Portfolio for Intern Architect -2019

Page 1

PORTFOLIO GAGANDEEP SINGH

VIRDI

2019


Curriculum Vitae


GAGANDEEP SINGH VIRDI Education

Address B-53 Ansal township OPP.Crossing republic, N.H.-24 Ghaziabad,Uttar Pradesh 201016

2016- Present

Bachlor of Architecture Sharda University Greater Noida,India

2016

Senior Secondary Education Delhi Public School Ghaziabad

2014

High School Education St. Mary’s Convent School Ghaziabad

Software skills Rhino 3D + Grasshopper + Vray 3DS Max Autodesk Revit Autodesk Autocad Sketchup + Vray Abobe Photoshop Adobe Illustrator Adobe Indesign Lumion Corona Render Keyshot Model making

Phone +91-8130420735 +91-7703975503

Languages English,Hindi

Workshops Concrete furniture workshop. Digital Design Workshop. Model Making Workshop . Space and Emotion workshop. Brick workshop

Mail gaganvirdi019@gmail.com

Internship Greater Noida Authority Capital Inframart

Greater Noida,India Gurugram ,India

Competitions Mindrain Architecture competition- 2017 Alpha one commercial redevelopement competion -2019

Live project Interior at Appartment - Emaar , Gurugram ,India Interior at Appartment - Emaar , Gurugram ,India

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Contents


//01

COMMERCIAL PROJECT

//02

Master plan

//03

URBAN REDEVELOPMENT

//04

MATERIAL SYSTEM

//05

GENETRIC ALGORITHM

//06

CONSTRUCTION DRAWING

//07

LIVE PROJECT

Multi National Company

Art And Architecture College

Alpha One Commercial Market

Kirigami

Optimization - Galapagos

Residance

Interior project

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//01

COMMERCIAL PROJECT Multi National Company

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Location - Plot no 53, Knowledge park III, Greater noida Uttar Pradesh -India Year

- 2018

Analogous to the idea ,in Parametricism FOLDISM covers the entire building into one componet and creates a homogenous buildspace in which elemental architecture resonate together. Humans are the part of nature which are developing to work under seamless concrete jungle. The idea was to create an efficacious environment where human once again subconsciously communicate with the build environement.


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Ground floor plan

LVL+900

15

15

15 LVL+450

LVL+900

LVL+450

LVL+750 LVL+600

LVL+450

8

6

B

5

LVL+1500

19 18

12 17

7

9

9

A

8

7 9

vertical void though building

LVL+1500

A’

4

8 9

17 LVL+1050

LVL+1500 LVL+1050

16

LVL+450

10 16

11

3

LVL+450

5

17

18

LVL+1050

14

17

A

2

13

LVL+600 projection at LVL+3000

LVL+450

LVL+450

LVL+450

1

A

The enterance plays a very important role a space which helps the individual subconsciously becomes a part of landscape,waterscape and buildscape along with transiting the stairs. B

Blue spaces incorporated with natural green spaces creates a sense of calmness around, helps the cognitive ability to boost naturally for a great communical and working environment.

19

1 2 3 4 5 6 7 8 9 10 11 12 13

entry basement entry entrance plaza main enterance conferance rooms library/waiting area central core core and services indoor landscape restaurent , waiting area exhibition hall water body surface parking

14 15 16 17 18 19

jogging tack open working environment footpath green basement exit exit


Section A-A’

shading open office space

air ventilator

central void -shaft effect

green communal space in the heart of the building

fire stairs-vertical transition double height exhibition

large scale offices(300 employee)

vertical shaft

communal space conferences/exhibition

meduim scale offices(150 employee) service floor small offices

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Individual panel

perforation opening=20%

perforation opening=60%

perforation opening=100%

Construction detail of outer skin Detail at A

Detail at B rotation (75째) rotation(30째<X<75째) rotation (30째)

flooring

brick wall attached member

B r.c.c. slab

riveting baseplate

Detail at C movement of structural member C hydraulic flooring

r.c.c. slab

attached steel memeber hydraulic structural member 100% opening


Form - double skin integration

form

outer skin(south side)

integration

outer skin

form-aluminium framing holding glass

perforations allowing controlled light A

ETFE outer shell

main entry plaza

plaza space

Inbetween workspace and green

pedestrian circulation

running track vehicular circulation

water feature

surface parking

vehicular circulation pedestrian circulation

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//02

Master plan Art And Architecture College

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Art And Architecture College


1 3

3

2

10

19

11

7 6 18

20

12

17 4 9

5 12

21

16 15 14

21

13

18

21 21 8

1 2 3 4 5 6 7 8 9 10 11 12 13

main pedestrian entry doubly curved glass at top water feature architecture block art block exhibition - public retail space girls hostel(3bed) boys hostel(3 bed) outdoor exhibtion area vehicular entry outer ring surface parking (faculty) open space - cultural activities

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14 15 16 17 18 19 20 21

football ground jogging track basketball court surface parking(visitors) exit basement entry basement exit open workshop

vehicular circulation pedestrian circulation

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Conceptual massing

Southwest massing - minimum heat gain optimizing views to the open spaces

gathering places outside the blocks , foster interaction and opportunities for contact and proximity

creating three dimension social space by using the depression in existing site

plaza - open exhibition space - vehicular circulation


Isometric Plan view Architecture block

FOURTH FLOOR PLAN

ISOMETRIC VIEW LANDSCAPE

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Architecture block

A

LVL+-0

1 2 3

LVL+450

4

12

LVL+-0

8 5

13 6 LVL+150

7 8

LVL-3000

LVL+450

15

9

welded steel L bar

LVL+-0

LVL+150

timber cladding

10

A’

1 thermofoamed roofing glass 2 reception 3 meeting room 4 waiting area 5 cafetaria 6 auditorium 7 students entry 8 core 9 double height exhibition area 10 common room 11 stairs /sitting area 12 staff entry 13 adminstration office 14 workshops 15 open interactive working zone

14 LVL-3000

iron with rust proof paint flooring

LVL+150

11

steel member

gusset plate r.c.c. slab


Art

9

1 10 2 5 8

3 4

7

4

6

11 12

Section A-A’

main entry double height exhibition area reception desk seminar room stairs/sitting sculpture room core +washroom pond kitchen restaurent interior workshop outdoor workshop area

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1 2 3 4 5 6 7 8 9 10 11 12



//03

URBAN REDEVELOPMENT Alpha One Commercial Market

Internship - Greater Noida Authoirty

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Location - Alpha commercial complex, Greater noida ,Uttar Pradesh -India Year

- 2019

With the view of redeveloping alpha 1 commercial complex to a justified market which responds to all age group ,design is based on non- congestion vehicular movement and adding life to the dead soul. Detailed analysis of pedestrian movement throughout the day leaded us to designing public responsive space.

landscape helps in controlling the greyscale of the site.

entry to alpha commercial

green belt redeveloped with lavatory

kinetic building (holds cultural

redeveloped pickup spot


alpha circle

g fests)

knowledge park 2

pari chowk kasna circle

pari chowk delta 1

existing southern fascade eventhough sitting space with no shading

maximum offices abd educational centres The idea was to create some shading for maximum utilization of the space

increased plinth for future perspective

tensile structure holding maximum footfall

food truck mile

exit from alpha market

surface parking

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Existing site plan

major node 1

Throughout the market survey resulted into 2 lavatory.

survey result showed area with maximum footfall thoughout the day.

major node 2


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steel framing

thermofoamed glass

wire as holding members

vertical steel structural member

FOOD TRUCK MILE The idea was to incorporate landscape ,eating zone and parking into a single common space which seamessly moves thoughout the site. The design not only bring up the alpha commercial market value but also hepls in line of business. Food truck mile will greatly benefit from residential zone sourrounding alphamarket hence certainly increeasing social and increase walk of life,.


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weaverbird shell

polyester fabric

coloumns for anchoring

landscap

TENSILE STRUCTURE According to our survey result the area is found the be under maximum footfall , but unfortunately no shading is provided therefore tensile structure which span open space could be used to perform the functions or cultural activites which otherwise would not have been possible because of direct sun rays.


pe

tensile structure

surface parking

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iron grid provide services as building moves

floors

outer wall

core

core

truss system boggie

basement car parking

MOVABLE SHED A space created which houses three fuction under 1 roof - market,parking at basement and live theatre for visual arts and pop culture. The design was possible due to boggie and truss system which helped the structure to move and create a sourrounded space under which performance art could take place at regular interval. The fascade plays an important role creates a dilima of light and shadow outside the building which not only beutifies the build environment but also attracts curosity.


form making

hexagonal grid on surface

remaping sizes according to referance curve

extrusion according to distance parameter

basement vertical transition

open space

facade

metro passage

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//04

MATERIAL SYSTEM Kirigami

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Kirigami is the process of cutting and folding to produce a two dimensional planar into a three dimensional double curved surface without using any adhesive.

2X2 grid kirigami

using hygroscopicity

Length of the slit is directly propertional to the height it achieves. Distance between consecutive slit directly proportional to height achieved.

vertical ascend or decend in slit through vertical force

grains

Hygroscopic character is the tendency to adsorb or absorb water molecules onto the surface. In the molecular level water molecules gets inbetween the grains of the wood due to this molecular difference Wood tends to bend to much greater extent which otherwise would not bend. The Hygroscopicity of wood is used in the system of kirigami where pilability is used as a mean to produce doubly curved surface wherein after drying it retains its shape.

height of slit achieved(in mm)

water inbetween grains

height of slit achieved(in mm)

fundamental slits are achieving doubly curved surface

length of slit(in mm)

distance between slits


Year

- 2019

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EXPERIMENTS Constant

Variable

Inferances

Thickness of the material.=2mm Duration in water.

Sheet size Vertical distance between slits. Length of slits.

Stability of the module is inversely proportional slit curvature length. As radius increases height of curve is increased.

Surface dimension-840x297mm

Experiment based on finding the curvature obtained by using equal forces on the slits by distorting the A4 sheet to 840X297mm. Surface dimension-840x420mm

Forces were applied equally but in opposite direction on different halfs of the sheet to obtain a symmetric doubly curved surface. Module - Imagined on 1:1 scale requires individual members to be fabricated individually then joined by riveting and bolting to obtain the final shape. Module joinery= bolting(model scale) ;riveting(1:1) Module size=297x100mm


Constant

Variable

Inferances

Thickness of the material. Duration in water.

Sheet size Length of slits.

Radial slit resulted in more stable and symmetric geometry. More radial distance from distance resulted in increase in hright.

Surface dimension-420x420mm

1/6

Different slits were defined in circular geometry ,based on overlaping conseqitive slit-force along z axis applied on all slits . Overlaping of slits=1/6 Surface dimension-840x420mm

Two Circular kirigami joined to form a single module , downward exertion is used inbetween the geometries.

Module - Radial slits Module size=50mm inner radius;100mm outer radius Module joinery= bolting(model scale) ;riveting(1:1) , wire- steel cabling

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EXPERIMENTS Constant

Variable

Inferances

Thickness of the material.=2mm Duration in water.

Sheet size Vertical distance between slits. Length of slits. Angles in the slit at nodes.

Moving from curve to angular slits,the individual slit resulted in straight line inbetween nodes and doubly curved surface was achieved through profile of the prototype.

Surface dimension-297x840mm Slit angle=130째

Different anlges is used to define the curvature of the prototype . The larger the angle resulted in less deformation but stable geometry .

Surface dimension-297x420mm Slit angle=90째

Moving towards self standing geometry the angle which founded is 90째 which created substantial span to height ratio.

Surface dimension-297x840mm Slit angle=60째


Constant

Variable

Inferances

Thickness of the material. Duration in water.

Sheet size Length of slits.

When edge distance is reduced to zero the curve obtained of the profile is directly proportional to the slit length.

Surface dimension-297x840mm

Helical loop was obtained which curved to π/2 every 11 slits. Distance inbeteen slit=40mm Surface dimension-297x840mm

Experiment based on changing the outerprofile to concave edge resulted in increment of the doubly curved surface whcih resulted in self assist structure. Surface dimension-840x420mm

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Pirrama park,Pirrama Rd, Pyrmont NSW 2009, Australia fitness cirteria - mimimum heat gain,daylighting but maximizing visibility genotype-slit length , slits inbetween distance; height of opening

Setup Diagram thermal comfort at open space =30-33° celcius optimized shape evalution surface

analysed surface

Solar radiation analysis Iteration = No. of slit over the surface.

Optimized module Number of slits =20. Arthimetic mean =48.9 radiation/6 hrs.

Visibility=25%(inbetween slits) Daylighting analysis

Optimized module Number of slits =20. Arthimetic mean =2.1 hrs

sea pirrama park


Construction detail

100 mm thick pipe 40 mm thick pipe

700

plywood

1000

7700x12000mm

upside down plan

FOUNDATION DETAIL

TRUSS DETAIL 25 mm thick

bolt washer

100mm thick pipe

U-SECTION BOLT

plywood pipe

BOLTING VENEER TO STEEL MEMBER


Form optimization

The idea behind the optimization was to develop a form which would be attaining min heat gain as required in north west indian terrain. Keeping in mind the minimum volume occupied by building in buildspace

fitness criteria - minimizing heat gain , least volume genotype- length,breadth of 2D volume, height of building,population

phenotype with optimized volume mass

phenotype with optimized solar radiation

phenotype with optimized volume mass and solar radiation


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//06

Live Projects

Interior - designing , modeling.

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Interior projects Location - E- 102 Emar, Gurugram,India Client- Mr. Anuj Tiwari The client requirement was to re design the interior and increase its endearing and belle. 3D modelling

Living room

All the furniture were custom designed and sent to factory for production.

Master Bedroom

Ease of comfort and luxury was kept in plannig for Mr. Anuj Bedroom.


Location - E- 106 Emar, Gurugram,India Client- Mr. Kapoor Residance The client requirement was to re design the interior and increase its endearing and belle. LAWN

Electrical plan enter

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SIDDHANT'S BEDROOM

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DAUGHTER'S BEDROOM

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LIVING

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MRS & MR KAPOORS BEDROOM

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NICHE FOR PUJA UTILITY Mr. KAPOOR H0003 GRAND ARCH IREO GURUGRAM

NAME OF THE DRAWING:-

FALSE CEILING LAYOUT SCALE: - NTS

DATE OF ISSUE:- 14.02.2017 STAGE OF DRAWING:- G.F.C

SOUTH

EAST

WEST

Email : designdujour@outlook.com

DESIGN DU JOUR

Office : A-221 L.G.F, Defence Colony, New Delhi Mob: +91-9899711261 , +91-9654984446 Ph : +91-11-46568333

ARCHITECTURE INTERIORS TURNKEY

NORTH

Living room

Client required vibrant living room which remain lit up due to natural light throughout the day.

Master Bedroom

Wood as primary material was reflected from floor to wall and to furniture to create homogenous interior space

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//07

Construction drawing Residence

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Construction Drawing Residence

Ground floor plan

Terrace floor plan

SECTOR 4 GREATER NOIDA WEST UTTAR PRADESH, INDIA.

SECTION

STAIR SEC LIFT SECT

GENERAL NOTES 1.ALL DIMENSIONS AND LEVELS ARE IN MM.

GENERAL N

2.DIMENSIONS ARE TO BE READ AND NOT TO BE MEASURED.

3.ALL DIMENSIONS TO BE CHECKED AT SITE BEFORE EXECUTION AT SITE AND DISCREPANCY TO BE REPORTED TO THE ARCHITECT. 1.ALL DIMENSIONS AN

2.DIMENSIONS 4.REFER STRUCTURAL DWG. FOR ALL RCC AND STRUCTURAL DETAILS. ARE T

3.ALLDETAILS. DIMENSIONS TO 5.REFER ANUFACTURER'S DESIGN AND DETAILOS FOR ALL LIFT

6.OVERALL FINISHED LEVEL ROAD.

LVL.F.FL.

AND DISCREPANCY T

SHALL BE FROM CENTRE OF THE

4.REFER STRUCTURA

5.REFER ANUFACTUR

6.OVERALL FINISHED ROAD.

DOOR / WINDOW SCHEDULE Type

Size

Sill

D1

750 X 900

-

D2

900 X 2100

-

D3

1000X2100

-

D4

1200X2100

-

PROJECT

RESIDENT W1

600X 600

600

W2

900 X 1050

1050

W3

1200 X 1500

900

W4

1350 X 1500

900

W5

1450 X 1500

250

W6

3770 X 6000

100

SECTI SCALE: 1:100

No.

GAGAN

PROJECT NAME:

4

RESIDENTIAL PROJECT

GAGANDEEP

TERRACE FLOOR PLAN SCALE:

DATE:

1:75

01/10/2019


SECTIONS STAIR SECTION LIFT SECTION

SECTIONS

Stair detals

SECTIONS

SECTIONS

SECTIONS SECTION

STAIR SECTION STAIR SECTION LIFT SECTION STAIR SECTIONLIFT SECTION

STAIR SECTI STAIR SEC LIFT SECTIO LIFT SECTI

GENERAL NOTES

LIFT SECTION

1.ALL DIMENSIONS AND LEVELS ARE IN MM. 2.DIMENSIONS ARE TO BE READ AND NOT TO BE MEASURED. 3.ALL DIMENSIONS TO BE CHECKED AT SITE BEFORE EXECUTION AT SITE AND DISCREPANCY TO BE REPORTED TO THE ARCHITECT. 4.REFER STRUCTURAL DWG. FOR ALL RCC AND STRUCTURAL DETAILS.

GENERAL NOTESGENERAL NOTES GENERAL NO GENERAL N LVL.F.FL. 6.OVERALL FINISHED LEVEL SHALL BE FROM CENTRE OF THE 1.ALL DIMENSIONS AND LEVELS ARE 1.ALL IN MM. DIMENSIONS AND LEVELS ARE IN MM. 1.ALL DIMENSIONS AND LE GENERAL NOTES ROAD. 1.ALL DIMENSIONS AN 5.REFER ANUFACTURER'S DESIGN AND DETAILOS FOR ALL LIFT DETAILS.

2.DIMENSIONS ARE TO BE READ AND 2.DIMENSIONS NOT TO BE MEASURED. ARE TO BE READ AND NOT TO BE MEASURED. 2.DIMENSIONS ARE TO BE 1.ALL DIMENSIONS AND LEVELS ARE IN MM. 2.DIMENSIONS ARE TO

3.ALL DIMENSIONS TO BE CHECKED 3.ALL AT SITE DIMENSIONS BEFORE TO EXECUTION BE CHECKED AT SITE AT SITE BEFORE 3.ALL EXECUTION DIMENSIONS AT SITETO BE 2.DIMENSIONS ARE TO BE READ AND NOT TO BE MEASURED. 3.ALL DIMENSIONS AND DISCREPANCY TO BE REPORTED AND TO DISCREPANCY THE ARCHITECT. TO BE REPORTED TO THE ARCHITECT. AND DISCREPANCY TOTO BE AND DISCREPANCY T 3.ALL DIMENSIONS TO BE CHECKED AT STRUCTURAL SITE BEFORE EXECUTION AT RCC SITESTRUCTURAL 4.REFER DWG. FOR 4.REFER ALL AND STRUCTURAL DWG.DETAILS. FOR ALL RCC AND STRUCTURAL 4.REFER DETAILS. STRUCTURAL DW AND DISCREPANCY TO BE REPORTED TO THE ARCHITECT. 4.REFER STRUCTURA

5.REFER ANUFACTURER'S DESIGN5.REFER AND DETAILOS ANUFACTURER'S FOR ALL LIFT DESIGN DETAILS. AND DETAILOS FOR 5.REFER ALL LIFT ANUFACTURER'S DETAILS. 4.REFER STRUCTURAL DWG. FOR ALL RCC AND STRUCTURAL DETAILS. 5.REFER ANUFACTUR LVL.F.FL. LVL.F.FL. 6.OVERALL FINISHED LEVEL 6.OVERALL SHALL FINISHED BE FROM LEVEL CENTRE OF THE SHALL BE FROM 6.OVERALL CENTRE FINISHED OF THE LEVE 5.REFER ANUFACTURER'S DESIGN AND DETAILOS FOR ALL LIFT DETAILS. 6.OVERALL FINISHED ROAD. ROAD. ROAD. 6.OVERALL FINISHED LEVEL ROAD.

LVL.F.FL.

ROAD.

SHALL BE FROM CENTRE OF THE

PROJECT NAME: RESIDENTIAL PROJECT PROJECT NAME: PROJECT NAME: PROJECT NAME: RESIDENTIAL PROJECT RESIDENTIAL PROJECT RESIDENTIAL PROJECT

PROJECT NA PROJECT N

RESIDENTIAL RESIDENT

SECTIONS SECTIONSSECTIONS SECTIONS SCALE: DATE: SCALE: SCALE:

02/09/2019 DATE: SCALE:

1:100 SCALE: DATE:

1:100DATE:

02/09/2019 1:100

GAGAN 02/09/2019

1:100

GAGAN GAGAN 4

SCALE: 02/09/2019 1:100 1:100

REVISION:

GAGAN REVISION:

REVISION:

4

SECTIO SECTIO

REVISION: GAGAN GAGAN

4

4

4

GAGANDEEP SINGH VIRDI

GAGANDEEP SINGH VIRDI GAGANDEEP SINGH VIRDI GAGANDEEP SINGH VIRDI

4

GAGANDEEP S GAGANDEEP

Foundation details

FOUND

FOUNDA FOUNDA

GENERA

1.ALL DIMENSION

2.DIMENSIONS AR

3.ALL DIMENSION AND DISCREPAN

4.REFER STRUCT

5.REFER ANUFAC

6.OVERALL FINISH ROAD.

PROJEC

RESIDEN

FOUN SCALE: 1:75 GAGAN

4

GAGANDE

GV


GENERAL

1.ALL DIMENS

Ground Floor Electrical plan

2.DIMENSIONS MEASURED.

3.ALL DIMENS EXECUTION A REPORTED TO

4.REFER STRU STRUCTURAL

5.REFER ANU ALL LIFT DETA

4850

5390

115

2030

6.OVERALL FI CENTRE OF T

EQ

EQ

400

400

2405

550

900

EQ

1860

200

1700

400

LE 600

550

860 EQ

CEILING FAN

EQ

EQ

EQ

200

GENERAL NOTES 200

EQ EQ

200 EQ

200

200

EQ

EQ

LIGH

4.REFER STRUCTURAL DWG. FOR ALL RCC AND STRUCTURAL DETAILS.

16 AMP SOCK

200

EQ

EQ

EQ

1480

5.REFER ANUFACTURER'S DESIGN AND DETAILOS FOR DOOR BELL ALL LIFT DETAILS. 6.OVERALL FINISHED LEVEL CENTRE OF THE ROAD.

LVL.F.FL.

TELEPHONE SHALL BE FROM

P

BEDLIGHT / L

1270

PROJEC

3115

1385

3.ALL DIMENSIONS TO BE CHECKED AT SITE BEFORE EXECUTION AT SITE AND DISCREPANCY TO BE MIRROR REPORTED TO THE ARCHITECT.

T.V. POINT +

1035

EQ

POIN

5 AMP SWITC

200

EQ

1050

4345

2565

CEILING FAN

2.DIMENSIONS ARE TO BE READ AND NOT TO GYSER BE MEASURED. EQ

12000

200

1270

12 WATT CEIL

1.ALL DIMENSIONS AND LEVELS ARE IN MM.

715

880

9 WATT CEIL

200

200

1450

200

2020

CEILING FAN

Resident

groun electr

SCAL 1:75

DRAW

GAGA

Door / Window Detail

DRG.N CHIEF

PROJECT NAME: HOLDFAST 10 MM PLASTER

HOLDFAST 10 MM PLASTER

HOLDFAST 10 MM PLASTER

DOOR FRAME ( 60 X 100) STYLE (35 X 100) WOODEN BEADING (10 X 20)

FRAME ( 60 X 100) DOOR FRAME ( 60 XSTYLE 100) (35 X 100) STYLE (35 X 100) WOODEN BEADING (10 X 20) WOODEN BEADING (10 X 20)

GLASS 4 MM

GLASS 4 MM

HINGE BRICK WALL( 230MM/ 115MM)

HINGE HINGE BRICK WALL( 230MM/ 115MM) BRICK WALL( 230MM/ 115MM)

GLASS PANE

door window detail HOLDFAST

10 MM PLASTER FRAME ( 60 X 100)

door window STYLE (35 X 100)detail

WOODEN BEADING (10 X 20)

DATE: GLASS PANE DRAWN BY: REVISION:

GAGAN HINGE BRICK WALL( 230MM/ 115MM) CHIEF ARCHITECT

Kitchen Detail

Kitchen


First Floor Electrical plan

4850

400

EQ

600

5390

EQ

1660

2030

1700

400

600

400

840

EQ

2405

1225

765

200

280

1920

EQ

EQ 280

EQ

EQ

280

EQ

EQ EQ

EQ

EQ

EQ

905 215

EQ

215

900 2350

EQ 800

EQ EQ

EQ

4345

EQ

520

1725 390

EQ

280

EQ

EQ

EQ

EQ

EQ

520

400

EQ

200

EQ

EQ

1240

EQ

1840

200

EQ

200

890

EQ

2020

EQ

1880

Toilet Detail

GEN

1.ALL D

2.DIME MEASU

3.ALL D EXECU REPOR

4.REFE STRUC

5.REFE ALL LIF

6.OVER CENTR

CO Type

No.

PRO

Res

B

S

1:

D

G

D 2

C


GAGANDEEP SINGH VIRDI gaganvirdi019@gmail.com +91-8130420735

GV


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