left Elevation
Rear & Right Elevation
Planning & Building Guidelines
Planning And Building Guidelines
Passive BOMBA Fire Design
Lift
Lift
Staircase
Staircase
Fire Staircase
Fire Staircase
Emergency Route
Emergency Route
Lift
Lift
Staircase
Staircase
Fire Staircase
Fire Staircase
Emergency Route
Emergency Route
Building Construction & Technology
Sectional Details Lounge
Gym Room
1 21 31 41 51 1
1 21 31 41 51
FLOOR PLAN
FLOOR PLAN
1
1
6
1
7
1 71 6
1
8
9
1
10
1
MATERIAL & SPECIFICATIONS 1. 130mm brick wall finishes with interior 10mm plaster & exterior 10mm concrete. 2. Timber shelves. 3. Timber staircase with aluminium railing. 4. Timber table. 5. Couch. 6. Glass panel wall. 7. Concrete bicycle lane. 8. Folding glass panel door. 9. Gypsum ceiling. 10. Timber flooring.
AXONOMETRIC VIEW
MATERIAL & SPECIFICATIONS 1. 130mm brick wall finishes with interior 10mm plaster & exterior 10mm concrete. 2. Gypsum ceiling. 3. Glass panel. 4. Timber flooring. 5. Glass window. 6. Fitness equipment. 7. Glass panel door.
AXONOMETRIC VIEW
Building Services
Community Centre (Cycling Centre)
Design Objective To create a community centre main for cycling centre as a solution for less interaction between community around especially local and foreigner. This community centre also as a medium to enhance cycling culture in Meru to solve the traffic congestion issue. Design concept To design a cycling lane with the building for difference cycling experience as cycling lane connect to each space of building and going up to roof top cycling park.
Passive design strategy OVERHANG ROOF - shading & ventilation
FAÇADE – natural sunlight
Shading
GLASS panel
Brick
Ventilation
Natural ventilation
Natural ventilation into middle courtyard
Lighting & Ventilation
DAYLIGHT STUDY
LIGHTING STUDY
Space 01: Lounge
Opening There are two opening which is glass panel door and glass panel wall. ARTIFICIAL LIGHTING LAYOUT PLAN
FLOOR PLAN
11 12 13 14 15
5 x 14 = 70m2
Type of lighting fixture
Round flush mount ceiling light
No. of lamp in each luminaires(n)
1
Lumen
3500lm
Height luminaires
3300mm
Height of working plane
1000mm
Height difference(Hm)
3300 – 1000 = 2300
Room index
K = (L x W)/[Hm(L + W) K = (5 x 14)/[2.3(5 + 14) K = 1.6
Assumption of reflectance value
Ceiling : Wall : Floor = 70:50:20
Utilization factor(UF)
When k = 1.6, UF = 0.8
Maintenance factor(MF)
0.8 (normal condition with AC)
Standard illuminance(E)
300 lux
No. of luminaires required(N)
N= N= N= N= N=
Round flush mount ceiling light
(EA) / (F x n x UF x MF) (300 x 70) / (3500 x 1 x 0.8 x 0.8) (21000) / (2240) 9.375 10
Assume max. spacing between luminaires to height ratio for the lighting = 1.5m Smax = 1.5 x Hm = 1.5 x 2.3 = 3.45 Smax ≤ 3.45m
TEMPERATURE STUDY Calculation for natural ventilation required (size of opening) Total floor area x 10% = 70m2 x 10% = 7m2 Natural ventilation (opening provided) = 9m2 Therefore, the natural ventilation and lighting requirement is achieved.
1
10
MATERIAL & SPECIFICATIONS 1. 130mm brick wall finishes with interior 10mm plaster & exterior 10mm concrete. 2. Timber shelves. 3. Timber staircase with aluminium railing. 4. Timber table. 5. Couch. 6. Glass panel wall. 7. Concrete bicycle lane. 8. Folding glass panel door. 9. Gypsum ceiling. 10. Timber flooring.
Total floor area
Spacing between luminaires
VENTILATION STUDY
19
Length(L): 5m Width(W): 14m
At least 10 nos. of recessed lighting are required to achieve standard requirement of illuminance.
16 17 18
Dimension of space
COLD
AC SYSTEM LAYOUT PLAN
HOT
Dimension of space
Length(L): 5m Width(W): 14m
Total floor area
5 x 14 =70m2 = 753ft2
According to UBBL 41, 3th schedule of UBBL, lounge requires 0.14m 3 of air per minute per occupant (cmm) which is equals to 4.94CFM per occupant BTU/Hr required in the space, 753ft2 x 25 = 18825 BTU/Hr Proposed AC has 12000 BTU/Hr 18825/ 12000 = 1.57 = 2 nos. CFM to Tons 1 Ton of Cooling = 400 CFM 1 Ton of Cooling = 12000 BTU/Hr Since 2 nos. of 12000 BTU/Hr AC is used, total of 24000 BTU/Hr is provided, 24000 BTU/Hr = 2 tons of cooling 2 tons of cooling = 800 CFM
There approximately max. 30 occupants inside this room, 30 x 4.94 CFM = 148.2 CFM Therefore, the space is sufficient and approved for the 2 nos. of AC system to cool the space and appropriate for mechanical ventilation in the case which the opening are closed.
Evaporating indoor AC unit AXONOMETRIC VIEW
Condensing outdoor AC unit
In conclusion, 2 nos. of wall mounted 1.5 Hp of Air conditioning unit is used for the cooling purposed in the space mentioned. Multi split system is applied which 1 outdoor condensing unit to installed to supply the 2 indoor evaporating unit. This ensure lesser ductwork in the space and provide individual control of temperature settings.
Lighting & Ventilation
DAYLIGHT STUDY
LIGHTING STUDY
Space 02: Gym Room
Opening There are three opening which is glass panel window and 2 glass panel wall. ARTIFICIAL LIGHTING LAYOUT PLAN
FLOOR PLAN
11 12 13 14 15
Length(L): 10m Width(W): 11m
Total floor area
(11+2) x 10 x 1/2 = 65m2
Type of lighting fixture
Round flush mount ceiling light
No. of lamp in each luminaires(n)
1
Lumen
3500lm
Height luminaires
3300mm
Height of working plane
1000mm
Height difference(Hm)
3300 – 1000 = 2300
Room index
K = (L x W)/[Hm(L + W) K = (10 x 11)/[2.3(10 + 11) K = 2.3
Assumption of reflectance value
Ceiling : Wall : Floor = 70:50:20
Utilization factor(UF)
When k = 2.3, UF = 0.87
Maintenance factor(MF)
0.8 (normal condition with AC)
Standard illuminance(E)
300 lux
No. of luminaires required(N)
N= N= N= N=
(EA) / (F x n x UF x MF) (300 x 65) / (3500 x 1 x 0.87 x 0.8) (19500) / (2436) 8
At least 8 nos. of recessed lighting are required to achieve standard requirement of illuminance. Spacing between luminaires
16 17
Round flush mount ceiling light TEMPERATURE STUDY
Assume max. spacing between luminaires to height ratio for the lighting = 1.5m Smax = 1.5 x Hm = 1.5 x 2.3 = 3.45 Smax ≤ 3.45m
Calculation for natural ventilation required (size of opening) Total floor area x 10% = 65m2 x 10% = 6.5m2 Natural ventilation (opening provided) = 21m2 Therefore, the natural ventilation and lighting requirement is achieved.
Dimension of space
Length(L): 10m Width(W): 11m
Total floor area
(11+2) x 10 x 1/2 = 65m2 = 700ft2
According to UBBL 41, 3th schedule of UBBL, gym requires 0.14m 3 of air per minute per occupant (cmm) which is equals to 4.94CFM per occupant
VENTILATION STUDY
MATERIAL & SPECIFICATIONS 1. 130mm brick wall finishes with interior 10mm plaster & exterior 10mm concrete. 2. Gypsum ceiling. 3. Glass panel. 4. Timber flooring. 5. Glass window. 6. Fitness equipment. 7. Glass panel door.
Dimension of space
COLD
AC SYSTEM LAYOUT PLAN
HOT
BTU/Hr required in the space, 700ft2 x 25 = 17500 BTU/Hr Proposed AC has 12000 BTU/Hr 17500/ 12000 = 1.46 = 2 nos. CFM to Tons 1 Ton of Cooling = 400 CFM 1 Ton of Cooling = 12000 BTU/Hr Since 2 nos. of 12000 BTU/Hr AC is used, total of 24000 BTU/Hr is provided, 24000 BTU/Hr = 2 tons of cooling 2 tons of cooling = 800 CFM
There approximately max. 30 occupants inside this room, 30 x 4.94 CFM = 148.2 CFM Therefore, the space is sufficient and approved for the 2 nos. of AC system to cool the space and appropriate for mechanical ventilation in the case which the opening are closed.
Evaporating indoor AC unit AXONOMETRIC VIEW
Condensing outdoor AC unit
In conclusion, 2 nos. of wall mounted 1.5 Hp of Air conditioning unit is used for the cooling purposed in the space mentioned. Multi split system is applied which 1 outdoor condensing unit to installed to supply the 2 indoor evaporating unit. This ensure lesser ductwork in the space and provide individual control of temperature settings.
Cold Water Supply FITTING
CONSUMPTION PER DAY
WATER CLOSET
40 Gallons
SHOWER
30 Gallons
SINK
20 Gallons
TAP
5 Gallons
LEVEL
SPACE
AVERAGE AMOUNT OF USAGE
G
WATER CLOSET
40 x 10 = 400
SHOWER
30 x 10 = 300
SINK
20 x 14 = 280
TAP
5 x 20 = 100
LEVEL
SPACE
AVERAGE AMOUNT OF USAGE
1
WATER CLOSET
40 x 8 = 320
SHOWER
30 x 8 = 240
SINK
20 x 8 = 160
TAP
5 x 8 = 40
LEVEL
SPACE
AVERAGE AMOUNT OF USAGE
2
WATER CLOSET
40 x 8 = 320
SHOWER
30 x 8 = 240
SINK
20 x 8 = 160
TAP
5 x 8 = 40
LEVEL
SPACE
AVERAGE AMOUNT OF USAGE
3
WATER CLOSET
-
SHOWER
-
SINK
20 x 3 = 60
TAP
5 x 3 = 60
TOTAL CAPACITY OF WATER TANK REQUIRED GF + 1F + 2F + 3F = 1080 + 760 + 760 + 120 = 2720 GALLONS
Sewerage System
THANK YOU