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<br />'SUMMER CALCULATIONS <br /> <br /> -'- BASE I BASE <br /> GLASS x SUMMER = SUMMER <br />, AREA PT. MUL T. POINTS <br /> N lfc.S"t 82.2 ;~l<';~~ . c.n <br /> NE 82.2 <br /> E 9. ?' l. 82.2 XI{ .S <br /> SE ijo 00 82.2 ~.:J. '10-:'6 0 <br /> S 9' 3.s ~ 82.2 7'.t?~"-I,l ) <br /> SW 82.2 <br /> W t:;:'~I..\ 82.2 ~ f) 7:1. () <br /> NW 82.2 <br />U) H' 82,2 <br />U) .1.'" 'l~,';: <: XJ" d. 7 (0' 71 . ) <br />j - <br />CJ \...1 lYOO ~,~ ;-J, 'Y']'j,~ <br /> <br />I <br /> <br />I <br />i <br /> <br />. , <br /> <br />CLIMATE ZONES 4 5 6 <br /> <br /> GLASS 1 SINGLE.PANE .1. DOUBLE.PAN -'- SUMMER lAS-BUILT <br /> AREA x SUMMER POINT MUL T. OR SUMMER POINT' tull\ x OVERHANG = GLASS <br /> CLEAR TIN'P CLEAR :t'N'P FACTOR (6A-1) SUM. PTS <br />N ..,~S.., 51.0 51.5 47.8 43.5 ,77 II IfnI ') <br />NE 77.2 76.6 71.7 63.4 <br />E 'rKb 109.2 107.1 102.0 87.3 f >':;: ')31. I <br />SE I.} 0 (.II) 112.9 110.3 104.1 89,4 I~'" ~t~(~ . (p <br />S Cl>7<;LI 100,2 98,3 90,9 78,8 i ""li <:"i,., 'L~JL' <br />SW 112,9 110.3 104.1 89.4 I J:-< ' " <br />W ~b2 109.2 107,1 102.0 87.3 1 j/('"" 4/;[/, . <br /> " .~ <br />NW 77.2 76.6 71,7 63.4 / <br />H' 367.7 303.3 324.6 238.U <br />lie:- '1....l ..3' l~.~t , f. '-1 'l:J fl./, 6 <br /> \ 4"1- <br />W 2. ~! 0,) I :xt.~} 1'><'><1) ,! <br /> / <br /> <br /> <br /> COMPONENT AREA COMPONENT AREA <br /> DESCRIPTION = DESCRIPTION <br /> EXTERIOR 1.0 <br />....J ADJACENT .7 <br />....J <br />oC <br />~ <br /> ~ <br />rn EXTERIOR flf 4.8 I rR]': l~ I I f-71 ,t'.t <br />1.6 <br />g ADJACENT <br /> <br />CJ UNDER ATTIC 7.../71 .6 Fit );.,.( . In l.Jj , , '::J I 7, 11 .') '/ <br />z OR SINGLE .6 <br />::; <br />W ASSEMBLY <br /><.> BASE CEILING AREA EQUALS FLOOR AREA DIRECTLY UNDER CEILING, AS-BUILT CEILING AREA EQUALS ACTUAL CEILING SQUARE FOOTAGE. <br /> <br /> <br />~ <br />AS-BUILT <br />GLASS <br />SUBTOTAL <br />, ( 1 1, <br />~ <br />AS-BUILT <br />SUMMER <br />POINTS <br />'. r:.( <br />L'j <br /> <br /> <br />~ <br /> <br />L3~': ..! <br /> <br />~ <br /> <br />~ <br /> <br />~ <br /> <br />~ <br /> <br /> SLAB {PERIMETER 7/~ -31.8 .(,.FU,{){,. 1../1 -~'.'1 -In '-f.'J . \ - . <br />a:: RAISED (AREA) ,3.43 <br />0 <br />0 <br />....J <br />"- <br /> FOR SLAB ON GRADE USE PERIMETER LENGTH AROUND CONDITIONED FLOOR. FOR RAISED FLOORS USE AREA OVER UNCONDITIONED SPACE. <br /> <br /> <br />INFILTRATION <br /> <br /> <br />10.9 <br /> <br />TOTAL COMPONENT BASE SUMMER POINT~ <br />~ <br />COOLING BASE COOLING TOTAL BASE <br />SYSTEM X SUMMER = <br />SYSTEM MULTIPLIER POINTS <br />.37 <br /> <br />~.~ <br /> <br />HOT <br />WATER <br />SYSTEM <br /> <br />'} <br /> <br />-~ <br />....., <br /> <br />AS-BUILT <br />HOT WATER <br />SYSTEM DESC. <br /> <br />'H = HORIZONTAL GLASS (SKYLIGHTS) <br /> <br />2FOR GLASS WITH KNOWN SHADING COEFFICIENT, SEE SECTION 1.1 OF APPENDIX C. TINT MULTIPLIERS MAY BE <br />USED FOR GLASS WITH SOLAR SCREENS. FILM, OR TINT, <br /> <br />-2- <br /> <br />': <br />.- <br />