Heating & Cooling B

By | December 11, 2015

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– Heating and cooling (HVAC) – Passenger compartment – Energy storage – Engine – Power electronics – Electric machines – Transmission Approach – KULI Thermal Model . 12. National Renewable Energy Laboratory

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Water Heating Calculation Method . energy use for water heating will be combined with hourly space heating and cooling energy use to come up 0.038 . 13 : 0.051 . 0.036 : 14 . 0.043 : 0.033 . 15 : 0.039 . 0.032 : 16 . 0.039 : 0.026 . 17 : 0.052 . 0.042 : 18 . 0.058 :

TAC Erie™ Non-Digital, Electronic On/Off Thermostat/Controller Model Chart The T155 series thermostat provides on/off control for low voltage and line voltage control of valves, Figure 1 Typical 2-Pipe Cooling or Heating Only. No Fan Connections. Cooling Shown.

ISSN 2172-038 X, No.12, April 2014 Heating and cooling a building using water from boreholes M. R. Duque 1, J. Pascoal heating and for cooling a room, the amount of water needed, and the maximum number of rooms which could be heated or cooled

(TDR) increases cooling performance when matched with a NORDYNE coil. • High efficiency blower kits maximize efficiencies. On Input Heating Capacity 038 = 38,000 054 = 54,000 072 = 72,000 090 = 90,000 108 = 108,000 120 = 120,000 S = Single Stage T = Two Stage Gas Furnace C

W.B-heating Inlet Water temp. Cooling capacity *2 kW kcal / h BTU / h kW A D.B (Nominal) *2 *2 psi = MPa×145.038 * The specification data is subject to rounding variation. PURY-P*T(S) PWFY-P36, 72NMU-E-AU: Heating

GT-PX 6 GT-PX (50YD) Series Carrier: Turn to the Experts. Unit Model Key 5 0 0 2 6 J C B 3 2 1 4 5 6 7 8 9101112 Prefix Series 026 , 038, 049, 064, 072

Up to 98% AFUE Communicating, Modulating Gas Furnace EASIER TO SELL 98% AFUE on F9MAE0602120 .15 (.038) .15 (.038) .20 (.050) .20 (.050) Cooling .5 (.125) Airflow Delivery @ Rated ESP (CFM) Maximum 1075 1080 1500 1345 1575 1820 Intermediate COOLING4 AND HEATING AIR DELIVERY – CFM (Bottom

High-Temperature X-Ray Diffraction Apparatus By Alvin Van Valkenburg, Jr., changes on heating, different modifications being stable at different temperatures. Ou ter hrass case with cooling coil; B, intermediate steel shield; C, platinum

heating and cooling 14723 1473 1474 1475 1476 1477 1478 1479 1480. 14816 1482 14837 1484 Per-cent 99.20 87.75 83.80 77.00 69.82 65.40 95.70 75.86 80.02 82.28 88.63 86.75 73.00 Per-cent ~12.~25~ 11.96 11.08 9.72 7.75 1.95 11.57 9.58 6.70 8.58 9.97 4.45 Per-cent ~~4.~22~ 11.90 20.50 26

10 Sales to exempt organizations, not including sales for residential heating/cooling (from Form PT-106.1/201.1, Part 3) .038 – includes the rate for the petroleum business tax at the nonresidential heating rate only (B20).048

Heating ↑ 0.246 ± 0.009 0.33 ± 0.02 a,b 0.038 ± 0.006 a,b 32°C Cooling ↓ 0.246 ± 0.009 c 0.26 ± 0.03 c 0.023 ± 0.002 c steering rate and/or withdrawal rate. Values for heating, cooling, and constant temperature, respectively, were set as their average over the 21-35 °C range,

EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH CERN – SL DIVISION CERN-SL-99-038 BT Transient quasi-static thermal stresses in a bar subject to transverse 2D-Gaussian heating and to lateral cooling

Heating Input BTUH 038=38,000 120=120,000 Cabinet Width A=141/2" B=171/2" C=21" D=241/2" Max. CFM Cooling* 2 = 800 CFM 3=1200 CFM 4=1600 CFM * Factory set cooling speed Factory set heating speed GDD92-Model Htg Input BTUH Motor Speed External Static Pressure (Inches Water Column)

YAF T 038 T L 1 4 1 C A 0 C * 1-3 4 4-6 8 9 1011 121314 15 16 17 Model YAF – Affinity Forced Air Stage S – Single Speed T – Dual Capacity Unit Capacity 012, 018, 022, 026, 030 Determine the corrected heating and cooling performance at 30°F and 90°F

838 JOURNAL OF APPLIED METEOROLOGY VOLUME 38 FIG. 1. Cooling and heating day deļ¬nitions. He concluded that the prediction of future heating-en-ergy demand is dependent not only on historical aver-

(TDR) increases cooling performance when matched with a NORDYNE coil. • High efficiency blower kits maximize efficiencies. On Input Heating Capacity 038 = 38,000 054 = 54,000 072 = 72,000 090 = 90,000 108 = 108,000 120 = 120,000 S = Single Stage T = Two Stage Gas Furnace C

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