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2020 | OriginalPaper | Buchkapitel

Investigation on Energy Saving Potential of a Vertical Greening System in Hot Summer and Cold Winter Areas in China

verfasst von : Hang Tan, Zhuoyu Yang, Xiaoli Hao, Qingwei Xing, Yaolin Lin, Xianping Liu, Jinhua Hu

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

Verlag: Springer Singapore

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Abstract

As a new type of greening method, vertical greening can not only solve the problems of shrinking green space, poor air quality, reduce the heat island effect on urbanization, but also affect the annual building energy consumption. In this paper, the energy saving potential of vertical greening in China’s hot summer and cold winter regions is investigated through comparative experiments between a vertical greening room and a reference room. During winter, the total power consumption of the reference room is 1.22 times that of the vertical greening room. The energy saving rate of the vertical greening system is concluded to be approximately 18%. During summer, the total power consumption of the reference room is 1.33 times that of the vertical greening room. The energy saving rate of the vertical greening is approximately 25%.

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Literatur
1.
Zurück zum Zitat International Energy Agency: EBC Annual Report Energy in Buildings and Communities Program. Published by AECOM Ltd on behalf of the International Energy Agency (2012) International Energy Agency: EBC Annual Report Energy in Buildings and Communities Program. Published by AECOM Ltd on behalf of the International Energy Agency (2012)
2.
Zurück zum Zitat Ascione, F., Bianco, N., Rossi, F., Turni, G., Vanoli, G.P.: Green roofs in European climates. Are effective solutions for the energy savings in air-conditioning? Appl. Energy 104, 845–859 (2013)CrossRef Ascione, F., Bianco, N., Rossi, F., Turni, G., Vanoli, G.P.: Green roofs in European climates. Are effective solutions for the energy savings in air-conditioning? Appl. Energy 104, 845–859 (2013)CrossRef
3.
Zurück zum Zitat Dunnett, N., Kingsbury, N.: Planting Green Roofs and Living Walls. Timber Press, Portland, OR (2008) Dunnett, N., Kingsbury, N.: Planting Green Roofs and Living Walls. Timber Press, Portland, OR (2008)
4.
Zurück zum Zitat Hashemi, S.S.G., Mahmud, H.B., Ashraf, M.A.: Performance of green roofs with respect to water quality and reduction of energy consumption in tropics: a review. Renew. Sustain. Energy Rev. 52, 669–679 (2015)CrossRef Hashemi, S.S.G., Mahmud, H.B., Ashraf, M.A.: Performance of green roofs with respect to water quality and reduction of energy consumption in tropics: a review. Renew. Sustain. Energy Rev. 52, 669–679 (2015)CrossRef
5.
Zurück zum Zitat Wong, N.H., Tan, A.Y.K., Chen, Y., Sekar, K., Wong, N.C.: Thermal evaluation of vertical greenery systems for building walls. Build. Environ. 45, 663–672 (2010)CrossRef Wong, N.H., Tan, A.Y.K., Chen, Y., Sekar, K., Wong, N.C.: Thermal evaluation of vertical greenery systems for building walls. Build. Environ. 45, 663–672 (2010)CrossRef
6.
Zurück zum Zitat Getter, K.L., Rowe, D.B.: The role of extensive green roofs in sustainable development. HortScience 41(5), 1276–1285 (2006)CrossRef Getter, K.L., Rowe, D.B.: The role of extensive green roofs in sustainable development. HortScience 41(5), 1276–1285 (2006)CrossRef
7.
Zurück zum Zitat Perini, K., Rosasco, P.: Is greening the building envelope economically sustainable? An analysis to evaluate the advantages of economy of scope of vertical greening systems and green roofs. Urban For. Urban Greening 20, 328–337 (2016)CrossRef Perini, K., Rosasco, P.: Is greening the building envelope economically sustainable? An analysis to evaluate the advantages of economy of scope of vertical greening systems and green roofs. Urban For. Urban Greening 20, 328–337 (2016)CrossRef
8.
Zurück zum Zitat Akbari, H., Kurn, D.M., Bretz, S.E., Hanford, J.W.: Peak power and cooling energy savings of shade trees. Energy Build. 25(2), 139–148 (1997)CrossRef Akbari, H., Kurn, D.M., Bretz, S.E., Hanford, J.W.: Peak power and cooling energy savings of shade trees. Energy Build. 25(2), 139–148 (1997)CrossRef
9.
Zurück zum Zitat Di, H.F., Wang, D.N.: Cooling effect of ivy on the wall. Exp. Heat Transf. 12(3), 235–245 (1999)CrossRef Di, H.F., Wang, D.N.: Cooling effect of ivy on the wall. Exp. Heat Transf. 12(3), 235–245 (1999)CrossRef
10.
Zurück zum Zitat Pérez, G., Rincón, L., Vila, A., González, J.M., Cabeza, L.F.: Green vertical systems for buildings as passive systems for energy savings. Appl. Energy 88(12), 4854–4859 (2011)CrossRef Pérez, G., Rincón, L., Vila, A., González, J.M., Cabeza, L.F.: Green vertical systems for buildings as passive systems for energy savings. Appl. Energy 88(12), 4854–4859 (2011)CrossRef
11.
Zurück zum Zitat Wong, I., Baldwin, A.N.: Investigating the potential of applying vertical green walls to high-rise residential buildings for energy-saving in sub-tropical region. Build. Environ. 97, 34–39 (2016)CrossRef Wong, I., Baldwin, A.N.: Investigating the potential of applying vertical green walls to high-rise residential buildings for energy-saving in sub-tropical region. Build. Environ. 97, 34–39 (2016)CrossRef
12.
Zurück zum Zitat Bianco, L., Serra, V., Larcher, F., Perino, M.: Thermal behaviour assessment of a novel vertical greenery module system: first results of a long-term monitoring campaign in an outdoor test cell. Energ. Effi. 10(3), 625–638 (2016)CrossRef Bianco, L., Serra, V., Larcher, F., Perino, M.: Thermal behaviour assessment of a novel vertical greenery module system: first results of a long-term monitoring campaign in an outdoor test cell. Energ. Effi. 10(3), 625–638 (2016)CrossRef
13.
Zurück zum Zitat Stec, W.J., Paassen, A.H.C., Maziarz, A.: Modelling the double skin façade with plants. Energy Build. 37(5), 419–427 (2005)CrossRef Stec, W.J., Paassen, A.H.C., Maziarz, A.: Modelling the double skin façade with plants. Energy Build. 37(5), 419–427 (2005)CrossRef
14.
Zurück zum Zitat Ip, K., Lam, M., Miller, A.: Shading performance of a vertical deciduous climbing plant canopy. Build. Environ. 45(1), 81–88 (2010)CrossRef Ip, K., Lam, M., Miller, A.: Shading performance of a vertical deciduous climbing plant canopy. Build. Environ. 45(1), 81–88 (2010)CrossRef
15.
Zurück zum Zitat Cuce, E.: Thermal regulation impact of green walls: an experimental and numerical investigation. Appl. Energy 194, 247–254 (2017)CrossRef Cuce, E.: Thermal regulation impact of green walls: an experimental and numerical investigation. Appl. Energy 194, 247–254 (2017)CrossRef
16.
Zurück zum Zitat Scarpa, M., Mazzali, U., Peron, F.: Modeling the energy performance of living walls: validation against field measurements in temperate climate. Energy Build. 79, 155–163 (2014)CrossRef Scarpa, M., Mazzali, U., Peron, F.: Modeling the energy performance of living walls: validation against field measurements in temperate climate. Energy Build. 79, 155–163 (2014)CrossRef
17.
Zurück zum Zitat Cheng, C.Y., Cheung, K.K.S., Chu, L.M.: Thermal performance of a vegetated cladding system on facade walls. Build. Environ. 45(8), 1779–1787 (2010)CrossRef Cheng, C.Y., Cheung, K.K.S., Chu, L.M.: Thermal performance of a vegetated cladding system on facade walls. Build. Environ. 45(8), 1779–1787 (2010)CrossRef
18.
Zurück zum Zitat Xing, Q., Hao, X., Lin, Y., Tan, H., Yang, K.: Experimental investigation on the thermal performance of a vertical greening system with green roof in wet and cold climates during winter. Energy Build. 183, 105–117 (2019)CrossRef Xing, Q., Hao, X., Lin, Y., Tan, H., Yang, K.: Experimental investigation on the thermal performance of a vertical greening system with green roof in wet and cold climates during winter. Energy Build. 183, 105–117 (2019)CrossRef
19.
Zurück zum Zitat Ministry of Housing and Urban-Rural Development of the People’s Republic of China (MHURD of PRC), 2012. GB50736-2012: Design code for heating, ventilation and air conditioning in civil buildings. China Building Industry Press, Beijing (2012) Ministry of Housing and Urban-Rural Development of the People’s Republic of China (MHURD of PRC), 2012. GB50736-2012: Design code for heating, ventilation and air conditioning in civil buildings. China Building Industry Press, Beijing (2012)
20.
Zurück zum Zitat Djedjig, R., Belarbi, R., Bozonnet, E.: Experimental study of green walls impacts on buildings in summer and winter under an oceanic climate. Energy Build. 150, 403–411 (2017)CrossRef Djedjig, R., Belarbi, R., Bozonnet, E.: Experimental study of green walls impacts on buildings in summer and winter under an oceanic climate. Energy Build. 150, 403–411 (2017)CrossRef
21.
Zurück zum Zitat Safikhaniet, T., Abdullah, A.M., Ossen, D.R., Baharvand, M.: A review of energy characteristic of vertical greenery systems. Renew. Sustain. Energy Rev. 40, 450–462 (2014)CrossRef Safikhaniet, T., Abdullah, A.M., Ossen, D.R., Baharvand, M.: A review of energy characteristic of vertical greenery systems. Renew. Sustain. Energy Rev. 40, 450–462 (2014)CrossRef
Metadaten
Titel
Investigation on Energy Saving Potential of a Vertical Greening System in Hot Summer and Cold Winter Areas in China
verfasst von
Hang Tan
Zhuoyu Yang
Xiaoli Hao
Qingwei Xing
Yaolin Lin
Xianping Liu
Jinhua Hu
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-13-9528-4_129