Heat and mass transfer behavior prediction and thermal performance analysis of earth-to-air heat exchanger by finite volume method

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Abstract

A comprehensive numerical study on coupled heat and mass transfer in an earth-to-air heat exchanger (EAHE) is conducted by self-complied program based on the finite volume method. The soil thermal and moisture coupled characteristics in the vicinity of the pipe and the thermal performance of the EAHE are evaluated by a two-dimensional simulation model. The model of the EAHE is verified by the experimental data, which achieved a good agreement with each other. The numerical results show that there is an obvious moisture peak in the radial direction, and the peak position radially moves away from the wall of the pipe over time. It is also found that the thermal performance of the heat and mass transfer model in soil is better than the pure heat conduction model.

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Liu, Q., Du, Z., & Fan, Y. (2018). Heat and mass transfer behavior prediction and thermal performance analysis of earth-to-air heat exchanger by finite volume method. Energies, 11(6). https://doi.org/10.3390/en11061542

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