13X36 - 614580-28, Heat Exchanger Assembly, 612222-07

Lennox

13X36 - 614580-28, Heat Exchanger Assembly, 612222-07

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Model #13X36
$2,520.70
$4,846.50
Save $2,325.80
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Description

The Heat Exchanger Assembly, identified by model number 612222-07, serves as a critical component in various heating, ventilation, and air conditioning (HVAC) systems, facilitating efficient heat transfer between fluids. This assembly is designed to play a pivotal role in achieving optimal temperature control and energy efficiency across a range of residential, commercial, and industrial applications.

Engineered for durability and effective heat exchange, the 612222-07 Heat Exchanger Assembly is typically constructed using high-quality materials such as stainless steel, copper, or aluminum. These materials are chosen for their exceptional thermal conductivity, which enables efficient heat transfer across the assembly's surfaces. The assembly often incorporates a combination of plates, tubes, and fins, maximizing the available surface area for enhanced heat exchange performance.

The design and configuration of the 612222-07 Heat Exchanger Assembly are carefully calibrated to suit specific applications and system requirements. Whether employed for air-to-air, liquid-to-liquid, or air-to-liquid heat exchange, the assembly's design aims to maximize heat transfer efficiency while minimizing pressure drops and energy losses. This optimization ensures effective thermal energy exchange, contributing to the overall efficiency and performance of the system it's integrated into.

Installation of the heat exchanger assembly involves strategically positioning it within the fluid or airflow path of the HVAC system. In air-based systems, the assembly might be integrated into the air handler or ductwork, allowing air to flow across its surfaces. For fluid-based systems, the assembly is incorporated into the piping network, facilitating efficient heat exchange between fluids. Proper installation ensures seamless integration with the system, enabling efficient heat transfer without disrupting the system's overall operation.

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