Air conditioning manufacturers design equipment to achieve the highest SEER level of efficiency using the least amount of refrigerant. The systems are perfectly balanced and anything that affects the heat transfer creates an imbalance which drastically affects performance. A dirty coil reduces heat transfer which causes temperature and pressure of the refrigerant entering the compressor to increases above normal levels. The compressor will than work harder and draw more amps to keep up. The cooling capacity of the system will be greatly reduced and the mechanical components will be significantly stressed. A dirty coil means a higher operating cost, more wear and tear on the compressor and fans, and inadequate cooling.
Coils that have little maintenance performed often become clogged with seeds and dirt over time. If the condenser airflow is restricted on a hot day the compressor head and cylinders will become extremely "hot". The oil will than begin to break down and lose its ability to lubricate causing accelerated wear and allowing contaminants to enter the system. This can cause rings, pistons and cylinders to wear resulting in lower compression, leaking valves, and metal debris in the oil. Once this occurs compressor failure will soon follow. Air conditioners are a closed loop system and changing the oil is not a normal or easy procedure. The oil used in air conditioning systems is extremely resilient but will prematurely break down if the system is not looked after. Imagine trying to drive your car for 10 years without ever changing the oil. When a hermetic compressor fails the only way to fix the system is to replace the compressor. This involves opening the system, having the refri!
gerant and oil removed, and filter dryers installed to clean up the system of moisture and acid that will be introduced from opening the system and left from the failure. This is a very costly procedure and many systems at this point are not worth fixing.
* The benefits of keeping the coil clean are:
* Equipment operates at a lower temperature and removes more heat.
* You have lower operating amperage, resulting in lower energy costs







