GE GTS12BBPLCC owner manual Refrigerator Location, Clearances, Leveling Legs

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Installation Instructions

Refrigerator

Models 11 and 12

If you have questions, call 1.800.GE.CARES or visit our Website at: ge.com

BEFORE YOU BEGIN

Read these instructions completely and carefully.

IMPORTANT – Save these instructions for local inspector’s use.

IMPORTANT – Observe all governing codes and ordinances.

Note to Installer – Be sure to leave these instructions with the Consumer.

Note to Consumer – Keep these instructions for future reference.

Skill level – Installation of this appliance requires basic mechanical skills.

Completion time – Refrigerator Installation

15 minutes

Reversing the Door Swing

1hour

Proper installation is the responsibility of the installer.

Product failure due to improper installation is not covered under the Warranty.

REFRIGERATOR LOCATION

Do not install the refrigerator where the temperature will go below 55°F (13°C) because it will not run often enough to maintain proper temperatures.

Install it on a floor strong enough to support it fully loaded.

Do not install it closer than 5(13 cm) next to a range.

CLEARANCES

Allow the following clearances for ease of installation, proper air circulation and plumbing and electrical connections.

Sides 1(2.5 cm)

Top 4(10.2 cm)

Back 2(5 cm) from the coiling on the back to the wall

To help with proper spacing and ventilation, make sure the metal spacer or twist-on rubber bumper (at the back of some models) is in place.

LEVELING LEGS

Adjustable legs at the front corners of the refrigerator should be set so the refrigerator is firmly positioned on the floor, and the front is raised just enough that the door closes easily when opened about halfway.

To adjust the leveling legs, turn the legs clockwise to raise the refrigerator, counterclockwise to lower it.

To raise the refrigerator

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Contents Refrigerators Before You Throw Away Your Old Refrigerator or Freezer Operating Instructions InstallationConsumer Support Troubleshooting Tips HOW to Connect Electricity Operating InstructionsInstructions Safety Instructions Installation InstructionsAbout the control on the refrigerator About the storage drawerAbout ice service Icemaker Accessory Kit Model 12 onlyIce Trays Water Supply Kits Model 12 onlyCare and cleaning of the refrigerator Installation Instructions TipsConsumer Support Troubleshooting Cleaning the OutsideSafety Instructions OperatingReplacing the Light Bulb Preparing for VacationLeveling Legs Refrigerator LocationClearances Remove the Freezer Door Important NotesTools YOU will Need Tape the door shut with masking tape Remove the Fresh Food DoorTransfer TOP Hinge to the Left Transfer Fresh Food Door Stop to the Left Install the door stop on the left sideTransfer Bottom Hinge to the Left Attach Freezer Door Handle to the Right Remove Freezer Door Handle from the LeftTransfer Freezer Door Stop to the Left Install Center Hinge on the Left Rehang the Fresh Food DoorRehang the Freezer Door Align the DoorsOperating Instructions Safety Instructions Installation Correct temperaturesNormal operating sounds Amount of food is added to the refrigerator or freezerBefore you call for service…ge.com Safety Instructions Operating Instructions InstallationBefore you call for service… We’ll Cover Any Appliance. Anywhere Anytime GE Service Protection PlusConsumer Product Ownership Registration Safety Instructions Operating Instructions TroubleshootingGE Will Replace What GE Will Not CoverSchedule Service Parts and AccessoriesConsumer Support GE Appliances Website Real Life Design Studio

GTS12BBPLCC specifications

The GE GTS12BBPLCC is an advanced gas turbine designed for power generation applications, renowned for its efficiency and reliability. As part of General Electric’s family of gas turbines, the GTS12BBPLCC promises enhanced performance and operational flexibility, making it an attractive option for both utility and industrial settings.

One of the main features of the GTS12BBPLCC is its combined cycle capability, which allows operators to achieve higher efficiencies by utilizing both gas and steam turbines. This configuration can significantly reduce fuel consumption and greenhouse gas emissions, contributing to a more sustainable energy generation process. The turbine operates in a simple cycle mode as well, providing flexibility based on operational demands.

The GTS12BBPLCC incorporates advanced aerodynamics and materials that contribute to its superior performance. The turbine blades are designed using state-of-the-art computational fluid dynamics (CFD), which optimizes airflow and enhances combustion efficiency. Additionally, the use of advanced nickel-based superalloys ensures that the turbine can withstand the high-temperature conditions typical in gas turbines, enhancing durability and service life.

Another important characteristic of the GTS12BBPLCC is its quick start-up capability. Operators can bring the turbine online rapidly, which is critical in meeting sudden increases in electricity demand. This feature is particularly useful in markets with variable renewable energy sources, as it allows for seamless integration and grid stability.

The control system of the GTS12BBPLCC is equipped with GE’s latest digital technologies, including advanced monitoring and diagnostic capabilities. Operators have access to real-time data on turbine performance, enabling proactive maintenance and reducing unplanned outages. This digital edge enhances operational reliability and optimizes maintenance schedules.

Designed with operational flexibility in mind, the GTS12BBPLCC can efficiently utilize a variety of fuels, including natural gas and liquefied petroleum gas, further enhancing its versatility. This adaptability makes it suitable for diverse operational environments, from peaking power plants to baseload operations.

In summary, the GE GTS12BBPLCC stands out as a leading solution in the gas turbine market due to its combined cycle capability, advanced materials, quick start-up features, and digital monitoring technologies. Its ability to operate efficiently and flexibly makes it an ideal choice for modern power generation needs, paving the way for cleaner and more reliable energy production.