Title page for etd-0715114-162120


URN etd-0715114-162120 Statistics This thesis had been viewed 486 times. Download 3 times.
Author Chia-Peng Lu
Author's Email Address No Public.
Department Institute Of Mechanical Engineering
Year 2013 Semester 2
Degree Master Type of Document Master's Thesis
Language zh-TW.Big5 Chinese Page Count 40
Title Dynamic Simulation for Heat Transfer of Water Systems
Keyword
  • Chilled water systems.
  • Heat water storage systems
  • Forced water circulations
  • Heat transfer
  • Heat transfer
  • Forced water circulations
  • Heat water storage systems
  • Chilled water systems.
  • Abstract The dynamic simulations for heat transfer of the chilled water indirect heating system are studied in this paper. The conventional natural circulation direct heating water storage systems can provide steady water flow rate, but it is difficult to keep steady water temperature. The novel forced circulation indirect heating water storage systems can improve the stability of water temperature for water storage tank systems, which can be widely applied to solar energy, heat pump and energy saving air conditional heat water systems. In this study, the dynamic model of forced circulation heating water storage system is investigated and built. The water level control system of water storage tank is designed, and the temperature time responses for water storage systems simulated with Simulink. The simulation results show the temperature of tank water can keep steady with energy saving effect by control the circulation heat water.         
    The chilled water systems are essential equipment for central air conditioning systems and cooling systems. For energy saving, the varied refrigerant flow (VRF) chilled water systems have been developed. The refrigerant flow is varied by changing speed of compressor. This study built the VRF chilled water system dynamic model. A PI controller is designed to control the speed of compressor for keeping the temperature of chilled water in setting temperature.
    Advisor Committee
  • Ming-Huei Chu - advisor
  • Files indicate in-campus access at one year and off-campus not accessible
    Date of Defense 2014-06-29 Date of Submission 2014-07-16

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