Coil with Built-In Primary and Auxiliary Drain Pans and Method
An air-conditioning system provides a primary drain pan built in beneath an evaporator coil with primary drain lines. An auxiliary drain pan is built into the air conditioning system to receive overflow condensate from the primary drain pan and drains through auxiliary drain lines. The built-in auxiliary drain pan and primary drain pan are plumb with respect to each other. The assembly construction thereby provides reduced time and costs associated with storing, transporting, installing, leveling, and plumbing individual components.
1 . An air conditioning system, comprising:
an evaporator coil;
a housing surrounding said evaporator coil, said housing defining an input for airflow;
a primary drain pan formed within said housing positioned to receive condensate from said evaporator coil; and
at least one auxiliary drain pan formed within said housing and operatively in communication with said primary drain pan for receiving overflow from said primary drain pan.
2 . The air conditioning system of claim 1 , wherein said primary drain pan and said at least one auxiliary drain pan are plumb with respect to each other.
3 . The air conditioning system of claim 1 , wherein said at least one auxiliary drain pan forms a bottom of said housing.
4 . The air conditioning system of claim 1 , wherein said at least one auxiliary drain pan is positioned above a bottom of said housing.
5 . The air conditioning system of claim 1 , wherein said at least one auxiliary drain pan is positioned at least partially directly beneath said primary drain pan.
6 . The air conditioning system of claim 1 , wherein a plenum comprises at least a portion of said housing.
7 . The air conditioning system of claim 1 , wherein a plenum is interconnectable to said housing, and said at least one auxiliary drain pan is positioned at least partially in said plenum.
8 . The air conditioning system of claim 6 , wherein said at least one auxiliary drain pan extends into said plenum.
9 . The air conditioning system of claim 6 , wherein drain holes for said at least one auxiliary drain pan are formed in said plenum.
10 . The air conditioning system of claim 1 , wherein drain holes for said at least one auxiliary drain pan are formed in said housing.
11 . The air conditioning system of claim 1 , wherein said primary drain pan and said at least one auxiliary drain pan comprises one or more of metal, plastic, fiberglass, and composite materials.
12 . The air conditioning system of claim 1 , wherein said primary drain pan nests within said at least one auxiliary drain pan.
13 . A method for making an air conditioning system, comprising steps of:
providing an evaporator coil;
mounting a housing in surrounding relationship to said evaporator coil;
defining at least one input for airflow through said housing;
providing a primary drain pan within said housing positioned to receive condensate from said evaporator coil; and
providing at least one auxiliary drain pan within said housing operatively in communication with said primary drain pan for receiving condensate from said primary drain pan.
14 . The method of claim 13 , providing that a drain pan bottom of said at least one auxiliary drain pan also forms a bottom of said housing.
15 . The method of claim 13 , mounting said at least one auxiliary drain pan at least partially directly above a bottom of said housing.
16 . The method of claim 13 , securing at least a portion of said primary drain pan within said at least one auxiliary drain pan.
17 . The method of claim 13 , providing an interconnectable plenum for said housing.
18 . The method of claim 13 , providing that said at least one auxiliary drain pan extends from said input of said housing into a plenum.
19 . The method of claim 13 , forming drain holes for said at least one auxiliary drain pan in a plenum.
20 . The method of claim 13 , forming drain holes for said at least one auxiliary drain pan in said housing.