Document a4MXkR0M9RYQmY1vXG2o6z7eX
1956 Guide CHAPTER 9 194
3 4 5
e O
s* Cm i
`o' X z5 < jOQ 5
oz Z
65
e w s -i
Z o 0
1
<
fa
be O
s
s
zz
<es Xs E- S
ia _ O S; OI
3 n << H
fSSK&H -
M m
Z
JS o
3333 <3000
OOOO
Z
c S
Wood Floor*
E
s o
%%%% 0000
oeoo
il
5>3 II
I*
5
a| %%
-a
-- i
* *%
*p
J 3 -> -
a
*l l
9X eo O
0.076
0.077 0.077 0.076
SSSSS oc?pc? 0000
Ills 0000
0000 mOOO OOOO
S3SS. <>009
oo| dodo
0J0
0.097 0.096 0.084
0.13 0.12 0.11 0.097
**S2S 0000
CCa6N> 0000
C$000
z
eA
5&
1*1
n o Bu
s^
-M " oo
. -S o"
"Si jril Isa
A to -
i c -
3 *4
m id 6
li &-s 115"*
dc 8
ills C>ooO
dodo
aooa dood
ftCOOQtO ! , 0000
1?>
sinn 0000
1 1c
S5S3 c$ooo
gss^ C$000 woog dodo 0><OC* 00`dd
0000 41000 OOOO
OOOO
si* 4..-- .73
IS?
.l-i 4
st; So o a .2 . =11 g-s-1
fe Jsii. v 2 J3
-S3 .0
O -H~ 509 8. -gs '.a
S^5
d:
2|f
i 11
p u* o {3 e Id
|9
III
5?f
o "S ~ta~3 3b2b
mi
EoSo
i
;T8-g
"Soil gsSg "s>
Oi?m-2-
&
Ssl!
sill
^SDffl -o'can a ^iss 8{
eiss
3
*
S
g
5^Zoj3
-Tc33
<.
s*ii ig
T3
-aH
*>
-I2SOSArd
--" 63g iB.. .12
*J
o S a .o
Z7 t* .a
a b-S St %
'5 'is Vl
10 *1s
; .1-Sll^
*8* ll gill i
H S 'll Hi I H C CO t. A *"
3 - ` -2 ogtf-
2S.% Ta3 3 --* *5~.32 -a2 x*S
*o2 i = i-i b i
S| l?j
si US I
8 8 is g S |
p* w t**S
Heat Transmission Coefficients of Building Materials
195
13: (17)Table
Coefficients of Transmission
of Concrete Construction ...
Floors and Ceilings*
Coefficients are expressed in Btu per (hour) (square /rf) (Fahrenheit degree difference in temperature between ike air on the two sides), and are based on still air (no wind) conditions on both sides.
TYPE OF CEILINQ
Typ B OF FLOO BING
Thickness ' ConOcFrete (Inches)
No Flooring
(Concrete Bare)
Tile or Terraaso Flooring
on
Concrete
H In. Asphalt
Tile Directly
on Coherete
Parquettc Flooring
in Mastic
on Concrete'
Double
Bt a
Wood a
Floor g
on .Z Sleepers"
No Ceiling............................ .....................
H in. Plaster Applied to Underside of Concrete...................................................
Metal Leth and Plaster*--Suspended or Furred........... .....................................
Gypsum Board (% in.) and Plaster^-- Suspended or Furred..........................
Insulating Board Lath (H in.) and Plaster-'--Suspended or Furred___
3 6 10
3 6 10
3 6 10
3 6 10
3 6 10
A
0.68 0.59 0.50
0.63 0.54 0.46
0.38 0.35 0.32
0.36 0.33 0.30
0.25 0.23 0.22
B
6.65 0.56 0.48
0.59 0.52 0.44
0.37 0.34 0.31
0.35 0.32 0.29
0.24 0.23 0.21
C
0.66 0.68 0.49
0.60 0.53 0.45
0.37 0.35 0.32
0.35 0.33 0.30
0.25 0.23 0.22
D
0.45 0.41 0.36
0.43 0.39 0.34
0.30 0.28 * 0.26
0.28 0.27 0.24
0;21 0:20 0.19
0.25 0.23 0.22
0.24 0.22 0.21 ..
0.1*:; 0.18 0.17
0.19 0.18 0.17
0.15 0.15 0.14
1 2 3
4 5 6
7 8 9
10 11 12
13 14 15
" Thickness of tile assumed to be 1 in. * See Table 5, Note a. b Conductivity of asphalt tile assumed to be 3.1.
* Thickness of wood assumed to be ,He in.; thickness of mastic, Vi in. (k =* 4.5). Col. D may also be used for concrete covered with carpet.
d Based on 255a in. yellow pine or fir sub-flooring and J H 6 in. hardwood finish flooring with an air space
between sub-floor and concrete.
* Thickness of plaster assumed to be H in.
Thickness of plaster assumed to be H in. * For other thickness of concrete, interpolate.
Table 14.
(17)Coefficients of Transmission
of Concrete Basement Floors
on Ground with Various Types of Finish Flooring
P = 0.10* Btu per (hr) (sq ft) (Fahrenheit degree temperature difference between the ground and the air over the floor).
* Since authentic data are not available, this coefficient ia sometimes used for concrete floors on ground, ror more recent procedures refer to Notional Bureau of Standards Report BMS-103.1*'u
Basement Floor, Basement Wall and Concrete Slab Floor Coefficients
The heat transfer through basement walls and floors to the ground is dependent on the temperature difference between the air within and that of the ground, on the material constituting the wall or floor, and on the conductivity of the surrounding earth. The conductivity of the earth 'aq vary with local conditions, and is usually unknown. Tests12 at the AjS.H.A.E. Research Laboratory indicate a heat flow of approximately LO Btu per (hr) (sq ft) through an uninsulated concrete basement floor, with a temperature difference of 20 deg between ground temperature and the air temperature 6 in. above the floor. Based on this result a coeffi cient of 0.10 Btu per (hr) (sq ft) (Fahrenheit degree difference) is recom mended for calculation where it is desirable to allow for the small base ment floor heat loss, e.g., for heated basements.
For basement walls the same coefficient may be used, but due to closer
Proximity to the surface of the ground, the temperature difference for win-