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2020 | OriginalPaper | Buchkapitel

Suitability of Inlet Wind Speed for Tunnel Wind System

verfasst von : Liang Wang, Jiazheng Wang, Lin Jiang, Rubing Han

Erschienen in: Proceedings of the 11th International Symposium on Heating, Ventilation and Air Conditioning (ISHVAC 2019)

Verlag: Springer Singapore

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Abstract

By setting up the tunnel inner wall heat transfer coefficient and heat transferring quantity of the theoretical model, the influence of inlet wind speed, tunnel diameter and soil types are analyzed. Furthermore, the variation of indoor temperature basing on different inlet wind speed is studied. The results show that the inlet wind speed has the maximum impact on system performance, and the indoor temperature gets higher with the accelerating of inlet wind speed. When the speed is 1 m/s, the temperature is the lowest. When the speed is less than 2 m/s, the range of air flow speed at 1.5 m of the tunnel is 0.31 to 0.37 m/s, the consequence conforms to the requirement of body thermal comfort. Therefore, if the requirements of indoor thermal environment are loose, to meet the requirement of thermal comfort, the speed of inlet wind should be controlled between 1 and 2 m/s and the heat pressure of solar chimney must be enough for providing power at the same time.

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Literatur
1.
Zurück zum Zitat Thanu, N.M., Sawhney, R.L., Khare, R.N., et al.: An experimental study of the thermal performance of an earth-air-pipe system in single pass mode. Sol. Energy 71(6), 353–364 (2001)CrossRef Thanu, N.M., Sawhney, R.L., Khare, R.N., et al.: An experimental study of the thermal performance of an earth-air-pipe system in single pass mode. Sol. Energy 71(6), 353–364 (2001)CrossRef
2.
Zurück zum Zitat Bansal, V., Mishra, R., Agarwal, G.D., et al.: Performance analysis of earth-pipe-air heat exchanger for summer cooling. Energy Build. 42(5), 645–648 (2010)CrossRef Bansal, V., Mishra, R., Agarwal, G.D., et al.: Performance analysis of earth-pipe-air heat exchanger for summer cooling. Energy Build. 42(5), 645–648 (2010)CrossRef
3.
Zurück zum Zitat Mihalakakou, G., Santamouris, M., Asimakopoulos, D., et al.: Parametric prediction of the buried pipes cooling potential for passive cooling applications. Sol. Energy 55(3), 163–173 (1995)CrossRef Mihalakakou, G., Santamouris, M., Asimakopoulos, D., et al.: Parametric prediction of the buried pipes cooling potential for passive cooling applications. Sol. Energy 55(3), 163–173 (1995)CrossRef
4.
Zurück zum Zitat Bansal, V., Mishra, R., Agarwal, G.D.: Performance analysis of integrated earth-air-tunnel-evaporative cooling system in hot and dry climate. Energy Build. 47, 525–532 (2012)CrossRef Bansal, V., Mishra, R., Agarwal, G.D.: Performance analysis of integrated earth-air-tunnel-evaporative cooling system in hot and dry climate. Energy Build. 47, 525–532 (2012)CrossRef
5.
Zurück zum Zitat Yildiz, A, Ozgener, O., Ozgener, L.: Energetic performance analysis of a solar photovoltaic cell (PV) assisted closed loop earth-to-air heat exchanger for solar greenhouse cooling: an experimental study for low energy architecture in Aegean Region. Renew. Energy 44, 281–287 (2012) Yildiz, A, Ozgener, O., Ozgener, L.: Energetic performance analysis of a solar photovoltaic cell (PV) assisted closed loop earth-to-air heat exchanger for solar greenhouse cooling: an experimental study for low energy architecture in Aegean Region. Renew. Energy 44, 281–287 (2012)
Metadaten
Titel
Suitability of Inlet Wind Speed for Tunnel Wind System
verfasst von
Liang Wang
Jiazheng Wang
Lin Jiang
Rubing Han
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-13-9528-4_44