C ON T EN T .
04.
12.
HOSPITALITY PROJECT
LARGE SCALE HOUSING PROJECT
PROJECT LOCATION :
PROJECT LOCATION :
HOTEL PROJECT
HOUSING PROJECT
SHILONG (2020)
BASAVANAGUDI (2019)
18.
24.
LITERARY CENTER PROJECT
TREE HOUSE PROJECT
PROJECT LOCATION :
PROJECT LOCATION :
LITERARY CENTER
PRIVATE TREE HOUSE
27.
32.
INTERIOR DESIGN PROJECT
SOLAR DECATHLON PROJECT
PROJECT LOCATION :
PROJECT LOCATION :
TEMPORARY LIVING UNIT
EDUCATION INSTITUTE
BASAVANAGUDI (2019)
SPACE (2020)
KOTAGIRI (2019)
BASAVANAGUDI (2020)
37.
40.
TECHNICAL DRAWINGS
PARAMETRIC EXPLORATION
PROJECT LOCATION :
PAVILION AND DIGITAL LEARNING EXPLORATION
BANGALORE (2019) OFFICE PROJECT
1. HOSPITALITY PROJECT LOCATION : SHILLONG
Angshuman Das | Minni Sastry | Shiny Prabhakar |Archana Vittal
WHAT IS A CLIMATE RESPOSIVE BUILDING? Exploration of climate responsive architecture by designing a hotel on a site with a 17 meter slope from three directions. What factors do you consider in a climate responsive building in areas with harsh terrain and weather ?
Climate responsive architecture in extreme climatic zones of India Recently, the presence of global climate change has been very prevalent. Considering that buildings and their construction amount to 36 percent of global energy consumption and 39 percent of energy related carbon emissions, it is high time we try and reduce the carbon footprint of our architecture and methods of construction. This project aims to demonstrate detailed design strategies, passive design interventions and overall hopes to reduce the building’s reliance on artificial sources of comfort; On a site where the building also has to respond to the harsh climatic conditions and geographical contexts of Shillong, Indian.
3. Hospitality Project | Shillong Divya Ravi | Portfolio 2021
Rain water harvesting gutter Sloped roof to lead the run off
The southern block is lower than the northern block to accomodate forsunlight and to provide a slope for the solar panels.
Double glazing to retain heat gained Light weight thermal massing done to walls
Only a portion of the site gets a large amount of sunlight and only in the Southern direction. -According to the sun path(andaccording to climate consultant) the most amount of radiation recieved on site is during 8 am - 2 pm in the day -15 - 25 degree is the tilt provided for the solar panels to aquire maximum raidation. -Sunspace corridors towards the southern direction is an intevension provided for maximum solar heat gain. - The vent are used to help diffuse some of the heat gained by the intervensions during summer to avoid having an uncomfortable atmosphere as well as provide ventilation for the humidity. Hospitality Project | Shillong Divya Ravi | Portfolio 2021
4.
THERMO BI METAL (used in thermostats or circuits) : is used as a trigger which will open or close the shutter. The thermo bimetal is connected to a spring mechanism.
Long Pepper creapers
Buckwheat cover crop
Khasi Pine
Bi metal strip
Super light weigh louvers
When the sun shines on the metallic strip , it curls and creats tenssion in the spring, allowing the shutter to open and increase the solar heat gain through the glass surface. When the sun stops shinning on the metal, it unclurls, and the shutters close.
LIGHT WELLS to provide light to the lower areas
Local and natural vegetation provided for landscaping to reduce lanscape water demand.
BIPV GLASS SHELL generates all the electricity(solar) for the building.
Sewage collection tank 5. Hospitality Project | Shillong Divya Ravi | Portfolio 2021
Sewage pump
Sewage Treatment plant (STP)
SHEAR WALL system for stability. wide collumns (stilts ) to provide flexibility to structure.
STRUCTURAL SYSTEM for earthquake prone zones
WATER BALANCE SHEET FOR THE BUILDING: FUNCTION
AREA
ROOF AREA FOR ROOMS:
8 X 5 = 40
AREA TOTAL
LITER REUIREMENT PER DAY 180 / head
40 X 40 = 1440
1600
25 x 8 = 200
200
ROOF AREA FOR LOBY SPACE
ACCORDING TO IS CODE : HOTEL NUMBER OF OCCUPANTS
75 + 25 100
1800
NUMBER OF LITERS REQUIRED PER DAY
180 X 100
ROOF AREA FOR THE GLASS SCREEN
18,000 Lts / day
left - ( 94.4 +58.5+17.6+16+48+19.2 +26)
305
right - (94+80+46+40.6+19.2)
305
RUN OFF COEFFICIENT
0.75 (avg. roof)
0.75 x 3.38 x 1800
0.9 (glass)
0.9 x 3.38 x 600
7 months - max = 100 occupants
18,000 Lts / day
4,563 + 1825
6,388 Msq
18, 000 x 210
37,80,000 Lts
63,88,000 LTS
5 months - min = 72 occupants
12,960 Lts / day
12,960 x 150
19,44,000 Lts
SWIMMING POOL VOLUME
83 M^3
600
83000 LTS WATER USAGE PER YEAR
annual rainfall recieved in Shillong = 3.38 mts
AREA OF THE SITE
2.5 acres
RUN OFF COEFFICIENT
0.3 - 0.6 0.45
10117 Msq (-2198)
swimming pool chnages (bio pool) 83,000 x 5
415,000 Lts
7,919 x 0.45 x 3.38
TOTAL water usage per year (37,80,000 + 19,44,000 +415,000)
61,39,000 L
12,044 Msq
MONTHS
RAINFALL RECEIVED (mm)
EFFECTIVE RAINFALL (mm)
HARVESTED WATER (L)
JANUARY
13
8
22000
BUILDING WATER DEMAND (L)
SESONAL FACTOR (IRRIGATION) (L)
IRRIGATION WATER DEMAND (L)
200880
61380
17
12
29000
522000
100%
130500
261000
130500
MARCH
79
74
134000
558000
100%
139500
279000
139500
305000
540000
100%
APRIL
180
MAY
403
398
684000
558000
50%
69750
279000
209250
JUNE
851
846
1443000
540000
20%
27000
270000
243000
691
1180000
401760
50%
139500
GREY WATER UNUSED GREY GENERATED (L) WATER (L)
FEBUARY
175
401760
20%
67500
270000
202500
JULY
696
27900
200880
AUGUST
480
475
814000
401760
20%
27900
200880
172980
SEPTEMBER
387
382
644000
388800
20%
27000
194400
167400
172980
OCTOBER
234
229
397000
558000
50%
69750
279000
209250
NOVEMBER
37
32
63000
540000
100%
135000
270000
135000
DECEMBER
8
3
13500
401760
100%
139500
200880
LANDSCAPE WATER DEMAND IRRIGATION (max) : [m2 x l/m2]
3000
1.5
(METER SQ.)
(LITERS)
61380 TOTAL IRRIGATION DEMAND
1000800 (LITERS)
1,20,44,000 L LANDSCAPE WATER DEMAND IRRIGATION (max) : [m2 x l/m2]
JAN
FEB
MARCH
APRIL
MAY
JUNE
JULY
AUG
SEPT
OCT
3000 m2
NOV
1.5 L
DEC
13
17
79
180
403
851
696
480
387
234
37
8
0.013
0.017
0.079
0.18
0.403
0.851
0.696
0.48
0.387
0.234
0.037
0.008
22
29
134
305
684
1443
1180
AVG. RAINFALL CONVERSION TO METERS ROOFTOP X RUN OFF COEFF.
2198 X 0.8 = 1758 814
644
397
63
13.5
MTS/MONTH AVG. LTS = MTS X 1000
Hospitality Project | Shillong Divya Ravi | Portfolio 2021
6.
1905120
GYM AND SPA
AUDITORIUM
SERVICE CORE SERVICE CORE
RESTURANT BAR AND LOUNGE
PARKING
Basement Plan
Ground Floor Plan
FIRE ESCAPE STAIRCASE
SUNKEN SLAB FIRE ESCAPE STAIRCASE
7. Hospitality Project | Shillong Divya Ravi | Portfolio 2021
Section through South Block (AA’)
A B
REGULAR SIZEDSUITE
BIGGER SUITE SUN SPACE CORRIDOR
SERVICE CORE
SERVICE CORE
SECONDARY SERVICE CORE
SECONDARY SERVICE CORE
A
B
North Block Floor Plan
South Block Floor Plan
LIGHT WELL AS WELL AS SERVICE CORE FIRE ESCAPE STAIRCASE FIRE ESCAPE STAIRCASE
ATRIUM
Section through North Block (BB’)
Hospitality Project | Shillong Divya Ravi | Portfolio 2021
8.
2. LARGE SCALE HOUSING PROJECT
LOCATION : BASAVANAGUDI, BANGALORE
Edgar De’mello| Nandita Srinivas| Nilay Patalia| Shravan Pradeep
CAN A LARGE SCALE HOUSING PROJECT IN A LIMITED AREA BE MORE THAN JUST AN AREA TO LIVE IN? This project explores the difficulties of fitting about 65 living units on a 1 acre plot, with the inclusion of multiple social design intervensions.
Large scale projects in an urban context have multiple restrictions; The main one being building Bylaws. This project is an introduction to maximizing area usage while providing multiple recreational and community areas throughout. It also looks into the world of community spaces and creating semi public areas for the community. The project site is located in Basavanagudi, next to a junction of main roads. The design intends to give people a space to get away from the hustle of the busy roads (both living in the social housing project and outside ). Since the project is located in a junction which experiences a large number of vehicles throughout the day, the addition of Acoustic Louvers was done to help provide a peaceful environment and protect the occupants by the filtering noise from the main roads.
11. Housing Project |Bangalore Divya Ravi | Portfolio 2021
ACCOUSTIC LOUVERS FOR NOISE CANCELATION
The design accounts for a space in the south-west corner of the site as the place obtains adequate light and ventilation and is right next to the Ram Krishna Ashram.
1 bedroom studio appartment
2 bedroom appartment
Cut out area
terrace garden
The spaces provided in the center of the structure creates blocks and separations in the project which provides sunlight and ventiltion to filter into the building and prevents it from being claustrophobic. The blocks are connected to each other with the help of bridges provided in between these blocks. The spaces that are highlighted by the hatch are multipurpose spaces that may or maynot be used for terrace gardening or as a play area for children etc. Or as a small community space on each floor.
Cut out for light to filter in to the lower levels
Accoustic louvers
Section through the building
Housing Project | Bangalore Divya Ravi | Portfolio 2021
12.
Community Space
FIRST FLOOR PLAN
4 internal cores
SECOND FLOOR PLAN The diagram below shows the area with the accoustic louvers to prevent noises from endering the private units GROUND FLOOR PLAN
13. Housing Project | Bangalore Divya Ravi | Portfolio 2021
The diagram below shows the axis of the form
ELEVATION VIEWS
THIRD FLOOR PLAN
FOURTH FLOOR PLAN
The diagram on the left dipicts the community movement through the building. BASEMENT PLAN Housing Project | Bangalore Divya Ravi | Portfolio 2021
14.
3. REDESIGNING A LITERARY CENTER
LOCATION : BASAVANAGUDI, BANGALORE
Dev Bildikar | Nagaraj Vastarey | Pankaj Shivarama | Hiranmayi S
HOW DO WE MAKE A LITERARY CENTER A SPACE FOR THE PUBLIC? AN AREA OF PUBLIC INTEREST . This project explores the redesigning of a public space to be more inclusive and attract the public by being welcoming. This project focuses on the exploration of building skin.
Architecture involves the designing of spaces that can make us feel enclosed, liberated , comfortable or safe. This act leads us to react to the space; makes us slow down, speed up or stop to contemplate. Writers, in creating their literary structures, do exactly the same. In architecture, once you remove the skin of the structure — the “language” of walls, ceilings and slabs — all that remains is space. In writing, once you remove language itself, the actual words, what’s left? This design tries to bring out the contrast in skins between the multiple blocks as well as tries to build a connection between the literary center and the public.
17. Literary center Project | Bangalore Divya Ravi | Portfolio 2021
The main intenet of this project is to provide a better designed structure for the existing literary center. The contrasting styles of the building are derived from the two genre of literature : - Fiction and - Non - Fiction The Glass frame block ( highlighted in blue) depicting the fictional aspect of literature and the masonry block (highlighted in yellow) depicting the non fictional aspect. The bridge in between sybolises the bridge between the two genre.
BLOCK A : The material used to build the block is stone, brick and cement(mortar). The solid imposing form represents the fact based aspect of non fictional literature.
AUDITORIUM
RESIDENTIAL BLOCK
SUPPORT COLUMN
BASEMENT
Literary Center Project | Bangalore
SECTION THROUGH SOLID MASONRY BLOCK
Divya Ravi | Portfolio 2021
18.
THE SUN PATH RESPONSIVE LOUVERS The louvers are built, out of light wood based material, to respond to the sun using digital architecture. The sun path of Bangalore is inputted into the program and therefore it responds to the path of the sun. The louvers used to provide shading to block B due to its glass facade.
CLOSED
OPEN
The blue shaded blue area is the glass and the red lines are the steel components supporting the building.
SEMI OPEN
BLOCK B : Built with a glass , steel and concrete ( immaterial) and depicts the fictional aspect of literature. It houses the cafeteria, library , the studios as well as the book store.
The highlighted red
OFFICE LECTURE HALL CAFE
BOOK STORE
BASEMENT
19. Literary center Project | Bangalore Divya Ravi | Portfolio 2021
SECTION THROUGH GLASS BLOCK
RESIDENTIAL BLOCK
LECTURE HALL
LECTURE HALL RESIDENTIAL BLOCK
BOOK STORE AUDITORIUM
CAFE
GROUND FLOOR PLAN RESIDENTIAL BLOCK
AUDITORIUM
LECTURE HALL
LIBRARY
AUDITORIUM
FIRST FLOOR PLAN SECOND FLOOR PLAN
This diagram depicts the movement of the public users in relation to the exteriors of the building. The communication between user and literary center.
Literary Center Project | Bangalore Divya Ravi | Portfolio 2021
20.
4. SMALL SCALE TREE HOUSE PROJECT
LOCATION : KOTAGIRI
Angshuman Das | Minni Sastry | Shiny Prabhakar |Archana Vittal
DEVELOPING A SELF SUSTAINING MODULE This project is designed to be as sustainable as possible. This Climate responsive structure, for a private client, is made efficient by using multiple softwares and passive design interventions.
The designing of a small sustainable building was to be an introduction to the concept of building a climate responsive building and sustainable thinking. This is a building that aims to be as sustainable as it can and is calculated and proved to be a NZEB building. The project was located in Kotagiri, A hill station experiencing a maximum temperature of 24° and a minimum temperature of 7°. Kotagiri has a large number of fields and step plantations which often grow coffee. The Project is located in a plantation, at the edge of the plantation bordered by a sloping terrain .
23. Tree House Project | Kotagiri Divya Ravi | Portfolio 2021
A cover crop is also used for landscaping to prevent errosion .
Waterways are provided to collect rain water run off in the catchment area.
A sunsapce is provided here to collect heat due to the cold climate.
The Hydro electric motors are placed here to generate extra electricity during heavy rainfall.
A wood wool based structural insulated panel is used for this project to prevent the heat collected from escaping (thermal mass). Eucalyptus trees are known to ve a tall tree with largely lateral roots. The building is placed 8 meters away from the tree to prevent the roots from being dammaged. Tree House Project | Kotagiri Divya Ravi | Portfolio 2021
24.
LIGHT ORANGE SPACES:
sun spaces provided along the large windows to retain solar heat gain.
ORANGE LINING:
rain water gutter that collects run off from both the roof and the fog water collection system. PLAN AT 4 MTS (FIRST FLOOR) the rain water harvesting gutters are depicted in orange. The Red shaded area is a fog water collection system from which water is collected using recycled mesh. This technique is used in multiple hilly areas.
PLAN AT 7 MTS (SECOND FLOOR) only partial plan due to double roof for half the project. It is a balcony area for viewing the context
INTERVENTIONS PROVIDED IN THE DESIGN: - The roof has a tilt of 11 degree ( based on the sun path and thermal radiation charts and also has solar panels on the south. - The roof is made of PUF panels that are pre fabricated and are very eco friendly. - There is a sun roof on the top and helps heat the building from the top. - The vegetative waterways surround all the trees to prevent any runoff to affect the trees and their roots. - Conservatories , or sun spaces are used for maximum solar radiation absorption and retention. 25. Tree House Project | Bangalore Divya Ravi | Portfolio 2021
SECTIONAL VIEW
The plan given( on the right) is the washroom area which is supported by the staircase supports and the main column support. - WASTE DISPOSAL WET WASTE(liquide): BioBox is a biological treatment unit for small amounts of grey waters. (Biobox L 400l/24h) Purification method: Organic material and nutrients are removed by biofiltration (biofilm) process. Bio- Box has been tested in Projects. DRY WASTE (solid) Dry pit using sawdust and straw are used for solid waste to reduce structural footprint and eco friendly purposes.
Rain water harvesting tank Secondary support system.
The main support system : small area of land is affected.
COLUMN SUPPORT (TRIANGULAR FOR STABILITY)
PLAN AT 1.5 MTS (bathroom)
FOG AND RAINWATER HARVESTING : material used : metal mesh with a polymere lining or a polyethene mesh with a PVDF lining which helps yeild 70 cm of fog per hour.
SECTIONAL VIEW Tree House Project | Kotagiri Divya Ravi | Portfolio 2021
26.
5. INTERIOR DESIGN PROJECT
This Project is an Interior design project which is designed specifically for MAHARANI GAYATRI DEVI, an Indian public figure. The context of this project is the Neo Classical room from th movie; 2001: A Space Odyessey. The intent of the project was to design a living spcaes in a context that is completely out of the clients comfort zone but convert the space through interior design to fit the clients needs.
LOGO DESIGNED FOR MAHARANI GAYATRI DEVI
27. InteriorDesign Project |Space Divya Ravi | Portfolio 2021
Maharani Gayatri Devi was the third Maharani consort of Jaipur from 1940 to 1949. She was a independant emodiment of the modern women with her feminist, open minded view of the world. She ran for parliment in the year 1962 and won the constituency in the Lok Sabha. She was known as the Raj mata of Jaipur.
Multicoloured fabric ribbons are used to create a semi partition that is then extended to become a colourful canopy. This method is used to create separation in a room with a small area and an open plan.
A rope like blue canopy is provided above the bed to continue the canopy effect and to provide a shadow effect for the light facing the ceiling.
The blue partitions are made of a smaller diameter rope to aid to the immateriality of the partition
The dark blue canopy, to the right, is similar in concept but is designed to be made from elastic rope which aid the moveable partition. It is held in place using floor magnetic holders and magnets attached to the wall.
Interior Design Project | Space
Divya Ravi | Portfolio 2021
28.
BEDROOM AREA
STUDY AND MULTIPURPOSE AREA MULTIPURPOSE AREA LIBRARY + FOYER STUDY
TRANSVERSE SECTIONS STUDY WASHROOM
ENTERANCE
WARDROBE AREA
PLAN
ENTERANCE
STUDY
BEDROOM
LONGITUDINAL SECTIONS FABRIC CANOPY BEDROOM
STUDY
WASHROOM
- The permiability and transparency of the partition walls provide a lighter and more spacious looking room ( less clostrophobic). - The moveable partition allow for a change in room dimension and therefore a break in monotony. -The partitiona and movement are derived from the game of polo which she adored during her youth
DETAILED WALL SECTIONS
Aluminium flooring etched with the grid type pattern from the original room flooring.
LIGHTING SECTIONS The lighting used here is an engineered LED used by astronauts to simulate the conditions of the sun. This is to maintain the cycle our bodies are naturally used to as these functions are dictated by the rising and setting of the sun.
FURNITURE LAYOUT
Interior Design Project | Space Divya Ravi | Portfolio 2021
30.
6. SOLAR DECATHLON
EDUCATIONAL INSTITUTE LOCATION : BASAVANAGUDI, BANGALORE
Minni Sastry | Archana Vittal | Indranil Bhattacharya| | Mayank Singh
The project was a montessori school designed as per solar decathlon criteria. It uses multiple softwares and passive design interventions in the hopes of becoming a Net Zero building.
31. Solar Decathlon Project | Bangalore Divya Ravi | Portfolio 2021
Team members : Ankita L, Arivudainangai k, Bhakti Munvar, Sharmila Joshi, Devayani M, Gurucharan G, Jahnavi J, Pratik Tushar, Fariah Inas, Vaishnavi S, Nandita HL, Jyothsna BS
The context and micro climatic studies show the major problem areas and elements, such as noise, wind direction etc., that our building needs to address. The sun shines largely in the southern direction and therefore the orientation is decided considering this observation.
The noise enters the site,due to the main roads bordering two sides, and therefore from that direction. The fenestration is designed based on the wind speed and wind direction ( and daylight factor) primarily for ventilation.
Winds are not required to achieve thermal cooling conditions. -Winds are It not required to achieve is better to catch rainwater from western thermal cooling conditions. -Western winds - prominent from sides. May-October. They bring max rainfall specially in Aug to Oct -Eastern winds - prominent from Nov to March- less rainwater and slower wind than western winds -It is better to catch rainwater from western sides.
The temperature and humidity levels are considered to maintain comfort levels (which are based on NBC standards).
Inferences
-Average temperature falls under comfort zone throughtout the year. -Rainfall is high from August to October water consumption 1400000 1200000 1000000 800000
Average temperature falls under comfort zone throughtout the year. Rainfall is high from August to October.
600000 400000 200000 0
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEPT
OCT
NOV
DEC
Monthly Water The Requirements Amount :of
rainfall is crucial in trying to design a NET ZERO building as water demand is an important criteria.
(only students) -No. of students=900 -Total= 40500ltr/day
Solar Decathlon Project | Bangalore Divya Ravi | Portfolio 2021
32.
Tenbroeck Academy is a private entity, the first school in South Bangalore to extend the Montessori Method to grade 6. This aims to provide a holistic approach in helping children develop a passion for learning and preparing them for life.
FIRST FLOOR PLAN
Their mission is to help children develop a deep-rooted sense of community and make them aware of their heritage, history and value systems by incorporating additional intense and comprehensive after school programs. HOW WAS THIS APPROACHED FROM A DESIGN PERSPECTIVE ?
SECOND FLOOR PLAN
- Use of open spaces: The different open spaces are articulated to serve varied functions like OAT for morning assembly and other functions. The Upper open spaces for extended classrooms and informal learning in green spacesIntegration of arches and vaulted structural system - Non-conventional classroom layouts- aid montessori design: The montessori classrooms demand a more free and creative layout of furniture with more open spaces and functional elements; like blackboard shutters for cupboards and colourful paintings/mats on the floor instead of conventional table and chair layouts
THIRD FLOOR PLAN
33. Solar Decathlon Project | Bangalore Divya Ravi | Portfolio 2021
DAILY CONSUMPTION
23490
MONTHS
RAINFALL RECEIVED (mm)
EFFECTIVE RAINFALL (mm)
HARVESTED WATER (L)
BUILDING WATER DEMAND (L)
SESONAL FACTOR (IRRIGATION) (L)
IRRIGATION WATER DEMAND (L)
GREY WATER GENERATED (L)
UNUSED GREY WATER (L)
FRESH WATER REQUIREMENT
MUNICIPAL WATER
GREY WATER REQUIREMENT AND EXCESS
31
JANUARY
1
0
919.7
728190
100%
30355.2
655371
625015.8
334800
333880.3
393390
231625.8
28
FEBUARY
4
0
3678.8
657720
100%
28396.8
591948
563551.2
302400
298721.2
355320
208231.2 231625.8
31
MARCH
8
3
7357.6
728190
100%
30355.2
655371
625015.8
334800
327442.4
393390
30
APRIL
36
31
33109.2
704700
100%
29376
634230
604854
324000
290890.8
380700
224154
31
MAY
96
91
88291.2
728190
50%
15177.6
655371
640193.4
334800
246508.8
393390
246803.4
30
JUNE
68
63
57941.1
704700
50%
14688
634230
619542
324000
266058.9
380700
238842
31
JULY
98
93
85532.1
728190
20%
6071.04
655371
649299.96
334800
249267.9
393390
255909.96
31
AUGUST
116
111
102086.7
728190
20%
6071.04
655371
649299.96
334800
232713.3
393390
255909.96
30
SEPTEMBER
182
177
162786.9
704700
20%
5875.2
634230
628354.8
324000
161213.1
380700
247654.8
31
OCTOBER
150
145
133356.5
728190
50%
15177.6
655371
640193.4
334800
201443.5
393390
246803.4
30
NOVEMBER
56
51
46904.7
704700
50%
14688
634230
619542
324000
277095.3
380700
238842
31
DECEMBER
16
11
14715.2
728190
50%
15177.6
655371
640193.4
334800
320084.8
393390
246803.4
736679.7
8573850
900 1082
ROOF TOP AREA NUMBER OF OCCUPANTS
3205320.3 LANDSCAPE WATER DEMAND
GREY WATER USED NUMBER OF OFF WORKING DAYS : 12690 Lts 365 RUN COEFFICIENT 0.85 FRESH WATER USED : 10800 Lts
NUMBER OF WORKING DAYS : 365 576 1.7 NUMBER OF OCCUPANTS: 900
IRRIGATION (max) : [m2 x l/m2]
12690
GREY WATER USED
(METER SQ.)
FRESH WATER USED BUILDING WATER FIXTURES10800
NO. OF FIXTURES
FLOW RATES
NO. OF USES
(LITERS)
TOTAL IRRIGATION DEMAND
211409.28 (LITERS)
WATER CONSUMPTION
WOMEN
MEN
FLUSH ( WASHING CLOSET)
24
21 (18+3)
3
3
8100
3205320
FLUSH (SOLID)
24
21
4.5
1
4050
5899166
URINALS
0
24
0.4
3
540
WATER BASIN FAUCETS
48
(12 + 36)
2
3
5400
STAFF WASHROOM
12
4.5
3
DRINKING WATER FOUNTAIN
2
2
1
1800
12690
Grey water used
CAFETERIA WASH BASIN
1
2
2
3600
10800
Fresh water usage
DAILY CONSUMPTION
DAILY CONSUMPTION : 23490 Lts
ROOF TOP AREA: ANUAL 1082CONSUMPTION mts
23490 8573850
RUN OFF COEFFICIENT : 0.85
Our water consumption has reduced drastically after installment of the Low Flow Faucets. The Fresh water being consumed by the municipality lines (city lines) reduces by 45 %. Base case Municipal water demand : 5899166 TANK SPECIFICATIONS: Efficient system Municipal water demand : 3205320 Our base case water consumption was based on NBC which led to the consumption being 40, 500 L per day , using more efficient fixtures and a more efficient design we reduced the daily consumption to 23, 490 L per day. According to the water balance sheet, we have an excess of filtered grey water , which leads to the recharge pit (along with the ground run off) to help recharge the groundwater table. WATER SOURCE (RAIN WATER) GROUND RUNOFF : RECHARGE PIT
ROOFTOP RUNOFF
GREY WATER FILTRATION
RAIN WATER STORAGE TOILETS AND URINALS
EXTERNAL WATER SOURCE: MUNICIPAL WATER
54.33513822
DRINKING WATER FOUNTAIN AND BASINS
LANDSCAPE IRRIGATION
- GREY WATER TANK : 7550mm * 28000mm * 3500mm. Area : 215 m2, Height : 3.5 mts. Capacity : 753676 L. - FRESH WATER TANK 7500mm* 20000mm* 2500mm. Area : 154 m2 , Height : 2.5 mts. Capacity: 383962 L. - RAIN WATER TANK 6500mm* 11500mm* 2500mm. Area : 75 m2 , Height 2.5 mts. Capacity: 187205 L.
2873205.72
7. TECHNICAL DRAWINGS AND PARAMETRIC ARCHITECTURE
Indranil Bhattacharya | Megha Nanaiah | Goutham Nandakumar
The last two installments are to show my progress in the course and my learning as well as the skills I have acquired throughout my years in this course.
KEY PLAN
40000 36000 18750
A
9000
9000
B
9000
C
1
D c'
b'
c''
9000
E
d'
8000
LEGEND
2 MEETING ROOM
WORKSPACE
DIRECTOR
3
NOTES
8000
2'
TOILET
40000 8000
3'
3''
4
DATE: REVISION
FIRE STAIRCASE 4'
4' WORKSPACE WORKSPACE
4''
8000
DESCRIPTION:
SHEET NUMBER: 01901_A_B_00_WD_02 SHEET TITLE: FIRST FLOOR PLAN
5 MEETING ROOM
SCALE AND SIZE: 1:125 NAME :
DIVYA RAVI (1RW17AT026) SEC 'A' , SEM V , B. Arch R.V.C.A
CHECKED BY: WORKING DRAWINGS-I (15ARC 5.7)
40000
A
TECHNICAL DRAWINGS
C
D c'
b'
1
E
d'
SEWAGE TREATMENT PLANT (8.5 MT X 3.3 MT)
HT PANEL
Indranil Bhattacharya | Megha Nanaiah
c''
HT YARD
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
D G YARD (4 MT X 3MT) (D G = 2225 X 1000 X 1300)
CAPACITOR PANEL
MAIN MV PANEL
This is an office building located in Bangalore. This project shows my understanding of architectural components and the workings of services ina building. As well as the codes and bylaws of the state.
9000
FIRE HYDRANT (18 MT HOSE REAL WITH 6 MT THROW)
B
8000
MAIN MV PANEL
2
PS
3000 2700
WORKSPACE WORKSPACE
3300
DIRECTOR
3300
4300
WORKSPACE
3500
2'
3
8000
3800 WORKSPACE
WORKSPACE
TOILET
40000 3500
3300
3'
WORKSPACE
8000
4300
WORKSPACE
3
3500
2'
2000
TOILET
3''
3500
4
3'
3500
1700
FIRE STAIRCASE
2000
4'
3''
4
FIRE STAIRCASE
1700
RECEPTION
4'
4''
BUILDING MANAGEMENT SYSTEM
4''
BUILDING MANAGEMENT SYSTEM
8000
BASEMENT VENTILATION SHAFT
BASEMENT VENTILATION SHAFT
4400
4400
1500
5
1500
5
ROAD
KEY PLAN
A
C
B
ROAD
D
GROUND FLOOR PLAN
E 40000
A
D c'
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
WALLS INTERNAL = BRICK MASONRY
HEADROOM
RETAINING WALLS THKN= 300 mm & 450 mm
D G YARD (4 MT X 3MT) (D G = 2225 X 1000 X 1300)
CAPACITOR PANEL
MAIN MV PANEL
SCHEDULE:
WORK SPACE
SCHEDULE OF DOORS AND WINDOWS
NUMBER DOOR TYPE D 1 D1 2 D2 1 D3 3 D4 5 WINDOW TYPE NUMBER 10 W W1 4 W2 2 V 3
TOILET WORK SPACE
TOILET
8000
MAIN MV PANEL
DIMENSION 3650 X 3000 1600 X 2700 950 X 2700 770 X 2100 600 X 2100 DIMENSION 3100 X 2900 2900 X 2900 940 X 2900 600 X 950
2
PS
CD
CD
CD
WORKSPACE WORKSPACE
NOTES:
- All Dimensions are measured in millimeter - Do not scale the drawings - Follow the written dimensions 2'
TOILET WORK SPACE
3
TOILET WORK SPACE
1
REVISED AS MARKED AND AS PRE REVISION HISTORY
0
ISSUED FOR CONSTRUCTION
REV. NO
DESCRIPTION
3'
REVISIONS
CHECKED BY:
TOILET
SIGN
DATE
ARCHITECTURE
STAIRCASE
CIVIL AND STRUCTURE ELECTRICAL
3''
4
COMPANY NAME:
JOB NO : 15 ARC 6.7 (WD- 2)
PARKING SPACE
RAMP SPACE
DSGN
DIVYA RAVI
DRWN
DIVYA RAVI
4'
-2800
TOILET
40000 CD
DESIGNED
DRAWN
CHECKED
CHECKED BY:
SIGN
APPROVED
8000
DATE DB ( Distribution board) RPDB LDB UPDB ELDB
PIPING PHE SYSTEM
SECTION 1 (ARCH.)
FIRE STAIRCASE
N
RECEPTION
APPD
SCALE SECOND BASEMENT -6800
BUILDING SECTION
01901_A_B_00_WD_06
NAME : DIVYA RAVI USN: 1RW17AT026 SEMESTER: VI SECTION: A
BUILDING MANAGEMENT SYSTEM
4''
1:100
DRAWING NUMBER:
PARKING SPACE
Divya Ravi | Portfolio 2021
FINISHING MATRIX - Walls are finished with 20 mm thick WORKSPACE plaster ( on both sides for fire escape staircase to provide for 20 min fire safety - Parking area = cemented floor finish - Skirting = 10 mm vitrified tiles
CHKD FIRST BASEMENT
37. Technical Drawings| Bangalore
WORKSPACE
WORKSPACE
HVAC (PACKAGE UNITS) FIRE PROTECTION SYSTEM
ELV SYSTEM
DIRECTOR
8000
- Total floor area = 3360 m 2 - Yard hydrants = 18 mts hose with 6 mt throw - HT yard for building = 125 m2 area
WORK SPACE
WORK SPACE
E
d'
SEWAGE TREATMENT PLANT (8.5 MT X 3.3 MT)
HT PANEL
WALLS EXTERNAL = REINFORCED STEEL CONCERT
c''
HT YARD
DRY TYPE TRANSFORMER
FOUNDATION = REINFORCED STEEL CONCERT
RAMP SPACE
C
b'
1 MATERIAL SCHEDULE : WATER TANK plastic water cylinder
9000
FIRE HYDRANT (18 MT HOSE REAL WITH 6 MT THROW)
B
CD
BASEMENT VENTILATION SHAFT
5
REFLECTED CEILING PLAN
8000
KEY PLAN
40000
A
9000
FIRE HYDRANT (18 MT HOSE REAL WITH 6 MT THROW)
C
B
D c'
b'
1
E
d'
SEWAGE TREATMENT PLANT (8.5 MT X 3.3 MT)
HT PANEL DRY TYPE TRANSFORMER
c''
HT YARD
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
DRY TYPE TRANSFORMER
MATERIAL SCHEDULE : D G YARD (4 MT X 3MT) (D G = 2225 X 1000 X 1300)
CAPACITOR PANEL
MAIN MV PANEL
FOUNDATION = REINFORCED STEEL CONCERT
8000
LIGHTING UNIT LIGHTING LINE
WALLS EXTERNAL = REINFORCED STEEL CONCERT
LIGHTING DIMENSIONS :
WALLS INTERNAL = BRICK MASONRY RETAINING WALLS THKN= 300 mm & 450 mm
600 X 600 mm
MAIN MV PANEL
1300 X 108 mm 300 X 38mm
2
KEY PLAN
PS
SCHEDULE:
SCHEDULE OF DOORS AND WINDOWS
NUMBER DOOR TYPE D 1 D1 2 D2 1 D3 3 D4 5 WINDOW TYPE NUMBER 10 W W1 4 W2 2 V 3
WORKSPACE WORKSPACE
DIRECTOR
8000 WORKSPACE
WORKSPACE
WORKSPACE
3
DIMENSION 3650 X 3000 1600 X 2700 950 X 2700 770 X 2100 600 X 2100 DIMENSION 3100 X 2900 2900 X 2900 940 X 2900 600 X 950
D4
D4
MATERIAL SCHEDULE : FOUNDATION = REINFORCED STEEL CONCERT
NOTES:
2'
TOILET
40000
3'
8000
DB ( Distribution board) RPDB LDB UPDB ELDB
3''
4
FIRE STAIRCASE 4'
WALLS EXTERNAL = REINFORCED STEEL CONCERT
1
800 X 800 REVISED AS MARKED AND INSPECTION AS PRE REVISION HISTORY CHAMBER
0
ISSUED FOR CONSTRUCTION
REV. NO
DESCRIPTION
CHECKED BY:
BUILDING MANAGEMENT SYSTEM
4''
SIGN
ARCHITECTURE
8000
RETAINING WALLS THKN= 300 mm & 450 mm
50 Ø uPVC FINISHING MATRIX WASTE PIPE - Walls are finished with 20 mm thick plaster ( on both sides for fire escape staircase to provide for 20 min fire safety - Parking area = cemented floor finish 25 Ø SUPPLY - Skirting = 10 mm vitrified tiles PIPE
- All Dimensions are measured in millimeter - Do not scale the drawings - Follow the written dimensions
REVISIONS RECEPTION
WALLS INTERNAL = BRICK MASONRY
- Total floor area = 3360 m 2 - Yard hydrants = 18 mts hose with 6 mt throw - HT yard for building = 125 m2 area
D3
DRAWN
CHECKED
DATE CHECKED BY: 150 ØHVAC CI PIPE (PACKAGE UNITS)
APPROVED
110 Ø WASTE PIPE (grey water) SIGN DATE
CIVIL AND STRUCTURE
FIRE PROTECTION SYSTEM
ELECTRICAL
PIPING PHE SYSTEM
110 Ø SOIL PIPE (black water)
JOB NO : 15 ARC 6.7 (WD- 2) DIVYA RAVI
DRWN
5
GROUND FLOOR LIGHTING (ARCH.)
DIVYA RAVI
DSGN
CHKD APPD
SCALE
N
50 Ø uPVC WASTE PIPE 40 Ø uPVC WASTE PIPE
D4
25 Ø SUPPLY PIPE
C
D c'
b'
1 DRY TYPE TRANSFORMER
ISSUED FOR CONSTRUCTION DESCRIPTION
c''
ELECTRICAL
PIPING PHE SYSTEM
COMPANY NAME:
D3
1:100
DSGN
DIVYA RAVI
DRWN
DIVYA RAVI
APPD
SCALE
1:25
DRAWING NUMBER:
01901_A_B_06_WD_01
NAME : DIVYA RAVI USN: 1RW17AT026 SEMESTER: VI SECTION: A
PHE DETAIL PLAN
KEY PLAN
E
MATERIAL SCHEDULE :
8000
MAIN MV PANEL
FOUNDATION = REINFORCED STEEL CONCERT
PACKAGE UNIT DIFFUSER
WALLS EXTERNAL = REINFORCED STEEL CONCERT
PACKAGE UNIT GRILL
WALLS INTERNAL = BRICK MASONRY
DUCT CONNECTING THE UNITS TO THE SHAFT
RETAINING WALLS THKN= 300 mm & 450 mm
2
PS
SCHEDULE:
SCHEDULE OF DOORS AND WINDOWS
WORKSPACE WORKSPACE
NUMBER DOOR TYPE D 1 D1 2 D2 1 D3 3 D4 5 WINDOW TYPE NUMBER 10 W W1 4 W2 2 V 3
DIRECTOR
8000 WORKSPACE
WORKSPACE
WORKSPACE
3
2'
DIMENSION 3650 X 3000 1600 X 2700 950 X 2700 770 X 2100 600 X 2100 DIMENSION 3100 X 2900 2900 X 2900 940 X 2900 600 X 950
NOTES: TOILET
40000
3'
8000
3''
4
FIRE STAIRCASE 4'
BUILDING MANAGEMENT SYSTEM
4''
- Total floor area = 3360 m 2 - Yard hydrants = 18 mts hose with 6 mt throw - HT yard for building = 125 m2 area - All Dimensions are measured in millimeter - Do not scale the drawings - Follow the written dimensions
1
REVISED AS MARKED AND AS PRE REVISION HISTORY
0
ISSUED FOR CONSTRUCTION
REV. NO
DESCRIPTION
CHECKED BY:
8000
SIGN
DATE
ARCHITECTURE
DRAWN
CHECKED
CHECKED BY:
SIGN
APPROVED
DATE
HVAC (PACKAGE UNITS) FIRE PROTECTION SYSTEM
CIVIL AND STRUCTURE ELECTRICAL
BASEMENT VENTILATION SHAFT
FINISHING MATRIX - Walls are finished with 20 mm thick plaster ( on both sides for fire escape staircase to provide for 20 min fire safety - Parking area = cemented floor finish - Skirting = 10 mm vitrified tiles
DESIGNED
REVISIONS
RECEPTION
PIPING PHE SYSTEM
ELV SYSTEM COMPANY NAME:
JOB NO : 15 ARC 6.7 (WD- 2)
5
DSGN
DIVYA RAVI
DRWN
DIVYA RAVI
CHKD APPD
SCALE
GROUND FLOOR HVAC (ARCH.)
N
1:100
DRAWING NUMBER:
01901_A_B_01_WD_01
NAME : DIVYA RAVI USN: 1RW17AT026 SEMESTER: VI SECTION: A
ROAD
GROUND FLOOR HVAC PLAN
PHE DET (ARCH.)
CHKD
d'
D G YARD (4 MT X 3MT) (D G = 2225 X 1000 X 1300)
MAIN MV PANEL
DRAWN
CHECKED BY:
HVAC (PACKAGE UNIT FIRE PROTECTION SYS
ELV SYSTEM
DRY TYPE TRANSFORMER
CAPACITOR PANEL
FINISHING MATRIX - Walls are finished plaster ( on both sid staircase to provide - Parking area = cem - Skirting = 10 mm
DESIGNED
DATE
JOB NO : 15 ARC 6.7 (WD- 2)
SEWAGE TREATMENT PLANT (8.5 MT X 3.3 MT) DRY TYPE TRANSFORMER
SIGN
ARCHITECTURE CIVIL AND STRUCTURE
HT YARD
HT PANEL DRY TYPE TRANSFORMER
REVISED AS MARKED AND AS PRE REVISION HISTORY
0
9000
FIRE HYDRANT (18 MT HOSE REAL WITH 6 MT THROW)
B DRY TYPE TRANSFORMER
1
REV. NO
CHECKED BY:
NAME : DIVYA RAVI USN: 1RW17AT026 SEMESTER: VI SECTION: A
A
- All Dimensions are measured in millimeter - Do not scale the drawings - Follow the written dimensions
REVISIONS
D4
01901_A_B_02_WD_01
40000
DIMENSION 3650 X 3000 1600 X 2700 950 X 2700 770 X 2100 600 X 2100 DIMENSION 3100 X 2900 2900 X 2900 940 X 2900 600 X 950
NOTES:
DRAWING NUMBER:
GROUND FLOOR LIGHTING PLAN
SCHEDULE OF DOORS AND WINDOWS
- Total floor area = 3360 m 2 - Yard hydrants = 18 mts hose with 6 mt throw - HT yard for building = 125 m2 area
D4
COMPANY NAME:
BASEMENT VENTILATION SHAFT
SCHEDULE:
NUMBER DOOR TYPE D 1 D1 2 D2 1 D3 3 D4 5 WINDOW TYPE NUMBER 10 W W1 4 W2 2 V 3
450 X 450 GULLY TRAP
DESIGNED
ELV SYSTEM
D3
Technical Drawings| Bangalore Divya Ravi | Portfolio 2021
38.
KEY PLAN
9000
9000
A
9000
C
B
D c'
b'
1
9000 c''
E
d'
8000 MATERIAL SCHEDULE : FOUNDATION = REINFORCED STEEL CONCERT
PS
POWER SOCKET POWER LINE
WALLS EXTERNAL = REINFORCED STEEL CONCERT WALLS INTERNAL = BRICK MASONRY
KEY PLAN
RETAINING WALLS THKN= 300 mm & 450 mm
2
SCHEDULE:
SCHEDULE OF DOORS AND WINDOWS
8000
3
Over Head Sump Tanks (syntax) Diameter = 1300 Height =1700
2'
PS
8000
OUTDOOR PACKAGES
3''
FIRE DUCT HVAC DUCT ELV DUCT
4
MATERIAL SCHEDULE : FOUNDATION = REINFORCED STEEL CONCERT
SLOPE 1:100
PS
4'
1
REVISED AS MARKED AND AS PRE REVISION HISTORY
0
ISSUED FOR CONSTRUCTION
REV. NO
DESCRIPTION
CHECKED BY:
SIGN
WALLS EXTERNAL = REINFORCED STEEL CONCER WALLS INTERNAL = BRICK MASONRY RETAINING WALLS THKN= 300 mm & 450 mm
FWS FWS WS WS FWS FWS
WS WS
FINISHING MATRIX - Walls are finished with 20 mm thick plaster ( on both sides for fire escape staircase to provide for 20 min fire safety - Parking area = cemented floor finish - Skirting = 10 mm vitrified tiles
SCHEDULE:
FWS FWS
SCHEDULE OF DOORS AND WINDOW
NUMBER DOOR TYPE D 1 D1 2 1 D2 D3 3 D4 5 WINDOW TYPE NUMBER 10 W W1 4 W2 2 V 3
WS WS FWS FWS
WS WS FWS FWS
DESIGNED
REVISIONS
8000
4''
WS WS FWS FWS
WS WS
- Total floor area = 3360 m 2 - Yard hydrants = 18 mts hose with 6 mt throw - HT yard for building = 125 m2 area - All Dimensions are measured in millimeter - Do not scale the drawings - Follow the written dimensions
RAIN WATER SHAFT ELECTRICAL DUCT
WS WS FWS FWS
WS WS FWS FWS
NOTES:
40000 3'
DIMENSION 3650 X 3000 1600 X 2700 950 X 2700 770 X 2100 600 X 2100 DIMENSION 3100 X 2900 2900 X 2900 940 X 2900 600 X 950
NUMBER DOOR TYPE D 1 D1 2 D2 1 D3 3 D4 5 WINDOW TYPE NUMBER 10 W W1 4 W2 2 V 3
REFUGE AREA
DRAWN
CHECKED
CHECKED BY:
DATE
ARCHITECTURE
APPROVED
SIGN
ELECTRICAL
NOTES:
WS WS FWS FWS
WS WS
DATE
HVAC (PACKAGE UNITS) FIRE PROTECTION SYSTEM
CIVIL AND STRUCTURE
- Total floor area = 3360 m 2 - Yard hydrants = 18 mts hose with 6 m throw - HT yard for building = 125 m2 area
FWS FWS
PIPING PHE SYSTEM
ELV SYSTEM
5
DSGN
DIVYA RAVI
DRWN
DIVYA RAVI
TERRACE PLAN (ARCH.)
CHKD
N
WS WS FWS FWS
WS WS
1
REVISED AS MARKED AND AS PRE REVISION HISTORY
0
ISSUED FOR CONSTRUCTION
REV. NO
DESCRIPTION
FWS FWS
APPD
SCALE
1:100
FPS SHAFT
CHECKED BY:
SIGN
DATE
ARCHITECTURE
01901_A_B_00_WD_00
CIVIL AND STRUCTURE ELECTRICAL ELV SYSTEM
NAME : DIVYA RAVI USN: 1RW17AT026 SEMESTER: VI SECTION: A
TERRACE PLAN
DE
REVISIONS
PHE SHAFT
DRAWING NUMBER:
F p s -
- All Dimensions are measured in millimeter - Do not scale the drawings - Follow the written dimensions
COMPANY NAME:
JOB NO : 15 ARC 6.7 (WD- 2)
DIMENSION 3650 X 300 1600 X 270 950 X 2700 770 X 2100 600 X 2100 DIMENSION 3100 X 29 2900 X 29 940 X 290 600 X 950
COMPANY NAME:
JOB NO : 15 ARC 6.7 (WD- 2) DSGN
DIVYA RAVI
DRWN
DIVYA RAVI
CHKD APPD
SCALE
SCHEMATIC SECTION
KEY PLAN
1:25
DRAWING NUMBER:
01901_A_B_0
NAME : DIVYA RAVI USN: 1RW17AT026 SEMESTER: VI SECTION: A
40000 36000 9000
A
C
B
D c'
b'
1
c''
E
d'
KEY PLAN
MATERIAL SCHEDULE : FOUNDATION = REINFORCED STEEL CONCERT WALLS EXTERNAL = REINFORCED STEEL CONCERT WALLS INTERNAL = BRICK MASONRY
8000
RETAINING WALLS THKN= 300 mm & 450 mm
MATERIAL SCHEDULE :
SCHEDULE:
2
PUMP ROOM
PS
SCHEDULE OF DOORS AND WINDOWS
NUMBER DOOR TYPE D 1 D1 2 D2 1 D3 3 D4 5 WINDOW TYPE NUMBER 10 W W1 4 W2 2 V 3
FIRE SUMP
FROM SOFT WATER SUMP
DIMENSION 3650 X 3000 1600 X 2700 950 X 2700 770 X 2100 600 X 2100 DIMENSION 3100 X 2900 2900 X 2900 940 X 2900 600 X 950
FROM RAW WATER SUMP
PS
3
RETAINING WALLS THKN= 300 mm & 450 mm
FROM FIRE SUMP
JOCKEY
PUMP ROOM FROM SOFT WATER SUMP
FROM RAW WATER SUMP
JOCKEY
3'
SOFT WATER SUMP
40000
PARKING SPACE
RAIN WATER SHAFT ELECTRIC
TOWARDS YARD HYDRANTS
DIESEL TOWARDS WET RISER AND SPRINKLER
- Do not scale the drawings - Follow the written dimensions
RAIN WATER SUMP (2.5 X 2.5 X 3.3 MTS)
RAW WATER SUMP
1
3''
REVISED AS MARKED AND AS PRE REVISION HISTORY
TOWARDS YARD HYDRANTS
DIESEL TOWARDS WET RISER AND SPRINKLER
SIGN
DATE
ARCHITECTURE ELECTRICAL
DRAWN
DSGN
DIVYA RAVI
DRWN
DIVYA RAVI
CHKD
CHECKED BY:
BASEMENT 2 PLAN (ARCH.)
APPD
1:100
DRAWING NUMBER:
01901_A_B_00_WD_05
NAME : DIVYA RAVI USN: 1RW17AT026 SEMESTER: VI SECTION: A
39. Technical Drawings | Bangalore
BASEMENT 2 PLAN
Divya Ravi | Portfolio 2021
DESCRIPTION SIGN
SIGN
CHECKED
PIPING PHE SYSTEM
COMPANY NAME:
DATE PS
DSGN
DIVYA RAVI
DRWN
DIVYA RAVI
CHKD APPD
PS
N
DRAWN
CHECKED BY: HVAC (PACKAGE UNITS) FIRE PROTECTION SYSTEM
ELV SYSTEM
APPROVED
FINISHING MATRIX - Walls are finished with 20 m plaster ( on both sides for fire staircase to provide for 20 mi - Parking area = cemented flo - Skirting = 10 mm vitrified ti
DESIGNED
DATE
ELECTRICAL
CHECKED
COMPANY NAME:
SCALE
REV. NO
REVISIONS
ARCHITECTURE
PIPING PHE SYSTEM
ELV SYSTEM
JOB NO : 15 ARC 6.7 (WD- 2)
5
ISSUED FOR CONSTRUCTION
CIVIL AND STRUCTURE
HVAC (PACKAGE UNITS) FIRE PROTECTION SYSTEM
CIVIL AND STRUCTURE
BASEMENT VENTILATION SHAFT
REVISED AS MARKED AND AS PRE REVISION HISTORY
0
JOB NO : 15 ARC 6.7 (WD- 2)
CHECKED BY:
4''
1
CHECKED BY:
DESIGNED
REVISIONS
FIRE STAIRCASE 4'
ELECTRIC
ISSUED FOR CONSTRUCTION
REV. NO
4
- All Dimensions are measured in millimeter - Do not scale the drawings - Follow the written dimensions
CD
staircase to provide for 20 min fire safety - Parking area = cemented floor finish - Skirting = 10 mm vitrified tiles
RAWDESCRIPTION WATER SUMP
0
DIMENSION 3650 X 3000 1600 X 2700 950 X 2700 770 X 2100 600 X 2100 DIMENSION 3100 X 2900 2900 X 2900 940 X 2900 600 X 950
- Total floor area = 3360 m 2 - Yard hydrants = 18 mts hose with 6 mt throw - HT yard for building = 125 m2 area
FINISHING MATRIX - All Dimensions are measured in - Walls are finished with 20 mm thick SOFT millimeterWATER SUMP plaster ( on both sides for fire escape
CD
SCHEDULE OF DOORS AND WINDOWS
NOTES:
PS
FROM FIRE SUMP
SCHEDULE:
NUMBER DOOR TYPE D 1 D1 2 D2 1 D3 3 D4 5 WINDOW TYPE NUMBER 10 W W1 4 W2 2 V 3
- Total floor area = 3360 m 2 - Yard hydrants = 18 mts hose with 6 mt throw - HT yard for building = 125 m2 area
FIRE SUMP
WALLS EXTERNAL = REINFORCED STEEL CONCERT WALLS INTERNAL = BRICK MASONRY
NOTES:
2'
FOUNDATION = REINFORCED STEEL CONCERT
FIRE STAIRCASE
ZOOMED IN PUMP ROOM
SCALE
PHE PUMP ROOM DETAIL (ARCH.)
1:25
DRAWING NUMBER:
01901_A_B_06_WD_02
NAME : DIVYA RAVI USN: 1RW17AT026 SEMESTER: VI SECTION: A
SIGN
PARAMETRIC ARCHITECTURE
SNOWFLAKE PAVILION:
Goutham Nandakumar
Snowflake pavilion code :
Over the course of the sem we learnt to create multiple parametric forms(ie. the TOWER to the right and the moveable LOUVERS on the left). However, the most notable forms where: SNOWFLAKE PAVILION During the semester (5th) we looked at many techniques in creating parameterized forms. This snowflake pavilion was a result of that. The snowflake was created using four triangles as its base. The snowflake was then plugged into mesh in the form of the ring aligning pentagons.
Digitally moveable louver system.
SERPENTINE PAVILION SERPENTINE PAVILION: We created and experimented with parametric buildings and forms. Using grasshopper, we learned how each value in the script is essential in the outcome of the final form. For example; We recreated the Serpentine Pavillion by BIG (or created a close copy of the original).
Serpentine pavilion code :
Parametric Architecture Divya Ravi | Portfolio 2021
40.
THANK YOU. DIVYA RAVI ( 9538344707) divya.ravi.1rw17at@rvca.in RVCA This portfolio is created solely for the purpose of internship in architectural organisations Any and all works are done by Divya Ravi unless otherwise specified.