heat discharge through forced cooling of phase change materials in concrete panels

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Heat discharge through forced cooling of phase change materials in concrete. MSc Thesis Present by Kristin Sophia Kuckelkorn September 2016 Supervisor: Professor Roger West

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Page 1: Heat discharge through forced cooling of phase change materials in concrete panels

Heat discharge through forced

cooling of phase change

materials in concrete.

MSc Thesis Present by

Kristin Sophia Kuckelkorn

September 2016

Supervisor: Professor Roger West

Page 2: Heat discharge through forced cooling of phase change materials in concrete panels

Final MSc Presentation

Introduction

Background

Methodology

Results

Conclusion

Page 3: Heat discharge through forced cooling of phase change materials in concrete panels

Introduction / Background

PCM integration allows for a greater degree

of heat storage > reduces heating and

cooling at peak times

PCM´s have a high latent heat capacity

Increase CO2

concentration

Decrease in energy

resources

Page 4: Heat discharge through forced cooling of phase change materials in concrete panels

Methodology

Page 5: Heat discharge through forced cooling of phase change materials in concrete panels
Page 6: Heat discharge through forced cooling of phase change materials in concrete panels

Results

Page 7: Heat discharge through forced cooling of phase change materials in concrete panels

Results

Page 8: Heat discharge through forced cooling of phase change materials in concrete panels

Results

Page 9: Heat discharge through forced cooling of phase change materials in concrete panels

Results

Page 10: Heat discharge through forced cooling of phase change materials in concrete panels

Results

Page 11: Heat discharge through forced cooling of phase change materials in concrete panels

Results

Page 12: Heat discharge through forced cooling of phase change materials in concrete panels

Results

Page 13: Heat discharge through forced cooling of phase change materials in concrete panels

Results

Page 14: Heat discharge through forced cooling of phase change materials in concrete panels

Conclusion

Micronal effect the concrete properties

the flow rate & cooling water temperature

affected the heat drainage rate

the PCM panel heated up & cooled at a

slower rate

The cast-in forced cooling controls the heat

drainage.

Efficiency depends on climate

Page 15: Heat discharge through forced cooling of phase change materials in concrete panels

Thank you!