Summary
There are often abnormal working conditions at evaporator outlet of a refrigeration system, such as two-phase state in transient process, and it is essential to investigate such transient behaviours for system design and control strategy. In this paper, a dynamic lumped parameter model is developed to simulate the transient behaviours of refrigeration system with variable capacity in both normal and abnormal working conditions. The appropriate discriminant method is adopted to switch the normal and abnormal conditions smoothly and to eliminate the simulated data oscillation. In order to verify the dynamic model, we built a test system with variable frequency compressor, water-cooling condenser, evaporator and electronic expansion valve. Calculated values from the mathematical model show reasonable agreement with the experimental data. The simulation results show that the transient behaviours of the variable capacity refrigeration system in the abnormal working conditions can be calculated reliably with the dynamic model when the compressor rotary speed or the opening of electronic expansion valve changes abruptly. [Reprinted with permission from Elsevier. Copyright, 2010].
Details
- Original title: Dynamic simulation of variable capacity refrigeration systems under abnormal conditions.
- Record ID : 30001447
- Languages: English
- Source: Applied Thermal Engineering - vol. 30 - n. 10
- Publication date: 2010/07
- DOI: http://dx.doi.org/10.1016/j.applthermaleng.2010.01.038
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