33

Analisis esquemático del_diseño_edificio_masdar

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Page 1: Analisis esquemático del_diseño_edificio_masdar
Page 2: Analisis esquemático del_diseño_edificio_masdar

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Page 3: Analisis esquemático del_diseño_edificio_masdar

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Page 7: Analisis esquemático del_diseño_edificio_masdar

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Page 11: Analisis esquemático del_diseño_edificio_masdar

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Page 13: Analisis esquemático del_diseño_edificio_masdar

E N V I R O N M E N T A L S Y S T E M S D E S I G N , I N C .

175 West Jackson, Chicago, IL 60604 Phone: 312.372.1200 Fax: 312.372.1222

1

Masdar Headquarters Wind Cone Analysis INTRODUCTION MASDAR headquarters is a multi-story mixed use building to be located in Abu Dhabi, UAE. It has been designed to be a net-zero energy building, meaning it will produce more energy than it consumes. In order to accomplish this feat, a number of energy saving measures will be implemented. One such measure is a collection of hollow hyperbolic towers collectively referred to as “wind cones”. These cones are evenly distributed throughout the building. Each tower, constructed of clear glass panels, begins at the ground level enclosing open courtyards and extends past the top of the building and above the canopy covering the building overhead. The primary functions of the cones are to provide natural ventilation of courtyards during daytime building operation and to passively introduce natural daylight into the center of the building. Environmental Systems Design located in Chicago, IL, USA, has been tasked with analyzing the effectiveness of the wind cone component of the MASDAR headquarters design using CFD software. A separate study of the wind cones has been conducted concurrently by RWDI based in Guelph, Ontario, Canada. Data from the RWDI study has been obtained from a scale model placed in a wind tunnel. The following report details ESD’s methods, assumptions, results, and conclusions to date as well as providing a comparison to the results obtained by RWDI. METHODOLOGY The first step taken was to identify the desired function of the wind cones and understand the underlying physics at work. A primary function of these cones is to provide natural ventilation of the ground plane during daytime building operation. The intent is for hot used air to be expelled from the top of the cone, while cooler fresh air is induced into the bottom of the cone. In order to create airflow, a difference in pressure must be created. In the wind cones there are two components responsible for this pressure difference; these are thermal buoyancy effects, and wind induced ventilation effects.

Page 14: Analisis esquemático del_diseño_edificio_masdar

5

Figure 1 and 2: During the day, the prevailing winds blow from the North West, over the stack, pulling hot, old air out of the atrium. The results indicate that wind of the direction and magnitude typically experienced in Abu Dhabi will draw air out of the cone. This air is replaced from the bottom of the cone, naturally ventilating the ground level courtyards as desired. Having proved the primary function of the wind cones, a secondary function was also investigated. Due to the unique geography of Abu Dhabi, the wind direction experienced during nighttime hours is most often opposite the Northwesterly wind seen during the day. This nighttime wind out of the Southeast is cooler than its daytime counterpart. A proposed secondary function of the wind cone is to capture this air and direct it into and down the cone. The topmost section of the cone has been designed to this end. The cone opening is slanted, rather than horizontal. This causes wind traveling from the Northwest to move quickly and smoothly past the cone. However, wind from the Southeast impinges on the inside of the cone. This air is slowed quickly and creates a high pressure area, forcing air into the cone. This condition was tested by changing the direction of the wind in the original model. A gradient plot of air speed magnitudes and a plot displaying airflow vectors can be found in figures 3 and 4 respectively.

Wind from the NW

Page 15: Analisis esquemático del_diseño_edificio_masdar

6

Figure 3 and 4: At night, the prevailing winds blow from the South East, blowing cool air into the atrium. As can be seen in the figures above, the model indicates that wind from the southeast is directed into the top opening and down the cone. In this first phase of the analysis, the model has confirmed that wind induced effects on the airflow produce the desired results in both the primary (NW wind, air out) and secondary modes (SE wind, air in). Having investigated the wind induced effect on airflow, the analysis turned to the influence of thermal loads on the airflow. Thermal effects The top portion of the wind cone rises above the canopy. The top opening of the wind cone is equipped with dampers to allow for manual control of air movement. During the day, all of these surfaces are subject to the thermal load of the sun. This solar load, along with internal heat loads internal to the cone are the driving force behind the airflow due to buoyancy effects. In order to simulate this effect, a heat source was placed in the center of the cone. It was found that significant upward air flow is developed due to buoyancy. Refer to Figure 5 below for the predicted upward air flow in the cone due to buoyancy. The change in airflow is shown for increasing temperature deltas between the ground level and top of the cone. Under certain conditions this thermal buoyancy effect exceeds the predicted wind induced downward flow resulting in upward air flow in nearly all conditions.

Wind from the SE

Page 16: Analisis esquemático del_diseño_edificio_masdar

9

Figure 8

Figure 8

The results in Figure 8 show that while the airflow patterns around the two cones vary slightly, there is little change in the airflow into the base or out of the top of the cone. The southeast wind is not considered here, as ESD’s thermal studies, as well as RWDI’s wind tunnel results indicate that it is unlikely that consistent airflow into the cone can be achieved in the secondary mode of operation. Cone entrance and exit air speed The final step in the analysis of the wind cones was to ensure that the flow rate at the occupied level was optimal for occupant comfort. Airflow increases the rate of evaporation of perspiration from the skin and carries heat away from the body, increasing personal comfort. However, if airflow becomes too great it can produce objectionable and disruptive drafts. Using the results from the improved model, wind velocities were measured at the intake and exhaust openings of the cones. The models indicate an average airspeed of 1 m/s on average out of the wind cones (Figure 9). The models also indicate airspeed of approximately 1 m/s out of each of the four entrances to the base of the cone (Figure 10). Inside the range of ambient temperatures expected in the courtyard, this airspeed is within the range of human comfort. It will provide enough movement to give the benefit of perceived cooling, without being disruptive. As a point of reference, air moving at 1 m/s is just enough to begin disturbing papers on a desk. If airflow is increased, air entering the base of the cone may reach speeds that become objectionable to occupants. This is not expected to be an issue, as the wind cones are equipped with dampers which will allow for manual control of the airflow through the cone.

Page 17: Analisis esquemático del_diseño_edificio_masdar

12

Because the expected wind cone air velocity is low in comparison to the wind turbine rated speed and in some cases does not meet the start-up velocity, wind turbines installed in the MASDAR wind cones cannot be expected to add significantly to MASDAR’s energy production. For this reason, incorporating wind turbines into the wind cone design is not recommended.

Figure 11, MASDAR Wind Cone - Turbine Placement

Figure 12, MASDAR Wind Cone - Average Air Velocity

Page 18: Analisis esquemático del_diseño_edificio_masdar

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low

ered

ele

ctri

c lig

ht

leve

ls.

Co

nsi

der

cri

tica

l h

um

an f

acto

rs i

n t

he

des

ign

of

• th

e lig

hti

ng

sys

tem

: ef

fect

s o

f g

lare

an

d s

par

kle

, su

itab

ilit

y o

f lig

ht

sou

rces

fo

r n

atu

ral

colo

ur

ren

der

ing

an

d a

pp

eara

nce

, an

d t

he

effe

ct o

f lig

ht

on

the

nat

ura

l en

viro

nm

ent.

Elim

inat

e ‘v

isu

al n

ois

e’:

lig

ht

tres

pas

s, l

igh

t p

ollu

tio

n,

• an

d u

nco

ntr

olled

sp

ill

lig

ht.

Co

ord

inat

e lig

ht

wit

h a

rch

itec

tura

l p

lan

an

d

• en

viro

nm

enta

l g

rap

hic

s to

cla

rify

an

d s

up

po

rt

bu

ild

ing

-wid

e w

ayfi

nd

ing

.

We

take

our

cues

fro

m n

ature

in r

efin

ing

the

build

ing e

nve

lope

and s

yste

ms

to m

axim

ize

day

light

ben

efit

s an

d

min

imiz

e en

ergy

consu

mpti

on.

Tech

nica

l

Sust

ain

able

lig

hti

ng

des

ign

will

uti

lize

veri

fiab

le e

ner

gy

effi

cien

t lig

hti

ng

tec

hn

olo

gie

s.

A l

imit

ed ‘

pal

ette

’ o

f lig

ht

fitt

ing

s w

ill

imp

rove

lif

e cy

cle

cost

s, r

edu

cin

g o

per

atin

g c

ost

s an

d s

up

po

rtin

g

• th

e lo

ng

ter

m p

eak p

erfo

rman

ce o

f th

e sy

stem

.

Dis

trib

ute

d d

igit

al c

on

tro

ls a

re k

ey t

o c

reat

ing

a t

un

eab

le l

igh

tin

g s

yste

m t

hat

can

max

imiz

e en

erg

y •

effi

cien

cy a

nd

sys

tem

fle

xib

ilit

y.

Wh

ite

lig

ht

pro

mo

tes

hig

h c

olo

r re

nd

itio

n:

use

pre

do

min

antl

y h

igh

qu

alit

y ‘w

hit

e’ l

igh

t so

urc

es i

ncl

ud

ing

• ce

ram

ic m

etal

hal

ide

(CM

H),

flu

ore

scen

t, i

nd

uct

ive

flu

ore

scen

t (Q

L),

and

LED

.

Lig

hti

ng

at

the

Mas

dar

Cit

y H

ead

qu

arte

rs w

ill

be

gu

ided

by

curr

ent

bes

t d

esig

n a

nd

tec

hn

ical

pra

ctic

es:

Th

e C

har

tere

d I

nst

itu

tio

n o

f Bu

ild

ing

Ser

vice

s En

gin

eers

(C

IBSE

)•

Co

mm

issi

on

In

tern

atio

nal

e d

e l’

Ecla

irag

e (C

IE)

• T

he

Illu

min

atin

g E

ng

inee

rin

g S

oci

ety

of

No

rth

Am

eric

a (I

ESN

A)

• T

he

Emir

ates

Gre

en B

uild

ing

Co

un

cil

• A

SHR

AE

90

.1 E

ner

gy

Stan

dar

d f

or

Bu

ild

ing

s,

• 2

00

4 v

ersi

on

Page 19: Analisis esquemático del_diseño_edificio_masdar

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10

0% S

D

ISS

UE

RE

CO

RD

:

PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

LIG

HT

ING

DE

SIG

N

CO

NC

EP

TS

EL-

0002

Page 20: Analisis esquemático del_diseño_edificio_masdar

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1.07

10

0% S

D

ISS

UE

RE

CO

RD

:

PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

DA

YLI

GH

T F

AC

TO

R -

C

ON

ES

EL-

0003

02

48

1220

2844

60m

Base

Cas

e

Larg

e A

per

ture

Dig

ital M

odel

Basi

c geo

met

ry o

f co

ne,

flo

or

pla

tes,

and

• g

lazi

ng.

Non-r

efle

ctiv

e (b

lack

) en

closu

re,

• 5

3m

x 5

3m

x 4

1m

, co

nfi

nes

day

light

contr

ibuti

on t

o o

culu

s of

the

cone.

No

addit

ional

lig

ht

sourc

es infl

uen

ce t

he

spac

e fo

r th

is s

tudy.

Gen

eral

ref

lect

ance

and lig

ht

tran

smis

sion

• va

lues

are

ass

um

ed: fl

oor=

30%

ref

l.,

ceili

ng=80%

ref

l., co

ne

gla

ss=70%

VLT

,

roof

gla

ss=50%

VLT

.

Base

Cas

e (S

mal

l A

per

ture

): a

ssum

ed

• o

culu

s dia

met

er=11m

.

Larg

e A

per

ture

: ocu

lus

dia

met

er=

33

m (

PV

• p

anel

s re

move

d).

Day

light

Fac

tor

Day

light

Fact

or

(DF)

: a

mea

sure

of

the

• p

erce

nta

ge

of

day

light

in a

spac

e as

com

par

ed t

o t

he

amount

of

light

outs

ide,

usi

ng a

sim

ula

ted o

verc

ast

sky.

DF

pro

vides

a g

ood m

etri

c to

pre

dic

t how

• w

ell day

lit a

spac

e w

ill b

e.

DF

of

2 t

o 3

(%

) is

consi

der

ed t

he

• m

inim

um

req

uir

emen

t fo

r a

“day

lit”

spac

e.

Rem

arks

Day

lighti

ng c

ontr

ibuti

on o

f th

e co

ne

to p

erim

eter

off

ice

area

s dro

ps

off

quic

kly,

exce

pt

at t

he

top f

loor

and in t

he

atri

um

spac

e at

the

• b

ase

of

the

cone.

The

inte

rven

ing f

loor

pla

tes

hav

e sm

all ar

eas

of

day

lit s

pac

e (D

F >2%

) w

ithin

4m

of

the

cone

per

imet

er.

• T

he

light

leve

ls d

rop b

eyond t

his

are

a, r

esult

ing in a

rel

ativ

ely

dar

ker

floor

pla

te w

ith a

bri

ght

centr

al v

iew

. Su

pple

men

tal el

ectr

ic

• lig

hti

ng w

ill b

e re

quir

ed in o

ffic

es t

o b

alan

ce b

rightn

ess

per

cepti

on.

Light

wel

ls h

elp t

o d

istr

ibute

som

e day

light

from

the

top f

loor

dow

n t

o low

er f

loors

, th

ough t

he

resu

ltan

t lig

ht

leve

ls a

re s

till

rela

tive

ly

• lo

w.

Furn

iture

and w

alls

may

blo

ck s

om

e lig

ht.

It

will

be

import

ant

to o

rgan

ize

acti

viti

es a

nd s

pac

es t

o m

axim

ize

day

light

uti

lizat

ion.

• In

this

bas

ic c

onfi

gura

tion, th

e co

ne

will

ess

enti

ally

be

a glo

win

g lan

tern

; it

s bri

ghtn

ess

will

be

off

set

wit

h e

lect

ric

lighti

ng d

eeper

in

• th

e fl

oor

pla

te t

o a

chie

ve v

isual

com

fort

.

Both

model

s (lar

ge

and s

mal

l ap

ertu

res)

yie

ld s

imila

r re

sult

s, s

how

ing t

hat

a lar

ger

day

light

open

ing d

oes

not

signif

ican

tly

expan

d t

he

• d

aylit

zone

of

each

flo

or.

Page 21: Analisis esquemático del_diseño_edificio_masdar

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0% S

D

ISS

UE

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PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

GR

OU

ND

LE

VE

L IL

LUM

INA

TIO

N -

CO

NE

S

EL-

0005

N

“Sum

mer

” P

hoto

synt

hetic

ally

Act

ive

Rad

iatio

n Le

vels

“Sum

mer

” Ave

rage

Dai

ly T

otal

“Win

ter”

Pho

tosy

nthe

tical

ly A

ctiv

e R

adia

tion

Leve

ls“W

inte

r” A

vera

ge D

aily

Tot

al

Rem

arks

“Sum

mer

” A

vera

ge

Dai

ly P

AR v

alues

ran

ge

from

0.0

1 W

h/m

2 (

nea

r th

e per

imet

er)

to 0

.85 W

h/m

2.

“Win

ter”

Ave

rage

Dai

ly P

AR v

alues

ran

ge

from

0.0

04 W

h/m

2 (

nea

r th

e per

imet

er)

to 0

.05 W

h/m

2.

“Sum

mer

” A

vera

ge

Dai

ly T

ota

l va

lues

ran

ge

from

6.6

5 W

h/m

2 (

nea

r th

e per

imet

er)

to 5

84.7

4 W

h/m

2.

“Win

ter”

Ave

rage

Dai

ly T

ota

l va

lues

ran

ge

from

2.5

8 W

h/m

2 (

nea

r th

e per

imet

er)

to 3

0.2

4 W

h/m

2.

1 W

att

per

squar

e m

eter

(W

/m•

2)

is e

qual

to 6

83 lux.

Seas

onal

Day

light

Ava

ilabi

lity

Anal

ysis

Usi

ng c

limat

e dat

a fr

om

Abu D

hab

i, t

his

• st

udy

trac

ks t

he

amount

of

ener

gy

from

the

sun r

each

ing g

round lev

el a

t th

e bas

e

of

the

cone.

The

study

cove

rs t

wo t

ime

per

iods:

Mar

ch

• 2

2 -

Sep

t 21 (

“Sum

mer

”), an

d S

ept

22 -

Mar

ch 2

1 (

“Win

ter”

).

The

study

mea

sure

s Ph

oto

synth

etic

ally

• A

ctiv

e Rad

iati

on (

PAR),

a m

easu

re o

f

light

falli

ng o

n a

surf

ace

that

is

wit

hin

the

spec

trum

that

is

use

ful to

pla

nts

in

the

pro

cess

of

photo

synth

esis

(400-7

00

nan

om

eter

s).

Val

ues

are

expre

ssed

as

Wat

t-hours

per

• sq

uar

e m

eter

(W

h/m

2)

and r

epre

sent

the

dai

ly a

vera

ge

(tota

l th

roughout

the

study

per

iod d

ivid

ed b

y num

ber

of

day

s).

Ave

rage

Dai

ly T

ota

l sh

ow

s th

e to

tal

• am

ount

of

ener

gy

from

the

sun a

nd

sky

reac

hin

g t

he

bas

e of

the

cone

(full

spec

trum

) on a

n a

vera

ge

day

.

Model

geo

met

ry a

ssum

es s

mal

ler

aper

ture

• (B

ase

Cas

e), w

ith n

o g

lazi

ng p

lace

d

in o

culu

s of

cone.

No lig

ht

from

the

per

imet

er is

incl

uded

in t

his

stu

dy.

“Win

ter”

val

ues

are

more

eve

nly

dis

trib

ute

d, bec

ause

pri

mar

y ill

um

inat

ion c

om

es f

rom

sky

lig

ht

(dir

ect

sun d

oes

• n

ot

reac

h t

he

bas

e of

the

cone

bet

wee

n S

epte

mber

and M

arch

), w

hile

“Su

mm

er”

valu

es a

re h

ighly

conce

ntr

ated

in

the

Nort

her

n s

ecti

on d

ue

to d

irec

t su

n c

ontr

ibuti

on b

etw

een M

arch

and S

epte

mber

.

Page 22: Analisis esquemático del_diseño_edificio_masdar

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10

0% S

D

ISS

UE

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PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

GR

OU

ND

LE

VE

L IL

LUM

INA

TIO

N -

CO

NE

S +

C

OU

RT

YA

RD

EL-

0008

Tota

l Dai

ly S

unlig

ht H

ours

- J

une

21st

N Tota

l Dai

ly S

unlig

ht H

ours

- S

epte

mbe

r 21

st

Tota

l Dai

ly S

unlig

ht H

ours

- D

ecem

ber

21st

Rem

arks

June

21

st T

ota

l Su

nlig

ht

Hours

ran

ge

from

0 h

ours

(in

court

yard

and C

one

8 p

erim

eter

) to

8 h

ours

(C

one

11

East

ern p

erim

eter

).

Septe

mber

21

st T

ota

l Su

nlig

ht

Hours

ran

ge

from

0 h

ours

(in c

ourt

yard

and C

one

8)

to 6

hours

(C

one

11 E

aste

rn

per

imet

er).

Dec

ember

21

st T

ota

l Su

nlig

ht

Hours

ran

ge

from

0 h

ours

(in c

ourt

yard

and C

one

8)

to 2

.5 h

ours

(C

one

11 E

aste

rn

per

imet

er).

Only

dir

ect

sun is

reco

rded

in t

his

stu

dy;

dif

fuse

sky

• lig

ht

and inte

r-re

flec

tions

of

light

due

to g

eom

etry

are

not

show

n.

Day

light

Ava

ilabi

lity

Anal

ysis

: Su

nlig

ht H

ours

Usi

ng c

limat

e dat

a fr

om

Abu D

hab

i, t

his

• st

udy

trac

ks t

he

amount

of

dir

ect

sunlig

ht

reac

hin

g g

round lev

el a

t th

e bas

e of

the

build

ing.

The

study

show

s C

ones

8 a

nd 1

1 w

ith

• co

nnec

ting C

ourt

yard

C. C

one

11 is

at

the

build

ing p

erim

eter

and is

larg

ely

unsh

aded

by

the

surr

oundin

g b

uild

ing.

Thre

e day

s ar

e an

alyz

ed: Ju

ne

21,

• Se

pte

mber

21, an

d D

ecem

ber

21. Thes

e

repre

sent

the

max

imum

, m

edia

n, an

d

min

imum

val

ues

(re

spec

tive

ly)

thro

ughout

the

year

.

Tota

l Su

nlig

ht

Hours

show

s th

e to

tal

• h

ours

that

dir

ect

sunlig

ht

reac

hes

the

gro

und f

loor.

Dif

fuse

sky

lig

ht

is n

ot

reco

rded

in t

his

dat

a.

Model

geo

met

ry incl

udes

PV

pan

els

on

• ro

of,

but

does

not

incl

ude

per

imet

er

gla

zing.

Page 23: Analisis esquemático del_diseño_edificio_masdar

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0% S

D

ISS

UE

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PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

ILLU

MIN

AT

ION

LE

VE

LS -

G

AR

DE

N C

OU

RT

YA

RD

EL-

0009

Day

light

Fac

tor

Rem

arks

The

court

yard

has

a D

aylig

ht

Fact

or

rangin

g f

rom

10%

to 3

2%

wit

h a

n a

vera

ge

valu

e of

19%

.• Ba

sed o

n lat

itude,

the

“Des

ign S

ky”

valu

e fo

r A

bu D

hab

i is

9200 L

ux.

• A

spac

e of

DF

19%

should

be

rece

ivin

g 1

748 L

ux f

rom

a c

lear

sky

, w

ith n

o d

irec

t su

n.

• T

his

val

ue

(1748 lux)

is b

ased

on D

esig

n S

ky, w

hic

h is

the

15

th p

erce

nti

le s

ky v

alue.

This

mea

ns

that

15%

of

the

year

light

leve

ls w

ill b

e le

ss t

han

1748 lux, an

d 8

5%

of

the

year

lig

ht

leve

ls w

ill b

e m

ore

than

1748 lux.

15%

of

a ye

ar is

about

8 w

eeks

, an

d t

he

low

er lig

ht

leve

ls f

rom

the

clea

r sk

y w

ill lik

ely

occ

ur

mid

-Nove

mber

to m

id-

• Ja

nuar

y.

Des

ign S

ky v

alue

is a

n a

vera

ged

val

ue:

thes

e num

ber

s ar

e not

abso

lute

, th

ey a

re a

bas

elin

e th

at w

ill lik

ely

hav

e gre

at

• d

evia

tion t

hro

ughout

the

day

and y

ear.

Val

ues

bas

ed o

n D

aylig

ht

Fact

or

and D

esig

n S

ky

do

no

t fa

ctor

in d

irec

t su

n p

enet

rati

on. Thes

e va

lues

are

only

bas

ed

on d

iffu

se lig

ht

from

the

sky.

Gard

en C

ourt

yard

: D

aylig

ht F

acto

r

Model

ed s

pac

e in

cludes

appro

xim

atel

y • h

alf

of

the

gar

den

court

yard

(on L

evel

4)

wit

h s

urr

oundin

g g

eom

etry

, in

cludin

g

shad

ing P

V p

anel

s.

The

PV p

anel

s, L

evel

5, an

d L

evel

6 h

ave

• th

e m

ost

im

pac

t in

shad

ing t

he

court

yard

,

leav

ing t

he

cones

and t

he

spac

e bet

wee

n

Leve

l 6 a

nd t

he

roof

to p

rovi

de

nat

ura

l

light

to t

he

spac

e.

This

stu

dy

det

erm

ines

the

Day

light

Fact

or

• o

f th

e co

urt

yard

spac

e.

Day

light

Fact

or

(DF)

is

the

per

centa

ge

of

• lig

ht

from

an o

verc

ast

sky

that

illu

min

ates

an inte

rior

spac

e.

DF%

can

be

tran

slat

ed t

o illu

min

ance

• va

lues

(in

Lux)

if t

he

exte

rior

illum

inan

ce

valu

es a

re k

now

n.

Page 24: Analisis esquemático del_diseño_edificio_masdar

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10

0% S

D

ISS

UE

RE

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:

PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

ILLU

MIN

AT

ION

LE

VE

LS -

G

AR

DE

N C

OU

RT

YA

RD

EL-

0010

Dai

ly T

otal

: Jun

e 21

Rem

arks

: Jun

e 21

Tw

o t

ypes

of

lighti

ng illu

min

ate

the

spac

e: d

irec

t su

n a

nd d

iffu

se s

ky.

• T

he

dir

ect

sun p

ath is

illust

rate

d b

y th

e re

d a

nd o

range

area

in t

he

gra

phic

. D

iffu

se s

ky illu

min

atio

n (

blu

e an

d p

urp

le

• ar

ea)

is b

righte

r th

e cl

ose

r it

is

to t

he

dir

ect

sun p

ath.

Are

as in t

he

dir

ect

sun p

ath r

ecei

ve illu

min

atio

n in t

he

range

of

8500 lux t

o 4

0000 lux.

• A

ll oth

er a

reas

(outs

ide

dir

ect

sun p

ath)

rece

ive

dif

fuse

illu

min

atio

n in t

he

range

of

850 lux t

o 2

850 lux.

• T

hes

e Lu

x v

alues

are

an a

vera

ge

for

the

day

(Ju

ne

21),

and t

her

efore

rep

rese

nt

the

max

imum

Dai

ly A

vera

ge

for

the

• ye

ar.

Addit

ional

bri

ght

spots

are

cre

ated

by

refl

ecti

ons

of

the

cone

gla

ss (

purp

le a

reas

nea

r co

ne)

, ar

ound 8

500 lux.

• T

he

dir

ect

sun p

ath (

from

Cone

8)

will

nev

er r

each

furt

h S

outh

than

the

pat

h illu

stra

ted h

ere.

Gard

en C

ourt

yard

: Av

erag

e D

aily

Tot

al

Model

ed s

pac

e in

cludes

appro

xim

atel

y • h

alf

of

the

gar

den

court

yard

(on L

evel

4)

wit

h s

urr

oundin

g g

eom

etry

. PV

pan

els

wer

e not

incl

uded

in t

his

cal

cula

tion, due

to inco

mple

te m

odel

ing.

The

roof,

Lev

el 5

, an

d L

evel

6 h

ave

the

• m

ost

im

pac

t in

shad

ing t

he

court

yard

,

leav

ing t

he

cones

and t

he

spac

e bet

wee

n

Leve

l 6 a

nd t

he

roof

to p

rovi

de

nat

ura

l

light

to t

he

spac

e.

Addit

ional

lig

ht

will

filt

er t

hro

ugh t

he

PV

• p

anel

s in

sm

all am

ounts

; th

at lig

ht

is n

ot

fact

ore

d into

this

stu

dy.

The

study

det

erm

ines

the

Dai

ly T

ota

l • ra

dia

nt

ener

gy

of

the

court

yard

spac

e

usi

ng c

limat

e dat

a fr

om

Abu D

hab

i.

The

Dai

ly T

ota

l ca

n b

e co

nve

rted

fro

m

• W

att-

hours

per

squar

e m

eter

(W

h/m

2)

to

Ave

rage

Dai

ly L

ux: th

e Lu

x v

alues

are

sum

med

up in t

he

Rem

arks

sec

tion.

Thre

e day

s ar

e st

udie

d t

o g

et a

min

imum

, • m

axim

um

, an

d m

edia

n D

aily

Tota

l fo

r th

e

year

: re

spec

tive

ly, th

e day

s st

udie

d a

re

Dec

ember

21, Ju

ne

21, an

d S

epte

mber

21.

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10

0% S

D

ISS

UE

RE

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:

PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

ILLU

MIN

AT

ION

LE

VE

LS -

G

AR

DE

N C

OU

RT

YA

RD

EL-

0012

Dai

ly T

otal

: Dec

embe

r 21

Rem

arks

: Dec

embe

r 21

Tw

o t

ypes

of

lighti

ng illu

min

ate

the

spac

e: d

irec

t su

n a

nd d

iffu

se s

ky.

• T

he

dir

ect

sun p

ath is

illust

rate

d b

y th

e re

d a

nd p

urp

le a

reas

in t

he

gra

phic

. D

iffu

se s

ky illu

min

atio

n (

blu

e ar

ea)

is

• b

righte

r th

e cl

ose

r it

is

to t

he

dir

ect

sun p

ath.

Are

as in t

he

dir

ect

sun p

ath r

ecei

ve illu

min

atio

n in t

he

range

of

9900 lux t

o 1

9900 lux.

• A

ll oth

er a

reas

(outs

ide

dir

ect

sun p

ath)

rece

ive

dif

fuse

illu

min

atio

n in t

he

range

of

1400 lux t

o 5

700 lux.

• T

hes

e Lu

x v

alues

are

an a

vera

ge

for

the

day

(D

ecem

ber

21),

and t

her

efore

rep

rese

nt

the

min

imum

Dai

ly A

vera

ge

for

• th

e ye

ar.

The

Dec

ember

sun p

ath f

rom

Cone

8 a

lmost

rea

ches

to C

one

9, as

the

sun f

rom

Cone

7 a

lmost

rea

ches

Cone

8. The

• su

n w

ill n

ever

rea

ch f

urt

her

Nort

h t

han

the

pat

h s

how

n h

ere.

Addit

ional

sun p

enet

rati

on t

hro

ugh t

he

open

per

imet

er t

o t

he

South

res

ult

s in

anoth

er b

righte

r ar

ea (

purp

le),

aro

und

• 1

1000 lux.

Gard

en C

ourt

yard

: Av

erag

e D

aily

Tot

al

Model

ed s

pac

e in

cludes

appro

xim

atel

y • h

alf

of

the

gar

den

court

yard

(on L

evel

4)

wit

h s

urr

oundin

g g

eom

etry

. PV

pan

els

wer

e not

incl

uded

in t

his

cal

cula

tion, due

to inco

mple

te m

odel

ing.

The

roof,

Lev

el 5

, an

d L

evel

6 h

ave

the

• m

ost

im

pac

t in

shad

ing t

he

court

yard

,

leav

ing t

he

cones

and t

he

spac

e bet

wee

n

Leve

l 6 a

nd t

he

roof

to p

rovi

de

nat

ura

l

light

to t

he

spac

e.

Addit

ional

lig

ht

will

filt

er t

hro

ugh t

he

PV

• p

anel

s in

sm

all am

ounts

; th

at lig

ht

is n

ot

fact

ore

d into

this

stu

dy.

The

study

det

erm

ines

the

Dai

ly T

ota

l • ra

dia

nt

ener

gy

of

the

court

yard

spac

e

usi

ng c

limat

e dat

a fr

om

Abu D

hab

i.

The

Dai

ly T

ota

l ca

n b

e co

nve

rted

fro

m

• W

att-

hours

per

squar

e m

eter

(W

h/m

2)

to

Ave

rage

Dai

ly L

ux: th

e Lu

x v

alues

are

sum

med

up in t

he

Rem

arks

sec

tion.

Thre

e day

s ar

e st

udie

d t

o g

et a

min

imum

, • m

axim

um

, an

d m

edia

n D

aily

Tota

l fo

r th

e

year

: re

spec

tive

ly, th

e day

s st

udie

d a

re

Dec

ember

21, Ju

ne

21, an

d S

epte

mber

21.

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08.1

1.07

10

0% S

D

ISS

UE

RE

CO

RD

:

PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

DA

YLI

GH

T F

AC

TO

R -

P

ER

IME

TE

R G

LAZ

ING

EL-

0013

9m9m

Mod

el

9m

x 9

m m

odule

of

build

ing p

erim

eter

, su

bst

ituti

ng e

ach w

all ty

pe:

Saw

tooth

and V

erti

cal Lo

uve

r.• A

ssum

ed r

efle

ctan

ces:

Flo

or

- 20%

, C

eilli

ng -

80%

.• N

on-r

efle

ctiv

e su

rroundin

g w

alls

ensu

re t

hat

only

lig

ht

contr

ibuti

on f

rom

gla

zing a

ffec

ts D

aylig

ht

Fact

or

(DF)

cal

cuat

ion.

• Re

mar

ks

Day

lit a

rea

(DF>

2%

) ex

tends

4m

-5m

into

the

spac

e w

ith S

awto

oth

wal

l ty

pe,

and e

xte

nds

3m

-4m

into

the

spac

e w

ith V

erti

cal Lo

uve

r. T

his

dif

fere

nce

is

mai

nly

due

to t

he

hei

ght

and a

rea

of

the

gla

zing a

nd t

he

VLT

per

centa

ges

.• Fu

rnit

ure

and w

alls

may

blo

ck s

om

e lig

ht.

It

will

be

import

ant

to o

rgan

ize

acti

viti

es a

nd s

pac

es t

o m

axim

ize

day

light

uti

lizat

ion.

• Bo

th w

all ty

pes

hav

e D

F ~15%

nea

r th

e w

indow

gla

zing.

• A

reas

not

in d

aylit

zone

must

use

ele

ctri

c lig

hti

ng t

o b

alan

ce b

rightn

ess

and illu

min

atio

n a

cross

flo

or

pla

te.

Wal

l Typ

e 1.

B - S

awto

oth

Vis

ion g

lazi

ng a

ssum

ed a

t 30%

VLT

, as

• p

er s

hee

t W

ALL

TYPE

NO

. 1.B

ASK

-53.

Wal

l Typ

e 1.

C - V

ertic

al L

ouve

r

Vis

ion g

lazi

ng a

ssum

ed a

t 50%

VLT

, as

• p

er s

hee

t W

ALL

TYPE

NO

. 1.C

ASK

-54.

Page 27: Analisis esquemático del_diseño_edificio_masdar

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0% S

D

ISS

UE

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PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

DIR

EC

T S

UN

PE

NE

TR

AT

ION

-

PE

RIM

ET

ER

GLA

ZIN

G

EL-

0018

Dire

ct S

un P

atte

rns

on F

loor

N

Janu

ary

21st

,5:

00pm

Mar

chA

pril

July

Aug

ust

Sep

tem

ber

7:00

pm

6:00

pm

Oct

ober

Feb

ruar

y

2:00

pm

3:00

pm

4:00

pm

May

Nov

embe

rD

ecem

ber

June

21st

,1:

00pm

Dire

ct S

un P

atte

rns

on F

loor

N

2:00

pm

6:00

pm

June

21st

,1:

00pm

3:00

pm

11:0

0am

7:00

pm

Janu

ary

21st

,5:

00pm

Mar

chA

pril

May

July

Aug

ust

Feb

ruar

yS

epte

mbe

rO

ctob

erN

ovem

ber

Dec

embe

r

4:00

pm

Dire

ct S

un P

enet

ratio

n:

Wes

t Orie

ntat

ion

Imag

es s

how

n s

pan

tim

es w

hen

dir

ect

sun

• p

enet

rate

s th

e build

ing e

nve

lope.

Wal

l Typ

e 1.

B - S

awto

oth

Wes

t ori

enta

tion: dir

ect

sun t

hro

ughout

• th

e ye

ar; 2:0

0pm

to s

unse

t (~

7:0

0pm

) in

June.

Wal

l Typ

e 1.

C - V

ertic

al L

ouve

r

Wes

t ori

enta

tion: dir

ect

sun t

hro

ughout

• th

e ye

ar; 2:0

0pm

to s

unse

t (~

7:0

0pm

) in

June.

Rem

arks

: Wes

t Orie

ntat

ion

Dir

ect

sun p

enet

rati

on w

ith t

he

Saw

tooth

wal

l ty

pe

is

• si

gnif

ican

t fo

r 5 h

ours

max

imum

, 12 m

onth

s out

of

the

year

.

Dir

ect

sun p

entr

atio

n w

ith t

he

Ver

tica

l Lo

uve

r w

all ty

pe

is

• si

gnif

ican

t fo

r 5 h

ours

max

imum

, 12 m

onth

s out

of

the

year

.

An a

lter

nat

ive

shad

ing t

ype

or

ori

enta

tion m

ay b

e • n

eces

sary

on t

his

wal

l, d

ue

to t

he

exte

nt

of

dir

ect

sun

pen

etra

tion t

hro

ughout

the

day

and y

ear,

unle

ss t

he

acti

viti

es o

ccuri

ng in t

his

spac

e ar

e not

affe

cted

by

dir

ect

sun p

atte

rns

and g

lare

.

Fina

l Rem

arks

The

Saw

tooth

wal

l ty

pe

per

form

s sl

ightl

y bet

ter

in b

oth

Day

light

Fact

or

and D

irec

t Su

n t

ests

. H

ow

ever

, th

e fo

llow

ing h

igh

per

form

ance

des

ign f

acto

rs c

an b

e ap

plie

d t

o e

ither

wal

l ty

pe

for

max

imum

eff

ecti

venes

s:

A lar

ge

area

of

gla

zing a

nd a

hig

her

VLT

per

centa

ge

resu

lts

in m

ore

dif

fuse

lig

ht

illum

inat

ing t

he

spac

e.• A

hig

her

hea

d-h

eight

(top)

of

the

gla

zing a

llow

s day

light

to r

each

furt

her

into

the

spac

e.• V

erti

cal sh

adin

g d

evic

es o

rien

ted e

xac

tly

to t

he

angle

of

the

site

(e.

g. 38° in

stea

d o

f 45°) r

esult

s in

slig

htl

y bet

ter

shad

ing

of

• d

irec

t su

n t

hro

ughout

the

year

.

A s

mal

ler

module

of

the

win

dow

-shad

e unit

allo

ws

for

bet

ter

shad

ing o

f dir

ect

sun (

rati

o o

f w

indow

siz

e to

shad

e si

ze

• ap

pro

achin

g 1

:1, as

in S

awto

oth

typ

e)

Page 28: Analisis esquemático del_diseño_edificio_masdar

ISS

UE

S:

NO

. D

AT

E

D

ES

CR

IPT

ION

A

PP

RO

VE

D B

Y

Y

/N

4 20

08.1

1.07

10

0% S

D

ISS

UE

RE

CO

RD

:

PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

ELE

CT

RIC

LIG

HT

ING

-

CO

NE

S

EL-

0021

Elec

tric

Lig

htin

g Co

ncep

t - C

ones

Laye

rs o

f lig

ht

build

up o

ver

the

cone

surf

ace

to e

mphas

ize

the

stru

cture

.

Hig

h O

utp

ut

LED

(H

O-L

ED)

light

fitt

ings

• p

rovi

de

a su

btl

e w

ash o

n inte

rior

cone

wal

ls. The

light

fitt

ings

are

pla

ced in

conce

aled

slo

t lo

cati

ons

at L

evel

s 1 a

nd 6

.

Cer

amic

Met

al H

alid

e (low

wat

tage

met

al

• h

alid

e) lig

ht

fitt

ings

are

mounte

d a

t th

e

Leve

l 6 s

lot

loca

tion a

s an

gle

d d

ow

nlig

hts

,

pro

vidin

g a

n a

ccen

t an

d a

mbie

nt

light

to

pro

gra

mm

ed a

reas

wit

hin

the

cones

.

Indir

ect

LED

fit

tings

pro

vide

a co

nsi

sten

t • g

low

at

the

outs

ide

cone

per

imet

er. This

crea

tes

a lig

hti

ng z

one

for

off

ice

use

,

mim

icki

ng t

he

area

lit

by

sky

light

duri

ng

day

light

hours

.

Hig

h O

utp

ut

co

nc

ea

led

LE

D l

igh

t fi

ttin

gs

Hig

h O

utp

ut

co

nc

ea

led

LE

D l

igh

t fi

ttin

gs

ce

ram

ic m

eta

l h

ali

de

ac

ce

nt

lig

ht

fitt

ing

s

LE

D i

nd

ire

ct

lig

ht

fitt

ing

wa

sh

es

pe

rim

ete

r c

eil

ing

Page 29: Analisis esquemático del_diseño_edificio_masdar

ISS

UE

S:

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PP

RO

VE

D B

Y

Y

/N

4 20

08.1

1.07

10

0% S

D

ISS

UE

RE

CO

RD

:

PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

ELE

CT

RIC

LIG

HT

ING

-

PE

RF

OR

MA

NC

E C

ON

E

EL-

0022

Perf

orm

ance

Con

e Li

ghtin

g

Gen

eral

arc

hit

ectu

ral lig

hti

ng in t

he

Perf

orm

ance

Cone

will

mat

ch t

he

lighti

ng in

oth

er c

ones

.

For

per

form

ance

s, a

cir

cula

r lig

hti

ng t

russ

will

be

pro

vided

as

a m

ounti

ng loca

tion f

or

thea

tric

al lig

ht

fitt

ings,

dim

min

g c

ontr

ol,

and a

udio

-vis

ual

equip

men

t.

The

truss

will

be

susp

ended

fro

m t

he

upper

rin

g a

rchit

ectu

ral lig

hti

ng p

osi

tion

wit

hin

the

cone

and b

e ri

gged

wit

h a

ircr

aft

cable

ele

ctri

c w

inch

es t

o a

llow

adju

stab

le

mounti

ng loca

tions

for

per

form

ance

flex

ibili

ty, ea

se o

f m

ainte

nan

ce, an

d t

o

rem

ain u

nobtr

usi

ve w

hen

not

in u

se.

The

arch

itec

tura

l lig

hti

ng c

ontr

ol sy

stem

will

be

pro

vided

wit

h a

thea

tric

al s

tyle

DM

X-

512 c

ontr

ol in

put

stat

ion in a

n a

ppro

pri

ate

nea

rby

loca

tion t

o a

llow

the

use

of

smal

l

thea

tric

al lig

hti

ng c

onso

les

as r

equir

ed f

or

show

oper

atio

n.

Page 30: Analisis esquemático del_diseño_edificio_masdar

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S:

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PP

RO

VE

D B

Y

Y

/N

4 20

08.1

1.07

10

0% S

D

ISS

UE

RE

CO

RD

:

PR

OJE

CT

#:

AR

CH

ITE

CT:

D

ES

IGN

ER

:C

HK

BY

: A

PR

BY

: P

LOT

TIM

E:

SH

EE

T IN

FO

RM

AT

ION

:

SH

EE

T IN

FO

RM

AT

ION

:

ELE

CT

RIC

LIG

HT

ING

-

RO

OF

EL-

0023

Elec

tric

Lig

htin

g Co

ncep

t -

‘Moo

nlig

htin

g’ a

t Roo

f Gar

den

This

conce

pt

has

tw

o b

asic

com

ponen

ts -

ambie

nt

lighti

ng a

nd a

ccen

t lig

hti

ng.

Am

bie

nt

lighti

ng is

pro

vided

by

roof

• m

ounte

d c

lust

ers

of

low

wat

tage

/ lo

w

bri

ghtn

ess

met

al h

alid

e ‘m

oonlig

ht’

are

a

lights

.

Tar

get

am

bie

nt

illum

inan

ce lev

els

(lux)

are

• 3

0 -

50 lux o

f unif

orm

lig

ht.

Cool w

hit

e am

bie

nt

light

will

mim

ic t

he

• q

ual

ity

of

moonlig

ht,

wit

h lam

ps

rate

d a

t

4100°K

colo

r te

mper

ature

.

Smal

l sc

ale

/ lo

w p

ow

er lig

ht

fixtu

res

• w

ill s

erve

as

acce

nt

lights

for

vari

ety

and

textu

re f

or

the

roof

gar

den

. La

mps

in

thes

e fi

xtu

res

will

be

war

m w

hit

e ra

ted a

t

3000˜K

colo

r te

mper

ature

.

This

tie

red s

yste

m is

a pre

cisi

on /

lay

ered

appro

ach w

hic

h p

lace

s lig

ht

wher

e nee

ded

wit

hout

was

te.

Usi

ng c

ontr

asti

ng lig

ht

colo

r an

d

bri

ghtn

ess,

this

appro

ach w

ill p

rovi

de

hig

her

ver

tica

l ill

um

inat

ion (

vlux),

whic

h

aids

in o

vera

ll vi

sual

shar

pnes

s an

d

envi

ronm

enta

l qual

ity.

Wit

h a

ctiv

e lig

hti

ng c

ontr

ols

(day

light

sensi

ng, occ

upan

cy s

enso

rs a

nd t

ime

contr

olle

rs),

this

is

a lo

w p

ow

er s

olu

tion,

rich

in v

isual

del

ight.

low

le

ve

l g

ard

en

lig

ht

fitt

ing

ce

ram

ic m

eta

l h

ali

de

ac

ce

nt

‘mo

on

lig

ht’

fitt

ing

low

le

ve

l g

ard

en

pa

thw

ay

ma

rke

r

lig

ht

fitt

ing

Page 31: Analisis esquemático del_diseño_edificio_masdar

LB�Project�Number�1300002470�61� Page�13�of�16 �

Page 32: Analisis esquemático del_diseño_edificio_masdar

LB�Project�Number�1300002470�61� Page�14�of�16 �

Page 33: Analisis esquemático del_diseño_edificio_masdar

Masdar FM Guidelines Asset Management Service

FM Guidelines

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1 September 2008