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2021 | OriginalPaper | Chapter

Energy, Thermal Comfort and Air Quality in a Ventilation System Based on Confluent Jets

Authors : Eusébio Conceição, Mª Inês Conceição, Mª Manuela Lúcio, João Gomes, André Ramos, Hazim Awbi

Published in: Proceedings of the 1st International Conference on Water Energy Food and Sustainability (ICoWEFS 2021)

Publisher: Springer International Publishing

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Abstract

In this study a ventilation system based on vertical confluent jets is developed and applied. The energy consumption, thermal comfort level, indoor air quality level and Air Distribution Index are evaluated and discussed. The study presented in this work is performed in a virtual chamber with dimensions of 4.50 × 2.55 × 2.50 m3. The chamber, occupied with twelve virtual occupants, is equipped with six tables, twelve chairs, one outlet system and one inlet system, based in confluents jets system. This simulation considers the descendent inlet airflow, near the lateral walls. In the outlet system are considered six air ducts, located above the head level, connected to the ceiling area. The inlet system, based in two horizontal ducts, with 0.15 m diameter, located 1.8 m above the floor level, are equipped with consecutive holes, that promote vertical descendent jets near the wall. The predicted percentage of dissatisfied index results show that the comfort level is acceptable. The dioxide carbon concentration show that the indoor air quality, in general, is acceptable. When the airflow rate increases the air quality number increases and the thermal comfort number decreases. Thus, the Air Distribution Index increases slightly.

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Literature
1.
go back to reference Arghand, T., Karimipanah, T., Awbi, H., Cehlin, M., Larsson, U., Linden, E.: An experimental investigation of the flow and comfort parameters forunder-floor, confluent jets and mixing ventilation systems in an open-plan office. Build. Environ. 92, 48–60 (2015)CrossRef Arghand, T., Karimipanah, T., Awbi, H., Cehlin, M., Larsson, U., Linden, E.: An experimental investigation of the flow and comfort parameters forunder-floor, confluent jets and mixing ventilation systems in an open-plan office. Build. Environ. 92, 48–60 (2015)CrossRef
2.
go back to reference Karimipanah, T., Sandberg, M., Awbi, H.: A comparative study of different air distribution systems in a classroom. In: Proceedings of 7th International Conference on Air Distribution in Rooms, ROOMVENT 2000, pp. 1013–1018. Elsevier, Amsterdam (2000) Karimipanah, T., Sandberg, M., Awbi, H.: A comparative study of different air distribution systems in a classroom. In: Proceedings of 7th International Conference on Air Distribution in Rooms, ROOMVENT 2000, pp. 1013–1018. Elsevier, Amsterdam (2000)
3.
go back to reference Cho, Y., Awbi, H., Karimipanah, T.: Theoretical and experimental investigation of wall confluent jets ventilation and comparison with wall displacement ventilation. Build. Environ. 43(6), 1091–1100 (2008)CrossRef Cho, Y., Awbi, H., Karimipanah, T.: Theoretical and experimental investigation of wall confluent jets ventilation and comparison with wall displacement ventilation. Build. Environ. 43(6), 1091–1100 (2008)CrossRef
4.
go back to reference Fanger, P.: Thermal Comfort: Analysis and Applications in Environmental Engineering. Danish Technical Press, Copenhagen (1970) Fanger, P.: Thermal Comfort: Analysis and Applications in Environmental Engineering. Danish Technical Press, Copenhagen (1970)
5.
go back to reference ISO 7730: Ergonomics of the Thermal Environments—Analytical Determination and Interpretation of Thermal Comfort Using Calculation of the PMV and PPD Indices and Local Thermal Comfort Criteria. International Standard Organization, Geneva, Switzerland (2005) ISO 7730: Ergonomics of the Thermal Environments—Analytical Determination and Interpretation of Thermal Comfort Using Calculation of the PMV and PPD Indices and Local Thermal Comfort Criteria. International Standard Organization, Geneva, Switzerland (2005)
6.
go back to reference Conceição, E., Lúcio, M., Vicente, V., Rosão, V.: Evaluation of local thermal discomfort in a classroom equipped with crossed ventilation. Int. J. Vent. 7(3), 267–277 (2008) Conceição, E., Lúcio, M., Vicente, V., Rosão, V.: Evaluation of local thermal discomfort in a classroom equipped with crossed ventilation. Int. J. Vent. 7(3), 267–277 (2008)
7.
go back to reference ANSI/ASHRAE Standard 62-1: Ventilation for Acceptable Indoor Air Quality, American Society of Heating, Refrigerating and Air-Conditioning Engineers: Atlanta, GA, USA (2016) ANSI/ASHRAE Standard 62-1: Ventilation for Acceptable Indoor Air Quality, American Society of Heating, Refrigerating and Air-Conditioning Engineers: Atlanta, GA, USA (2016)
8.
go back to reference Awbi, H.: Ventilation of Buildings. Taylor & Francis, London (2003) Awbi, H.: Ventilation of Buildings. Taylor & Francis, London (2003)
9.
go back to reference Conceição, E., Lúcio, M., Awbi, H.: Comfort and airflow evaluation in spaces equipped with mixing ventilation and cold radiant floor. Build. Simul. 6(1), 51–67 (2013)CrossRef Conceição, E., Lúcio, M., Awbi, H.: Comfort and airflow evaluation in spaces equipped with mixing ventilation and cold radiant floor. Build. Simul. 6(1), 51–67 (2013)CrossRef
10.
go back to reference Fanger, P., Melikov, A., Hanzawa, H., Ring, J.: Air turbulence and sensation of draught. Energy Build. 12(1), 21–39 (1988)CrossRef Fanger, P., Melikov, A., Hanzawa, H., Ring, J.: Air turbulence and sensation of draught. Energy Build. 12(1), 21–39 (1988)CrossRef
11.
go back to reference Conceição, E., Lúcio, M.: Numerical simulation of the application of solar radiant systems, internal airflow and occupants’ presence in the improvement of comfort in winter conditions. Buildings 6(3), 38 (2016)CrossRef Conceição, E., Lúcio, M.: Numerical simulation of the application of solar radiant systems, internal airflow and occupants’ presence in the improvement of comfort in winter conditions. Buildings 6(3), 38 (2016)CrossRef
12.
go back to reference Conceição, E., Lúcio, M.: Numerical and subjective responses of human thermal sensation. In: Proceedings of the 6th Portuguese Conference on Biomedical Engineering, Faro, Portugal, 11–12 June 2001 Conceição, E., Lúcio, M.: Numerical and subjective responses of human thermal sensation. In: Proceedings of the 6th Portuguese Conference on Biomedical Engineering, Faro, Portugal, 11–12 June 2001
13.
go back to reference Conceição, E.: Evaluation of thermal comfort and local discomfort conditions using the numerical modelling of the human and clothing thermal system. In: Proceedings of 7th International Conference on Air Distribution in Rooms, ROOMVENT 2000, pp. 131–136. Elsevier, Amsterdam (2000) Conceição, E.: Evaluation of thermal comfort and local discomfort conditions using the numerical modelling of the human and clothing thermal system. In: Proceedings of 7th International Conference on Air Distribution in Rooms, ROOMVENT 2000, pp. 131–136. Elsevier, Amsterdam (2000)
14.
go back to reference Conceição, E., Lúcio, M., Farinho, P.: Experimental and numerical study of personalized of ventilation in classrooms desks. In: Proceedings of 10th International Conference on Air Distribution in Rooms, ROOMVENT 2007, vol. 3, pp. 519–526. Elsevier, Amsterdam (2007) Conceição, E., Lúcio, M., Farinho, P.: Experimental and numerical study of personalized of ventilation in classrooms desks. In: Proceedings of 10th International Conference on Air Distribution in Rooms, ROOMVENT 2007, vol. 3, pp. 519–526. Elsevier, Amsterdam (2007)
15.
go back to reference Conceição, E., Rosa, S., Custódio, A., Andrade, R., Meira, M., Lúcio, M.: Study of airflow around occupants seated in desks equipped with upper and lower air terminal devices for slightly warm environments. HVAC&R Res. 16(4), 401–412 (2010)CrossRef Conceição, E., Rosa, S., Custódio, A., Andrade, R., Meira, M., Lúcio, M.: Study of airflow around occupants seated in desks equipped with upper and lower air terminal devices for slightly warm environments. HVAC&R Res. 16(4), 401–412 (2010)CrossRef
16.
go back to reference Yang, L., Yan, H., Lam, J.: Thermal comfort and building energy consumption implications - A review. Appl. Energy 115, 164–173 (2014)CrossRef Yang, L., Yan, H., Lam, J.: Thermal comfort and building energy consumption implications - A review. Appl. Energy 115, 164–173 (2014)CrossRef
17.
go back to reference Sailor, D.: A green roof model for building energy simulation programs. Energy Build. 40(8), 1466–1478 (2008)CrossRef Sailor, D.: A green roof model for building energy simulation programs. Energy Build. 40(8), 1466–1478 (2008)CrossRef
18.
go back to reference Balaji, N., Mani, M., Venkatarama, B.: Thermal performance of the building walls. In: Proceedings of Building Simulation Applications BSA 2013, pp. 151–159. BU Press, Bozen-Bolzano (2013) Balaji, N., Mani, M., Venkatarama, B.: Thermal performance of the building walls. In: Proceedings of Building Simulation Applications BSA 2013, pp. 151–159. BU Press, Bozen-Bolzano (2013)
19.
go back to reference Conceição, E., Silva, M., André, J., Viegas, D.: Thermal behaviour simulation of the passenger compartment of vehicles. Int. J. Veh. Des. 24(4), 372–387 (2000)CrossRef Conceição, E., Silva, M., André, J., Viegas, D.: Thermal behaviour simulation of the passenger compartment of vehicles. Int. J. Veh. Des. 24(4), 372–387 (2000)CrossRef
20.
go back to reference Conceição, E., Lúcio, M.: Numerical simulation of passive and active solar strategies in building with complex topology. Build. Simul. 3(3), 245–261 (2010)CrossRef Conceição, E., Lúcio, M.: Numerical simulation of passive and active solar strategies in building with complex topology. Build. Simul. 3(3), 245–261 (2010)CrossRef
21.
go back to reference Conceição, E., Lúcio, M., Lopes, M.: Application of an indoor greenhouse in the energy and thermal comfort performance in a kindergarten school building in the south of Portugal in winter conditions. WSEAS Trans. Environ. Dev. 4, 644–654 (2008) Conceição, E., Lúcio, M., Lopes, M.: Application of an indoor greenhouse in the energy and thermal comfort performance in a kindergarten school building in the south of Portugal in winter conditions. WSEAS Trans. Environ. Dev. 4, 644–654 (2008)
22.
go back to reference Conceição, E., Lúcio, M.: Numerical study of the thermal efficiency of a school building with complex topology for different orientations. Indoor Built Environ. 18(1), 41–51 (2009)CrossRef Conceição, E., Lúcio, M.: Numerical study of the thermal efficiency of a school building with complex topology for different orientations. Indoor Built Environ. 18(1), 41–51 (2009)CrossRef
23.
go back to reference Conceição, E., Lúcio, M.: Numerical study of the influence of opaque external trees with pyramidal shape on the thermal behaviour of a school building in summer conditions. Indoor Built Environ. 19(6), 657–667 (2010)CrossRef Conceição, E., Lúcio, M.: Numerical study of the influence of opaque external trees with pyramidal shape on the thermal behaviour of a school building in summer conditions. Indoor Built Environ. 19(6), 657–667 (2010)CrossRef
24.
go back to reference Conceição, E., Gomes, J., Ruano, A.: Application of HVAC systems with control based on PMV index in university buildings with complex topology. IFAC PapersOnLine 51(10), 20–25 (2018)CrossRef Conceição, E., Gomes, J., Ruano, A.: Application of HVAC systems with control based on PMV index in university buildings with complex topology. IFAC PapersOnLine 51(10), 20–25 (2018)CrossRef
25.
go back to reference Conceição, E., Nunes, A., Gomes, J., Lúcio, M.: Application of a school building thermal response numerical model in the evolution of the adaptive thermal comfort level in the Mediterranean environment. Int. J. Vent. 9(3), 287–304 (2010) Conceição, E., Nunes, A., Gomes, J., Lúcio, M.: Application of a school building thermal response numerical model in the evolution of the adaptive thermal comfort level in the Mediterranean environment. Int. J. Vent. 9(3), 287–304 (2010)
26.
go back to reference Conceição, E., Lúcio, M., Ruano, A., Crispim, E.: Development of a temperature control model used in HVAC systems in school spaces in Mediterranean climate. Build. Environ. 44(5), 871–877 (2009)CrossRef Conceição, E., Lúcio, M., Ruano, A., Crispim, E.: Development of a temperature control model used in HVAC systems in school spaces in Mediterranean climate. Build. Environ. 44(5), 871–877 (2009)CrossRef
27.
go back to reference Conceição, E., Lúcio, M.: Evaluation of thermal comfort conditions in a classroom equipped with radiant systems. Appl. Math. Model. 35(3), 1292–1305 (2011)CrossRef Conceição, E., Lúcio, M.: Evaluation of thermal comfort conditions in a classroom equipped with radiant systems. Appl. Math. Model. 35(3), 1292–1305 (2011)CrossRef
28.
go back to reference Conceição, E., Silva, M., Viegas, D.: Airflow around a passenger seated in a bus. HVAC&R Res. 3(4), 311–323 (1997)CrossRef Conceição, E., Silva, M., Viegas, D.: Airflow around a passenger seated in a bus. HVAC&R Res. 3(4), 311–323 (1997)CrossRef
29.
go back to reference Conceição, E., Lúcio, M.: Numerical study of thermal response of school buildings in summer conditions. In: Proceedings of HB 2006 - Healthy Buildings: Creating a Healthy Indoor Environment for People, vol. 3, pp 195–200. Curran Associates, New York (2006) Conceição, E., Lúcio, M.: Numerical study of thermal response of school buildings in summer conditions. In: Proceedings of HB 2006 - Healthy Buildings: Creating a Healthy Indoor Environment for People, vol. 3, pp 195–200. Curran Associates, New York (2006)
30.
go back to reference Conceição, E., Silva, A., Lúcio, M.: Numerical study of thermal response of school buildings in winter conditions. In: Proceedings of 9th International Conference on Air Distribution in Rooms, ROOMVENT 2004, p. 79. Universidade de Coimbra, Coimbra (2004) Conceição, E., Silva, A., Lúcio, M.: Numerical study of thermal response of school buildings in winter conditions. In: Proceedings of 9th International Conference on Air Distribution in Rooms, ROOMVENT 2004, p. 79. Universidade de Coimbra, Coimbra (2004)
Metadata
Title
Energy, Thermal Comfort and Air Quality in a Ventilation System Based on Confluent Jets
Authors
Eusébio Conceição
Mª Inês Conceição
Mª Manuela Lúcio
João Gomes
André Ramos
Hazim Awbi
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-75315-3_51