Optimal Outside Airflow Control of an Integrated Air-Handling Unit System for Large Office Buildings

Author:

Song L.1,Liu M.1

Affiliation:

1. Energy Systems Laboratory, Architectural Engineering, University of Nebraska, 1110 S. 67th St., Omaha, NE 68182

Abstract

This paper presents optimal outside air control schedules for an integrated air-handling unit system for large commercial buildings (OAHU). The schedules are developed using the geometric linear optimization method and expressed as analytical functions of the outside air temperature and enthalpy, the interior zone airflow ratio, and the exterior zone supply air temperature. The optimal outside air control schedules can be applied to both constant and variable air volume systems. When the schedules are implemented, the OAHU system can significantly improve indoor air quality (IAQ) and use significantly less thermal energy than conventional systems. The geometric optimization method can also be used in other linear HVAC optimizations with non-liner constraint conditions.

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference15 articles.

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2. Reddy, T. A., Kissock, J. K., Katipamula, S., and Claridge, D. E., 1994, “An Energy Delivery Efficiency Index to Evaluate Simultaneous Heating and Cooling Effects in Large Commercial Buildings,” ASME J. Sol. Energy Eng., 116, pp. 79–87.

3. Reddy, T. A., Liu, M., Katipamula, S., and Claridge, D. E., 1998, “Extending the Concept of Energy Delivery Efficiency (EDE) of HVAC Systems,” ASHRAE Trans., 104, Pt. (1), pp. 13–23.

4. Moschandreas, D. J., 1998, “Design, Construction, and Operation of Health Buildings: Solutions to Global and Regional Concerns,” ASHRAE, ISBN1883413664, pp. 189–195.

5. Cui, Y., and Liu, M., 2001, “Laboratory Air Handling Unit System,” Proceedings of the International Conference for Enhanced Building Operations, pp. 17–24, Austin, Texas.

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