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Handbook of air conditioning and refrigeration / Shan K

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A.8 APPENDIX A<br />

s�h warm <strong>air</strong> supply<br />

si supply <strong>air</strong> for interior zone<br />

sil silencer<br />

sk skin<br />

sn supply <strong>air</strong> for zone n<br />

sn,d zone supply <strong>air</strong> at design condition<br />

sn,p supply <strong>air</strong> for zone n at part load<br />

sol solar<br />

s�s supply system<br />

s�t supply temperature<br />

suc suction<br />

sun sunlit<br />

sur surroundings<br />

sx supply <strong>air</strong> for perimeter zone<br />

T total, overall, temperature<br />

t time<br />

un unconditioned<br />

var variable part<br />

ve saturated water vapor leaving<br />

evaporator<br />

w water, condensate, winter<br />

wb water at dry-wet boundary,<br />

boiler hot water<br />

we water entering<br />

wet wet <strong>air</strong><br />

wl water leaving<br />

w,o winter outdoor<br />

ws water vapor at saturated state<br />

xl regeneration <strong>air</strong> leaving the sensible<br />

heat exchanger, exit <strong>of</strong> heat<br />

exchanger<br />

Greek Letter Symbols<br />

� mean temperature coefficient;<br />

angle between the <strong>air</strong> <strong>conditioning</strong><br />

process <strong>and</strong> horizontal line<br />

on psychrometric chart, deg;<br />

thermal diffusivity, ft 2 /s; absorptance;<br />

spreading angle <strong>of</strong> <strong>air</strong> jet,<br />

deg; damper characteristic ratio<br />

� solar altitude angle, deg; blade<br />

angle, deg<br />

� ratio <strong>of</strong> specific heat at constant<br />

pressure to constant volume, surface-solar<br />

azimuth angle, deg<br />

� difference<br />

� solar declination angle, deg<br />

� emissivity; absolute roughness,<br />

in.; effectiveness; effectiveness<br />

factor<br />

�ex <strong>air</strong> exchange efficiency<br />

�sat saturation effectiveness<br />

�wet wet coil effectiveness<br />

� efficiency<br />

�cb combustion efficiency<br />

�com compressor efficiency<br />

�cp compression efficiency<br />

�dr efficiency <strong>of</strong> driving mechanism<br />

�f fan total efficiency; fin efficiency<br />

�fu furnace efficiency<br />

�isen isentropic efficiency<br />

�mec mechanical efficiency<br />

motor efficiency<br />

�ov overall efficiency<br />

�p pump efficiency<br />

�s fan static efficiency, fin surface<br />

efficiency<br />

�sat saturation effectiveness<br />

�sy,h system efficiency for heating<br />

�t fan total efficiency<br />

�v volumetric efficiency<br />

�ww wire-to-water efficiency<br />

� angle <strong>of</strong> incidence, deg; effective<br />

draft temperature, °F<br />

� mo, � mot<br />

� absolute viscosity, lb/ft�s; degree<br />

<strong>of</strong> saturation; mechanical<br />

efficiency<br />

� kinematic viscosity, ft 2 /s<br />

� density, lb/ft 3 ; reflectance<br />

�suc density <strong>of</strong> suction vapor, lb/ft3 � angle between tilting <strong>and</strong> horizontal<br />

surface, deg<br />

� Stefan-Boltzmann constant,<br />

0.1714 � 10� 8 Btu/h�ft2�°R4 ;<br />

st<strong>and</strong>ard deviation<br />

� transmittance

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