Efficient variable capacity chilled water plant design with reduced mechanical cooling and thermal storage
A system configuration for a chilled water plant is described in which mechanical cooling is reduced in favor of less energy intensive ambient dry or evaporative cooling. While the system sees the greatest performance improvement in dry and cool climates, considerable energy savings may be realized in a variety of climate zones. Less facility hardware is required for the same amount of total cooling capacity, reducing the overall cost of the plant.
1. A cooling system comprising:
a first hydronic loop with a heat exchanger and cooling tower in series;
a second hydronic loop with a chiller and cooling tower in series; and
a chilled-water loop thermally connected to the first hydronic loop and the second hydronic loop, the chilled-water loop connected such that the chilled-water loop may bypass the first hydronic loop or the second hydronic loop.
2. The cooling system of claim 1 further comprising:
a third hydronic loop with a heat exchanger and cooling tower in series; and
a fourth hydronic loop with a heat exchanger and cooling tower in series, wherein the third and fourth hydronic loops are connected in parallel with the first hydronic loop.
3. The cooling system of claim 2 wherein the chilled-water loop is connected to the third hydronic loop such that the chilled-water loop may bypass the third hydronic loop.
4. The cooling system of claim 1 wherein the chilled-water loop is connected to each of the first and second hydronic loops through either a thermal connection or an evaporator.
5. The cooling system of claim 1 wherein the cooling system has a greater than 1:1 ratio of non-mechanical to mechanical cooling.
6. The cooling system of claim 1 further comprising a thermal energy storage system thermally connected to the chilled-water loop.
7. The cooling system of claim 1 , wherein the cooling tower includes a fan associated with the cooling tower.
8. The cooling system of claim 1 , wherein the cooling tower includes a pump associated with cooling tower.
9. The cooling system of claim 1 , wherein the chilled-water loop has an associated vapor compression cycle.