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Dynamic thermal simulation of ground heat exchangers for renewable heating of buildings

Gan, Guohui

Dynamic thermal simulation of ground heat exchangers for renewable heating of buildings Thumbnail


Authors

GUOHUI GAN GUOHUI.GAN@NOTTINGHAM.AC.UK
Associate Professor



Abstract

The temperature of deep soil is relatively stable throughout a year and the thermal energy stored in soil can be used to provide renewable heat or coolth for a building. A ground heat exchanger is required to transfer heat between the fluid in the heat exchanger and surrounding soil. The control volume method is used to solve the equations for coupled heat and moisture transfer in soil and the dynamic interactions between the heat exchanger, soil and atmosphere. The method is used for numerical simulation of the dynamic thermal performance of horizontally coupled heat exchangers, taking account of dynamic variations of climatic, load and soil conditions. The thermal performance is compared for two types of ground heat exchangers - earth-liquid heat exchanger for a ground source heat pump and earth-air heat exchanger for ventilation. The amount and rate of heat transfer through an earth-liquid heat exchanger are larger than those for an earth-air heat exchanger and their differences increase with the length of heat exchanger and operating time.

Citation

Gan, G. (2016). Dynamic thermal simulation of ground heat exchangers for renewable heating of buildings.

Conference Name International Symposium of Heat Transfer and Heat Powered Cycle 2016
End Date Jun 29, 2016
Acceptance Date May 12, 2016
Publication Date Jun 27, 2016
Deposit Date Jul 7, 2016
Publicly Available Date Jul 7, 2016
Peer Reviewed Peer Reviewed
Keywords Ground Heat Exchanger, Heat and Moisture Transfer, Dynamic Thermal Simulation
Public URL https://nottingham-repository.worktribe.com/output/793327
Related Public URLs https://www.nottingham.ac.uk/conference/fac-eng/ihts-hpc2016/index.aspx
Contract Date Jul 7, 2016

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