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<br />SUMMER CALCULATIONS <br /> <br /> GLASS ~ BASE 1 BASE <br /> SUMMER SUMMER <br /> AREA PT MUL T. POINTS <br /> N '/7 ~.J 82.2 (. .., '1'1. L. <br /> NE 82,2 <br /> E /{ )'1 82.2 It tlo>. Jr'" <br /> SE 82,2 <br /> S (I "J,;,t., 82,2 ~/{"J r- <br /> SW 82.2 <br /> W .f-o .rT 82.2 L. (.6 ? t.. <br /> NW 82,2 <br /> H' 82,2 <br />en <br />en <br />:5 <br />0 <br /> , <br /> L <br /> <br />.~ <br /> <br />CLIMATE ZONES 4 5 6 <br /> <br /> GLASS ~ SINGLE-PA~ IE' -'- DOUBLE-PANE J. SUMMER I AS-BUILT <br /> SUMMER POINl tAT, OR SUMMER POINT MULT. X OVERHANG = GLASS <br /> AREA CLEAR INT"\ CLEAR TINT" FACTOR (6A.1) SUM. PTS <br />N ) 7. ?.1-- 51.0 / 51,5 \ 47.8 43.5 . If "J .~ mil D <br />NE 77.2 / 76.6 71.7 63,4 <br />E 'iI. J'i 109.2 I 107,1 102.0 87.3 Cf ) JI.~))' 'L <br />SE 112,9 110,3 104.1 89,4 , r <br />S y. X'~ 100.2 98.3 90.9 78.8 . 'i J Y'rl. 0 <br />SW 112.9 11 0.3 / 104.1 89,4 <br />W _'un 109,2 107.1 J 102.0 87.3 'Jf KJ C;r. u <br />NW 77.2 \ 76,6/ 71.7 63.4 <br />H' 367,7 \ 303.1 324,6 238.1 <br /> '--" <br /> . <br /> . <br /> <br /> <br />BASE CEILING AREA EQUALS FLOOR AREA DJRECTL Y UNDER CEILING, AS-BUILT CEILING AREA EQUALS ACTUAL CEILING SQUARE FOOTAGE. <br />" <br /> <br />.15 <br /> <br />COMPONENT <br />DESCRIPTION <br /> <br />EXTERIOR <br />:::l ADJACENT <br />oct <br />== <br /> <br />AREA <br /> <br />o <br /> <br />1.0 <br />.7 <br /> <br />[I EXTERIOR <br />g ADJACENT <br />o <br /> <br />jf:, <br /> <br />4,8 <br />1,6 <br /> <br />o <br />z <br />::::i <br />W <br />u <br /> <br />UNDER ATTIC <br />OR SINGLE <br />ASSEMBLY <br /> <br />~; ~/ <br /> <br />,6 <br />.6 <br /> <br /> <br />COMPONENT <br />DESCRIPTION <br /> <br />" <br /> <br />I ~~.~ II <br /> <br />" ~.t <br />f~:~ l <br /> '.:.:.... <br />" <br /> <br />., '{ <br />I ~i },. <br /> <br />~ <br /> <br />~,'Y <br /> <br /> <br />L -,~ (I <br />() <br /> <br /> <br /> SLAB (PERIMETER J?Q -31.8 - f""''I&b I l..:.:> _ 7,/.'1 - r~/(J u <br />a: RAISED (AREAl -3.43 , <br />0 <br />9,..- <br />lL. 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 /> <br />HOT <br />WATER <br />SYSTEM <br /> <br />AS-BUILT <br />HOT WATER <br />SYSTEM DESC. <br /> <br />NUMBER <br />OF x <br />BEDROOMS <br />2... <br /> <br />AS-BUILT <br />= HOT WATER <br />POINTS . <br />I ",Z L <br /> <br />'H = HORIZONTAL GLASS (SKYLIGHTS) <br /> <br />;t':. <br /> <br />'FOR GLASS WITH KNOWN SHADING COEFFICIENT, SEE SECTION 1.1 OF APPENDIX C, TINT MUL TJPLlERS MAYBE <br />USED FOR GLASS WITH SOLAR SCREENS, FILM, OR TINT <br /> <br />.2- <br /> <br />-,", <br />