0:k 57 k as-norway.pdf · 2018-11-19 · 1ruzhjldq 8qlyhuvlw\ ri /lih 6flhqfhv &dpsxv cv 6/3 ....

1
www.pcmproducts.net Norwegian University of Life Sciences, Campus Norwegian University of Life Sciences, Campus Å s SLP, K302 s SLP, K302 200 m3 (52,834 USG) in multiple tanks accommodating 40,000 FlatICE containers filled with +10C (50F) PCM Providing 9.0 MWh (2,560 RT-h) TES Capacity Thermal Energy Storage (TES) bridges the time gap between energy requirement and energy use. This PCM-TES campus installation near Oslo, Norway utilises the installed infrastructure and by spreading the load over a 24 hour period one can installed half the number of mechanical cooling machines for the same peak loads. Like any other educational facility bulk of the peak load occurs once the buildings are occupied but after office hours this large peak load subsides significantly. This campus PCM energy storage can be considered as a useful tool to spread the loads over 24 hours periods and thereby not only reduced the initial investment cost but also it offers reduced operational cost.

Upload: others

Post on 26-Jul-2020

0 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: 0:K 57 K As-Norway.pdf · 2018-11-19 · 1ruzhjldq 8qlyhuvlw\ ri /lih 6flhqfhv &dpsxv cv 6/3 . p 86* lq pxowlsoh wdqnv dffrpprgdwlqj )odw,&( frqwdlqhuv iloohg zlwk & ) 3&0 3urylglqj

www.pcmproducts.net

Norwegian University of Life Sciences, Campus Norwegian University of Life Sciences, Campus ÅÅs SLP, K302s SLP, K302

200 m3 (52,834 USG) in multiple tanks accommodating40,000 FlatICE containers filled with +10C (50F) PCM

Providing 9.0 MWh (2,560 RT-h) TES Capacity

Thermal Energy Storage (TES) bridges the time gap between energy requirement and energy use. This PCM-TES campus installation near Oslo, Norway utilises the installed infrastructure and by spreading the load over a 24 hour period one can installed half the number of mechanical cooling machines for the same peak loads.

Like any other educational facility bulk of the peak load occurs once the buildings are occupied but after office hours this large peak load subsides significantly. This campus PCM energy storage can be considered as a useful tool to spread the loads over 24 hours periods and thereby not only reduced the initial investment cost but also it offers reduced operational cost.