Cold Thermal Energy Storage

Author:

Kosi Franc Franc1,Zivkovic Branislav1,Komatina Mirko S.1,Antonijevic Dragi2,Galil Mohamed Abdul1,Milovancevic Uros Milorad1

Affiliation:

1. University of Belgrade, Serbia

2. Singidunum University, Belgrade, Serbia

Abstract

The chapter gives an overview of cold thermal energy storage (CTES) technologies. Benefits as well as classification and operating strategies of CTES are discussed. Design consideration and sizing strategies based on calculated load profile for design day is presented. Some recommendation concernig designing of CTES equipment are given. Special attention was paid to the analysis of specific features of heat transfer phenomena in ice storage tank including the assessment of the duration and the rate of ice formation and melting. The methodology of sizing components of the ice thermal storage system included in an air conditioning system for a office building situated in hot wet and dry climate are presented. Based on hourly cooling load calculation that was carried out using Carrier's Hourly Analysis Program, sizing of ice thermal storage system for different operating strategies included full, chiller priority and ice priority storage operation for the design day are presented. Finally, an analysis of some operational characteristics of the system are analyzed.

Publisher

IGI Global

Reference21 articles.

1. Abdul Galil, M. M. (2013). Thermal Energy Storage Effect on Air Conditioning Costs for Typical Office Buildings in Libya. (Doctoral dissertation). University of Belgrade, Serbia.

2. ASHRAE. (1999). Thermal storage. In ASHRAE Handbook, HVAC Application (SI). Atlanta, GA: American Society of Heating, Refrigeration, and Air-Conditioning Engineers.

3. Baltimore Aircoil.Thermal Storage Products, TSU-F1, http://www.baltimoreaircoil.com

4. Chilled Water Thermal Energy Storage without Electric Rate Incentives or Rebates

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