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  • PublisherCIBSE
  • Product Code
  • Number of pages0
  • Publication DateSep 2011
  • ISBN

Phase Change Material Based Energy Storage Material and Global Application Examp

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Phase Change Material Based Energy Storage Material and Global Application Examp

CIBSE Technical Symposium, DeMontfort University, Leicester, UK
6-7 September 2011

 

Thermal Energy Storage (TES) is the temporary storage of high or low temperature energy for later use. It bridges the time gap between energy requirement and energy use. For HVAC and refrigeration application purposes, water and water ice constitute the principal storage media. Water has the advantage of universal availability and low cost but it can only be produced using inefficient low temperature refrigeration units if one wishes to use the latent heat capacity. If it is applied purely for sensible energy storage capacity it requires large storage tanks.
Phase Change Materials (PCM) between +4C and +90C range over comes the water disadvantages by combining the latent and sensible energy storage capacities into a single storage unit and therefore offer designers new horizons and practical application options.
PCM latent heat cool energy storage can be provided by utilising conventional water chillers for new and retrofit applications without the need for any modifications as well as having the possibility of free cooling. By storing day-time warm energy for evening periods and over-night cool energy for day-time cooling requirements, a PCM system can simply bridge the gap between energy availability and energy use and therefore has the potential to achieve considerable environmental as well as economical benefits for many heating and cooling applications.
The aim of this paper is to raise awareness of commercially available PCM solutions and products together with their practical worldwide applications. Typical installation examples around the World will be presented in a format that will aid practising engineers and consultants to develop an effective and low energy based design on PCM based TES cooling / heating and heat recovery systems.