Emerson 3000 installation manual Glycol Systems, Ton water/glycol-cooled condensing unit

Page 79

Split System Models

7.6.4Glycol Systems

For split system glycol systems, use drycooler and pump data found in 5.0 - Glycol/GLYCOOL- Cooled Models—Self-Contained Compressor. See Table 18 - Drycooler data.

Electrical control interconnect to drycooler is wired from water/glycol condensing unit.

Figure 41 3-ton water/glycol-cooled condensing unit

 

8-7/8" (225mm)

14" (356mm)

3-7/8" (98mm)

50-1/4" (1276mm)

Overall Cabinet

Overall Dimension

 

 

Dimension

 

48-1/4" (1225mm)

 

12" (305mm)

8-7/16" (214mm)

Threaded Rod Centers

Threaded Rod

 

46-1/2" (1181mm)

 

Centers

 

 

 

 

Cabinet Dimension

 

20-3/4"

 

 

 

 

 

 

(527mm)

Customer-Supplied

 

 

22-1/2"

 

 

(572mm) Cabinet

Threaded Rods for Module

Outlet

 

Dimension

Support from Ceiling (typ. 4)

 

 

Inlet

 

 

 

 

 

Holes for Module

 

 

Minimum Clearance

Rigging (typ. 2 each end)

DIMENSIONAL DATA

 

33" (838mm) This side

 

Integral Hanging Bracket

 

for component access

 

 

and removal

3/4" (19mm) NPT Female

Water/Glycol Inlet Connection

3/4" (19mm) NPT Female

Water/Glycol Outlet Connection

Suction Line

Male Quick

Connect

Liquid Line

Male Quick

Connect

7/8" (22mm) Dia. Electrical Entrance

for Low-Voltage Connection

7/8" (22mm) Dia. Electrical Entrance for High-Voltage Connection

PIPING CONNECTIONS

SL-11085 Pg. 6

73

Image 79
Contents Liebert Challenger 3000 with iCOM Page Table of Contents Split System Models Chilled Water ModelsR407C Refrigerant Figures Tables Important Safety Instructions Page System Descriptions Water-Cooled Split SystemsProp Fan Air-Cooled Centrifugal Fan Air-CooledEquipment Handling Room PreparationEquipment Inspection Location ConsiderationsModel Lb kg Unit net weightHandling With Skid Removal of SkidUpflow BU cabinet dimensions Floor Cutout Dimensions Drain Line Piping ConsiderationsPiping connection size Piping Outlet Locations Piping connections for air-cooled units Upflow models Installation Applicable to all Models Installation Applicable to all Models Installation Applicable to all Models Installation Applicable to all Models Installation Applicable to all Models Installation Applicable to all Models Electrical Connections Facility Fluid and Piping MaintenanceHumidifier Supply Water-Optional Infrared Terminal Block for customer connections Downflow Models with Liebert iCOM Upflow Models with Liebert iCOMDucted Applications Plenum InstallationBalancing the Air Distribution Under-Floor Discharge SystemsChecklist for Completed Installation Line Voltage Condenser LocationLow Voltage Air-cooled condenser statistics Recommended line sizes OD copper inches Refrigerant PipingIndoor unit refrigerant charge lb kg Fan Speed Control SystemsVariable Fan Speed Control Piping Equivalent lengths feet for various pipe fittingsVariable Fan Speed Control Materials Supplied Variable Fan Speed Charging Fan speed suction pressure transducer settingsFactory Piping Field Piping Factory Piping Liebert Lee-Temp Piping Lee-Temp Leak Check and Evacuation ProcedureLiebert Lee-Temp Controlled Materials Supplied 407C Lee-Temp suction pressure transducer settingsLee-Temp Charging Lee-Temp Receiver Refrigerant LevelFactory Piping Optional Piping Pressure Relief Condenser Factory Piping Field Piping Factory Piping Field Piping Water Regulating Valve AdjustmentControl Refrigerant control settings psi kPaMotorized Ball Valve-Digital Scroll Compressors Manual FlushingLocation StartupManual Control Drycooler Location Drycooler InstallationPump and Drycooler General Guidelines Glycol PipingDry Bulb Wet Bulb Relative Dew Point Humidity Room dew point temperaturesPreparing the System for Filling Volume in standard Type L copper pipingFilling Instructions Expansion Tanks, Fluid Relief Valves and Other DevicesGlycol Solutions Ethylene glycol concentrations Filling the System@ 50F 10C 483mm 1097mm For expansion tank dimensions, see on43-3/16 43-9/16 110 5mm See Note 30-1/4Pump Pump Suction Pump Discharge Connection Mounting hole dimensional dataDrycooler data Glycol pump dataField Piping General arrangement-Glycol-cooled models with digital scroll Field Piping Factorypiping Field Piping Glycol Regulating Valve Testing Valve FunctionMotor Ball Valve-Digital Scroll Compressors Chilled Water Models WAY Valve Water/Glycol-Cooled Condensing Units Air-Cooled Condensing UnitsRefrigerant Loop Line charges refrigerant per 100 ft m of Type L copper tube Unit refrigerant chargeRecommended refrigerant lines R407C sizes OD copper Line coupling sizes Quick Connect FittingsModel Line Size Coupling Torque Tons OD Cu, Lb-ft Outdoor Air-Cooled Condensing Units Unit Dimensions See TablePFCZ42A-L PFCZ41A-L See Table Outdoor air-cooled condensing unit-top air discharge models36-1/4 38-1/2 Piping and electrical connections top air discharge152 Ton High Ambient Ton Quiet-Line Field-supplied unit disconnect switchIndoor centrifugal condensing unit Installing the Indoor Condensing UnitModel Net Weight 60 Hz 50 Hz Lb kg MC40A MC39A Centrifugal Air-Cooled Condensing UnitsAirflow CFM CMH DuctingPiping Connections Mod Wire connections from evaporatorDPN000207 Rev0Ton centrifugal air-cooled condensing unit dimensional data AIR Cooled Water Cooled Regulating Valve Water and Glycol-Cooled Condensing UnitsPiping Considerations Condenser Water RequirementsTon water/glycol-cooled condensing unit Glycol Systems24V GND Ton water/glycol-cooled condensing unit dimensional data WATER/GLYCOL R407C Refrigerant Temperature Gauge Pressure Psig KPaCalculating Subcooling Temperature Pressure Gauge Psig KPaExample R407C Refrigerant R407C Refrigerant Page Te r Ys t Ne tIti Ti n That
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3000 specifications

The Emerson 3000 is a cutting-edge control system designed to enhance the efficiency, reliability, and precision of industrial operations. Employed across various sectors such as oil and gas, pharmaceutical, food and beverage, and power generation, the Emerson 3000 has gained recognition for its robustness and versatility.

One of the main features of the Emerson 3000 is its advanced process control capability. With integrated control algorithms, it can optimize complex processes in real-time, resulting in significant improvements in production rates and reduced operational costs. The system's predictive analytics capabilities enable operators to anticipate equipment failures and maintenance needs, allowing for proactive management and minimizing downtime.

The Emerson 3000 features a modular architecture, providing flexibility for scaling and customization. Operators can easily tailor the system to fit specific application needs, whether it requires additional control loops or integration with other systems. This adaptability is particularly beneficial for facilities planning for future expansions or modifications.

Another technology highlight of the Emerson 3000 is its seamless integration with the latest Internet of Things (IoT) advancements. The system is designed to communicate effectively with a variety of smart devices and sensors, harnessing data to create insightful analytics that drive operational excellence. This connectivity empowers businesses to leverage big data for improved decision-making and increased agility.

Additionally, the Emerson 3000 incorporates state-of-the-art cybersecurity measures to safeguard critical data and operations. With built-in security protocols and regular updates, the system protects against emerging cyber threats, ensuring the integrity of the control network.

User experience is also a focal point of the Emerson 3000. The intuitive graphical user interface presents complex data in a user-friendly format, making it easier for operators to monitor system performance and respond to alerts quickly. This ease of use contributes to enhanced safety and operational efficiency.

In summary, the Emerson 3000 represents a fusion of advanced process control, modular design, IoT connectivity, robust cybersecurity, and user-centric interface, making it an ideal choice for industries seeking to enhance their operational performance while adapting to ever-evolving technological landscapes.