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T. 2011. Optimizing design and control of chilled water plants: Part 1: Chilled water distribution system selection. ASHRAE Journal 53(7). T. 2011. Optimizing design and control of chilled water plants: Part 2: Condenser water system design. ASHRAE Journal 53(9). T. 2011. Optimizing design and control of chilled water plants: Part 3: Pipe sizing and optimizing Delta T. ASHRAE Journal 53(12). T. 2012. Optimizing design and control of chilled water plants: Part 4: Chiller and cooling tower selection.

A “200 kW unit” or a “20 m3/s unit”) that adequately describes the desired product. Regardless of size or type, the designer must properly determine an air-handling unit’s required supply air temperature and volume; outdoor air requirements; desired space pressures; heating and cooling coil capacities; humidification and dehumidification capacities; return, relief, and exhaust air volume requirements; filtration; and required pressure Decentralized MERs Many buildings locate air-handling equipment at each floor, or at other logical subdivisions of a facility.

If not identified, an engineer should suggest to the owner or client that maintenance criteria be included as a component in developing the LCCA (see the section on Maintenance Management Systems). Electrical service and structural costs are greater when intermediatefloor instead of ground-level locations are used, but may be offset by reduced energy consumption and condenser and chilled-water piping costs. The boiler plant may also be placed on the roof, eliminating the need for a chimney through the building.

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