Baldor GLC50, GLC35, GLC80, GLC125 manual Heat Exchanger, Cooling System Determination

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The remote radiator may be mounted either vertically or horizontally. In general, the radiator will have an electric fan to provide cooling air and may be able to utilize the engine mounted coolant pump to provide coolant flow.

The piping system friction and head loss between engine and radiator must be calculated and not exceed the capacity of the engine pump. If the maximum coolant friction head loss external to the engine is exceeded, a hot well system must be used. Before designing the piping system using an auxiliary pump and hot well, the consultant should look very closely at increasing the system’s pipe size.

The electric fan and auxiliary pump, if used, must be connected to the emergency power system. Radiator and cooling fan must be sized to provide the cooling capacity required at an acceptable sound level.

Caution: In cold climates, the high volume of outside air drawn into the genset room can quickly reduce temperatures in the room to freezing. Any water piping or other equipment susceptible to freeze damage should be properly insulated or located elsewhere.

Heat Exchanger

In the heat exchanger system, engine coolant is circulated through the shell side of a heat exchanger, while city water, well water, or some other cooling medium, is circulated through the tube side. The primary consideration in this type cooling system is to remember that during certain types of disasters, these cooling mediums may not be available, especially city water. The system is relatively inexpensive to install and maintenance is low. See Figure 2-10.

Figure 2-10 Heat Exchanger Cooled System

The heat exchanger cooling system can be used with a cooling tower. These systems are complex, and consists of circulating pumps, heat exchanger for engine coolant, and cooling tower for heat rejection. The system design requires that several pieces of equipment be sized and installed. Overall, this system is more expensive than other methods of engine cooling.

Cooling System Determination

After cooling system selection, gather the required basic information before proceeding through this section. Information required includes engine heat rejection load, pumping capacity of the engine mounted pump, engine coolant flow requirements and pressure drop through the engine, and allowable operating temperature. This information is found on the engine data sheet.

Cooling System Design

Engine Mounted Radiator Cooling

If the engine mounted radiator is selected, the only remaining design work is arranging a method of providing air to the room, and exhausting that air from the radiator. See “Air Systems”.

2-12 General Information

MN2408

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Contents GLC Generator California Proposition 65 Warning Table of Contents Generator AC Metering Engine Parameter Display Appendix aSection Product Safety Information Read This Manual ThoroughlySymbols OperationOperation Warning Statements Burn Installation Maintenance Product Safety Information MN2408 Warranty Period Limited WarrantyLabor Parts General Information MN2408 Installation Guidelines Site PlanningExhaust System Controls and Transfer SwitchEngine Cooling System Room AirSetting The Genset On An Existing Concrete Floor Slab Foundation Design Foundation ChecklistVibration Isolators Weight Of The Genset Approximate Weight vs. kW OutputDesigning An Isolated Foundation Calculate Soil Bearing Load SBL CapacityTypical Foundation Installation Approximate Load Bearing Capacities of Various Soil TypesMulti-Engine Installations Exhaust System Exhaust ChecklistSystem Placement Level Of AttenuationExhaust System Calculations Exhaust Piping Cooling System Cooling System Checklist Radiator CoolingCooling System Determination Heat ExchangerCooling System Design Engine Mounted Radiator Cooling Hot Well Installations Remote Radiator Cooling11 Valves & Fittings and Fluid Flow in Pipe Other Considerations 13 Coolant Mixture Air System Air System Checklist Wind BarrierEngine Crankcase Ventilation Transfer Switch Transfer Switch Checklist Transfer Switch LocationBattery Starting System Battery LocationBattery Charger Battery CablesGeneral Information MN2408 When the Generator is installed outdoors Generator LiftingMounting Dimensions Generator MountingSecure the Generator Ventilation TestBackpressure must not exceed 20 of water column Hot Exhaust GassesGuidelines for Exhaust System Page Fuel Consumption Natural and LPG Fuel ConnectionsGeneral Considerations Natural Gas Connections Example Determining Pipe Size for Natural GasNatural Gas Flow Rate Cubic Feet per Hour per Pipe Length Example Determining Pipe Size for LPG LP Gas Flow Rate Cubic Feet per Hour per Pipe LengthTransfer Switch Considerations RatingThree Phase WYE and Delta Connections General Wiring Considerations Battery Charger ConsiderationsFrame Ground Connection Page GLC100 Recommended Engine Oil and Battery TypePost Installation Checks GLC125Post Installation Checks Operator Control Panel Digital Engine Controller Only Run SwitchOn when the OFF Switch is used to stop the engine Programming KeysManual Start/Stop Operator Control PanelAutomatic Start/Stop Automatic Fault Shutdown Automatic Mains Failure AMFUtility Normal Condition Utility Power Failure ConditionsUtility Power Restored Load Test Push-button OperationNo Load Test Engine Controller Inputs & Outputs Analog Faults Crank RunSuch as Fuel Rack Solenoids or electronic governors Engine starter motorFront panel keypad push-button Are no active faultsAction Description Display Comments NormalOther time delay functions are Vab Displays the generators output voltage Phase system not applicableGenerator KVA Display Vbc Displays the generators output voltageBattery Voltage/Engine Speed Navigation Hints Main Menu Loop Voltage Calibration Procedure Span Calibration Repeat for each phaseDisplayed values Oil Pressure Engine Temperature & Oil Pressure CalibrationDisplays the type of calibration function UsedConfiguration Data Sheet Main Menu Loop Parameters Parameter Setting Volts A-B Fault Name Input Analog198 F Alarm Battery VoltageEngine Control Connections Operator Control Panel Analog Engine Controller Only 10 Analog Operator Control Panel11 9957N Analog Engine Controller Connections 12 A121H Analog Engine Controller Connections Service Garretson Model KN Fuel Valve Considerations GeneralInstallation Section Troubleshooting and Maintenance EngineProblems and Solutions General Troubleshooting GuideTroubleshooting Guide Digital Controller Only Verify the adjustments. Replace controller if failed Troubleshooting Guide Analog Controller OnlySpeed Part number DIODE, 1N5408GLC GLC125 Replacement PartsLAMP, #67, 12 Volt Flywheel Housing Magnetic Pickup Cable Jam NutGLC Circuit Breaker & Electrical Data FLAGLC Data 259 300 MN2408 Series GLC A-7 144 150 GLC Wire Size Figure A-2 Customer Interface Connection Diagram MN2408 Series GLC A-11 Figure A-4 Single Phase w/o Breaker Connection Diagram Figure A-5 Single Phase One Breaker Connection Diagram Figure A-6 Single Phase Two Breaker Connection Diagram MN2408 Series GLC A-15 Series GLC MN2408 MN2408 Series GLC A-17 Series GLC MN2408 Figure A-11 Three Phase Connection Diagram Figure A-12 Three Phase Connection Diagram with PMG MN2408 Series GLC A-21 Series GLC MN2408 MN2408 Series GLC A-23 Series GLC MN2408 MN2408 Series GLC A-25 Series GLC MN2408 MN2408 Series GLC A-27 Figure A-20 Control Box Connections with MEC2 Controller Figure A-21 Engine Wiring, Woodward 4.3L GM Figure A-22 Engine Wiring, Woodward 5.7L GM Figure A-23 Engine Wiring, Woodward 8.1L GM Series GLC MN2408 Standby Continuous PowerName Address Phone Model Number Job Number No LoadAre legible Adjust the AC voltage to match the normal sourceSwitch Proper belt alignment and tensionsBaldor District Offices Baldor Electric Company MN2408 04 FAR200