Trane RT-PRC031-EN manual Selection Procedure

Page 29

Selection Procedure

at 95°F is approximatly 1336 MBH total cooling and 969 MBH sensible cooling capacity.

Step 6 - Determine Leaving Air Temperature

Unit sensible heat capacity corrected for supply air fan motor heat = 969 MBH Sensible - 109.0 MBH Motor

Heat = 860 MBH.

Supply air dry bulb temperature difference =

Sensible MBH X 1000/1.085 x Supply

CFM

Sensible Btu = 860 MBH x 1000 ÷ (1.085 x 36000 CFM) = 22°F

Supply air dry bulb = 79.5 DB - 22 = 57.5°F Leaving the cooling coil

Supply air wet bulb temperature difference = (need in RTU catalog too)

Total MBH x 1000 ÷ 4.5 x Supply CFM

=

Unit enthalpy difference = 1336 MBH x 1000 ÷ (4.5 x 36000 CFM) = 8.25 Btu/lb.

Leaving enthalpy = h (ent WB) - h (diff). From Table 6, p. 37, p. 40 h (ent WB) =

30.9 Btu/lb.

Leaving enthalpy = 30.9 Btu/lb. - 8.25

Btu/lb. = 22.65 Btu/lb.

Supply air wet bulb = 54.0 Leaving the cooling coil.

Leaving air temperature = 57.5 DB/ 54.0 WB

Heating Capacity Selection

Step 1 - Determine Air

Temperature Entering Heating

Module

Mixed air temperature = RADB +

%OA (OADB - RADB) = 70 + (0.10) (0 - 70) = 63°F

Supply air fan motor heat temperature rise = 109000 Btu ÷ (1.085 x 36000 CFM) = 2.8°F

Air temperature entering heating module = 63.0 + 2.8 = 65.8°F

Step 2 - Determine Total Winter Heating Load

Total winter heating load = peak heating load + ventilation load - supply fan motor heat = 720 + 288.6 - 109.0 = 899.6 MBH

Electric Heating System

Unit operating on 460/60/3 power supply.

From Table 29, p. 70, kw may be selected for a nominal 105 ton air handler "C" unit operating at 460-volt power. The 265 kw heat module (904.4 MBH) will satisfy the winter heating load of 899.6 MBH.

Table 28, p. 70 shows an air temperature rise of 23.2°F for 36000 CFM through the 265 kw heat module.

Unit supply temperature at design heating conditions = mixed air temperature + air temperature rise = 65.8°F + 23.2°F = 89.0°F.

Gas Heating System (Natural Gas)

From Table 27, p. 70 select the high heat module (1440 MBH output) to satisfy winter heating load of 899.6 MBH at unit CFM.

Table 27, p. 70 also shows an air temperature rise of 37.0°F for 36000 CFM through the heating module.

Unit supply temperature at design heating conditions = mixed air temperature + air temperature rise = 65.8°F + 37.0°F = 102.8°F.

Hot Water Heating System

Using a hot water supply temperature of 190°F and an entering

coil temperature of 65.8°F.

Subtract the mixed air temperature from the hot water temperature to determine the ITD (initial temperature difference).

ITD = 190°F - 65.8°F = 124.2°F.

Divide the winter heating load by ITD

=1008.6 MBH ÷ 124.2°F = 8.12 Q/ ITD.

From Table 30, p. 71, select the low heat module. By interpolation, a Q/ ITD of 8.12 can be obtained at a gpm of 41. Water pressure drop at 41 gpm is 0.34 ft. of water.

Heat module temperature rise is determined by:

Total Btu = 1.085 x CFM x Air temperature rise, °F 1008600 / 1.085 / 36000 = 25.8°F

Unit supply air temperature = mixed air temperature + air temperature rise = 65. 8 + 25.8 = 91.6°F.

Steam Heating System

Using a 15 psig steam supply. From Table 31, p. 71, the saturated temperature steam is 250°F. Subtract mixed air temperature from the steam temperature to determine ITD.

ITD = 250°F - 65.8°F = 184.2°F.

Divide winter heating load by ITD = 1008.6 MBH ÷ 184.2°F = 5.48 Q/ITD.

Table 31, p. 71, select the low heat module. The low heat module at 36000 cfm has a Q/ITD = 7.44

Heat module capacity, Q = ITD x Q/ ITD = 185°F x 7.44Q/ITD = 1376 MBH

Heat module air temperature rise is determined by:

Total Btu = 1.085 x CFM x Air temperature rise, °F 1376000 / 1.085 / 36000 = 35.2°F

Unit supply temperature at design conditions = mixed air temperature + air temperature rise = 65.8°F + 35.2°F = 100.1°F.

Air Delivery Procedure

Supply fan performance tables include internal resistance of air handler.

For total static pressure determination, system external static must be added to appropriate component static pressure drop cooling coil, filters, optional economizer, optional exhaust fan, optional heating system, optional cooling only extended casing).

Supply Fan Motor Sizing

The supply fan motor selected in the cooling capacity determination was

40.4BHP and 1097 RPM. Thus, a 40 HP supply fan motor is selected.

Enter Table 39, p. 77 to select the proper drive. For anair handler "C" with 40 HP motor, a drive letter A - 1100 RPM is selected.

RT-PRC031-EN

29

Image 29
Contents IntelliPak II Air Handlers Introduction Table of Contents Controls Cabinet Mechanical Features and BenefitsStandard Features Features and Benefits Optional Features Features Summary Features and Benefits Field Installed AccessoriesInstallation and Service ReliabilitySimplifying the Comfort System Features and Benefits Application FlexibilityIntegrated Comfort with Trane Tracer LCI Optimum Building Comfort Control Features and BenefitsInteroperability Statitrac Statitrac Direct Space Building Pressurization ControlVariable Frequency Drives VFD Supply Fans with Inlet Guide VanesSupply Air Temperature Controls Supply Air Pressure Control Controls Variable Air Volume VAV OnlyHeating Controls Variable Air Volume VAV OnlySupply Air Setpoint Reset Zone Temperature Control Occupied Zone Temperature Control Controls Constant Volume CV OnlyHeating Gas Heating Two-StageUnoccupied Zone Temperature Control Controls Constant Volume CV Only Auto ChangeoverCooling and Heating Hot Water or Steam HeatingSpace Pressure Control Statitrac Controls VAV and CVMorning Warm-up Options Emergency OverrideVentilation Override Module VOM Controls VAV and CVHuman Interface Panel Main Menu Human Interface Panel HIGeneric Building Automation System Module Gbas 0-5 vdc Chilled Water Coil Freeze Stat Generic Building Automation System Module Gbas 0-10 vdcSteam and Hot Water Coil Freeze Avoidance Night Setback SensorsOccupied/Unoccupied input on the RTM Dry Bulb Temperature Control of EconomizerTrane Tracer or BAS System Timed Override ActivationLonTalk Building Automation System Humidification ControlReturn Fan Control TwinningExhaust/Return Fan Options Applications ConsiderationsApplication Recommendations AdvantagesApplications Considerations Supply and Return Airflow ConfigurationsReturn Airflow Configuration Supply Airflow ConfigurationWith Bag CartridgeVentilation Override Sequences Corrosive AtmospheresNatural Gas Heating Considerations Acoustical ConsiderationsClearance Requirements Unit PlacementExternal Piping Enclosure Duct DesignProtecting Hydronic Coils From Freezing Selection Procedure Selection Procedure Return Fan Motor Sizing Exhaust Fan Motor SizingUnit Electrical Requirements Altitude CorrectionsDigit 7 Chilled Water Coil FIN Series Model Number DescriptionDigit 20 System Control Selection Model Number DescriptionDigit 38 Belt Guards Burglar BARS/MARINE Lights General Data General Data All dimensions in inchesGeneral Data Economizer Outdoor Air Damper Leakage at rated airflowi Gas Heat Inputs/Input RangesInputs MBH Input MBH Range MBH Standard Damper Optional Low Leak DamperWet Bulb Temperature Btu per Pound Performance Adjustment FactorsEnthalpy of Saturated Air Gas Heating Capacity Altitude Correction FactorsDB F WB F Performance Data-Chilled Water Coil CapacitiesChilled Water Coil Capacities-2 Row 5W Chilled Water Coil Capacities-4 Row W Performance Data-Chilled Water Coil CapacitiesChilled Water Coil Capacities-6 Row WD Chilled Water Coil Capacities-8 Row WD Total Static Pressure Std Air Supply Fan Performance Standard CFM Casing a1644 Supply Fan w/o IGV 931 Supply Fan Performance Standard CFM -Casing B1117 Supply Fan Performance Standard CFM-Casing B 749 Supply Fan Performance Standard CFM Casing C1019 Std Air Total Static PressurePerformance Data Supply Fan with Inlet Guide Vanes Performance Data Supply Fan with Inlet Guide Vanes Supply Fan Performance Standard CFM-Casing a Supply Fan Performance Standard CFM Casing B 1093 1600 RPM 1500 RPM 779 1021 1283 Negative Static Pressure Std Air Performance Data-Exhaust FanStatic PresureInWC Performance Data-Exhaust Fan237i Wocfm 415 Exhaust Fan Performance Standard CFM-Case C 32 Fan0 R P M Return Fan Performance Standard CFM-Case a 36.5 Fan Performance Data-Return FanReturn Fan Performance Performance Data-Return FanReturn Fan Performance Standard CFM-Case B and Case C 40 Fan Return Fan Performance Performance Data-Heat Electric Heat Air Temperature RiseNatural Gas Heating Capacities1 Electric Heat kw RangesHot Water Coil Heating Capacities Q/ITD Performance Data-HeatSteam Coil Heating Capacities Q/ITD Properties of SteamComponent Static Pressure Drops in. H2O Chilled Water Coil Airside Pressure Drop in H20Filters Prefilter High Low PD Cartridge Bag FiltersCartridge Filters Throw Temp Hi Temp Away Prefilter Casing Drive No Supply Air Fan Drive SelectionsExhaust Air Fan Drive Selections Horse Power HP Low Casing StdReturn Air Fan Drive Selections 15 HP 20 HP 25 HP 30 HP 40 HP Drive NoElectrical Data Electrical Service SizingSet 1. Cooling with Gas Heat Air Handling Units Set 2. Cooling with Electric HeatElectrical Service Sizing Data-Motors Voltage Utilization Range Electrical DataUnit Voltage Nominal Tons Voltage 460 575 FLA Add 90-150Unit Top/Front View Dimensional DataReturn Exhaust Unit Height Fan Casing Dimensional DataUnit Dimensions In.-One-Piece Unit Supply Opening Blank Casing Gas Heat Section Downflow/Horizontal Airflow Configuration DimensionsOpening Electrical Entry Details Piping Chilled Water Piping Locations Unit Option Selection Door Swing Ft. Standard Minimum Required ClearanceMinimum Required Clearance Ft Control Exh BoxCross Member Location Blank Casing Section Dimensions Blank Casing SectionBlank Casing Section Field Installed Sensors Variable Air Volume VAV Field Installed Sensors Constant Volume CV Field Installed Sensors VAV and CV Wireless Zone Sensor Wall or Duct Mount CO2 Zone Sensors Component Weights Lbs WeightsApproximate Operating Weights Lbs Weights Size Wt lbs Control Box Main 454 Convenience Outlet Roof Curb WeightsInstalled Shipping Casing Blank Weight Options Filters OptionsSystem Control Fresh AirMiscellaneous Options Agency ApprovalElectronic Zone Sensors Field Installed AccessoriesRoof Curb Electrical System Mechanical SpecificationsGeneral Water Valve Mechanical Specifications Cooling System Chilled Water CoilExternal Piping Enclosure Air Handling SystemMechanical Specifications Filters Exhaust Air Mechanical SpecificationsNo Relief Standard Percent Modulating Exhaust Fan OptionFresh Air Mechanical Specifications Return AirHeating System CO2 Sensing Page RT-PRC031-EN