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CHAPTER 9
; 1957 Guide 'S i
Heat Transmission Coefficients of Building Materials
193
Table 10. Coefficients of Transmission (C7) of Masonry Partitions"
Coefficient* ore expressed in Btu per {hour) (square foot) (Fahrenheit degree difference in temperature between the air on the two sides), and'are based on still air (no wind) conditions on both sides.
Example
Resistances used are given below in this
toble or in Table 3 or 4*"
Construction
Resistance (R)
1. Inside surface (still air)................ 0.68
2. PIas. (It. wt. agg.) H in.............. 0.39
3. Cement block (cinder agg.)
(4 in.)............................................ l.lt
4. Plas. (It. wt. agg.) H in.............. 0.39 '
- 5. Inside surface (still air)............ 0.68
Total resistance'....................... 3.35 U -- \/R - \/3M = . .0.31 See value 0.31 in bold face type in table below
Example of Substitution
Resistances used are given below in this table or in Table 3 or 4. Replace item 3 with gypsum tile (4 in.) Total resistance......................... 3.3$ - Deduct 3/ Cement block (cinder agg.) - (4 in.).................................. 1.11
Difference................................ 14Add 3. Gypsum tile (4 in.)............ 1.57
Total resistance..................3.S] U = 1/R = 113.81.............. 0.28
Surface Finish
Type op Partition
None
Plas. (Lt. Wt. Agg.) % in.
Plas. (Sand Agg.) H in.
One side Two sides One side Two sides 0.39 0.78 0.11 0.22
Material
RUUU UU
Hollow concrete block
(Cinder agg.) (3 in.)..................................................................
(12 in.)................................................................
0.86 1.11 1.78
1.89
0.45
0.40 0.32 0.31
0.38 0.35 0.29 0.27
0.33 0.31
0.26 0.25
: 0.43 ' 0.39
0.31 0.30
0.41,i
0.30../ 0.29 f/
(Lt..wt. agg.) (3 in.) ..............................................................
(8,in;).................................................................. (12 in.).................... ;.........................................
1.87
0.38
1.60
0.35
8.00
0.30
8.87 . .0-28
0.330.31
0.27 ,0.25
0.30 0.27 0.24 0.23
0.36 . - 0.35!!r
0.34
0.32 .
0.29
0.28 ,.i
0.27
(Gravel agg.) (12 in.)................................................................
1.11 1.88
0.40 0.38
0.35 0.33
0.31 0.29
0.39 0.36
0.37 0.35
Hollow clay tile (3 in.) ................................................................
(8 in.)..................................................................
0.80
1.11 1.58 1.85
0.46
0.40 0.35 0.31
0.39 0.35 0.31
0.28
0.34 0.31 0.27 0.25
0.44 0.39 0.33 . 0.30
0.42.-.4 0.37 0.32 :,1
Hollow gypsum tile (4 in.)..................................................................
1.36 1.67
0.37 0.33
0.32 0.29
0.29 0.26
H in. Solid plaster walls - -
Gypsum lath 04 in-) and plas.
in. each side . 1.39:-.
. (Sand agg.)........................................ 0.71
1 in. each side . (Lt. wt; agg.):............................................ 1.73
(Sand aggT)................................................... 0.81
* 0i36- : 0.48 .
v0.32 0.46
. --
-- --i
_ --.
--
Metal .lath and plas.b
., .
2 in. total thickness . (Lt. wt. agg.)........... .................. ............. ` (Sand agg.)........ ..........................
2H in. total thickness
(Sand agg.)..............................................
1.88 0.36
1.60 0.46 .
' 0.38 0.58
0.34 0.55
' . ri
__ ! '-- 1 .> --
__ --.
_ --
Glass and glass blocks.
........................
See Table 20
0.35 0.32
0.34 , 0.31
4
'3 O'
-- - -T. 1 -- -- ' -4
. .-nit?
,, -4
--
-- T
; /Ojjjl ;.^oq
.*t
a See text section Calculating Overall Coefficients for basis of calculations. b Metal core and supports disregarded. Plaster troweled smooth both sides;-'
'; !% ;
Table 11. Coefficients of Transmission (U) of Frame Construction
Ceilings and Floors* Coefficients are expressed in Btu per (hour) (square foot) (Fahrenheit degree difference between the air on the two
___ _______ sides) and are based on sttU air (no wind) conditions on both sides.
Example
- Resistances used are given below in
this table or in Tables 8 or 4-
Heated room above unheated space
Construction
Resistance (R)
(Heat Sow down)
1. Top surface (still air) ...... 0.93
2. Linoleum or tile (avJJ).... 0.06
3. Felt.....................
0.06
4. Plywood ($i in.):.........
0.78
5. Wood aubfloor (2%a in.)-.... 0.98
6. Air spaceb (7^4 in.).............. 1.85
7. Metal lath and % in. -plas.
(It. wt. agg.).................
0.47
8. Bottom surface (still air) ... 0.98
Total resistance................. 5-48 . V = 1/12 = 1/6.43 =....... 0.18
See value 0.18 in bold face type in table below.
Example of Substitution
Resistances used are given below in this table or in Tables 3 or 4.
Assume heated room is below un heated space so heat flow is up. Total resistance......................... 5..48 Deduct 1. Top surface (beat flow .
down).:..............................0.98 3. Air space (heat flow
down)............................... 1.68 8. Bottom surface (heat flow
down)............................ 0.88
Resistance deducted............... 3.09
Difference....... .....................9. Si . Add
1. Top surface (heat flow up).................................... 0.61
3. Air space (heat flow up) 0.85 8. Bottom surface (heat flow
up).................................... 0.61
Resistance added...................... 8.07 To Adjust V values for Construction with Added Total resistance........................ 4.41
Insulation between Framing Members, See Table 16. u = i/s = 1/4.41=. . ....... 6^3
Direction op Heat
Heat Flow Upward (Winter Conditions)
Heat Flow Downward (Summer Conditions)
Type op Floor
Wood susfloor
(a&2 IN.), Felt, and-
Wood subfloor
(2H* in.) Felt, and-
Type op Ceiling
s -2': o'
13
*3203 ao.go
Resistance .
T3 3
II
O
1.38 /.87
tj--'
Uia
cm
Material
None.........
Gypsum bd. (H im). .................
VI*ggl)
^ and Vi in. plas. (It. wt.
Gy^" iath (W in!) and * in! pias. (sand
0.64 0.41
0.45 0.38 0.30
0.31 0.23
0.54 0.23 0.21
0.61 0.24 0.22
laSssr-*--Metal lath &nj I* pins. (It. wt. agg.)
0.47 0.59
0.23 0.22
0.13 0.74 0.31 0. 0. 0.24
nsui bd.iath 04 in.) and Hi in. plas (sand agg.) 1.43 0.38 0.22 0.20 0.19 0.18
1.58 0.36 0.22 0. 0.19 0.18
acoustical tile
5gSteEK?.bd-inJ"'
*n.) on evTwtun
rp * ?*UsJIlsUg., bd- MW-
_ ^th and in. plas. (sand agg.
1.6T 0.37 0.22 0.20 0.19 0.18 0.41 0.24 0.22 0.20 0.19
8.106 0.30 0.19 0.18 0.17 0.16 1.78 0. 0.21 0.19 0.18 0.17 0.40 0.62 6.29 0.26 0.24 0.22
21 0.46
0.31 0.28 0.26 0.24 0.21 0.20
0.40 0.21 0.20
0.17 0.18
0.44 0.22 0.21 0.19 0.18 0.17 0.43 0.22 0.20 0.19 0.18 0.17 0.51 0.24 0.22 0.20 0.19 0.18 0.31 18 0..17 0.16 0.15 0.15 0.30 0.18 0.17 0.16 0.15 0.14
0.30 0.18 0.17 0.16 0.15 0.14 0.33 .19 0.18 0.17 0.16 0:15 0.25 0.16 0.15 0.15 0.14 0.13 0.28 0.17 0.16 0.15 0.15 0.14
0.45 0.22
0.18 0.17
b To aHL^iwr011 Calculating Overall Coefficients for basis of calculations. * Include* ~~--V?.es B?e note l0*' above this table.
Indnrltirubber, and plastic tile (H in.), ceramic tile, or terrazo (1 in.). w tarmal resistance of % in. gypsum wall board.