References
Anderson JD (1995) Computational fluid dynamics. McGraw-Hill, New York. ISBN: 978-3-54085055-7
Baeza EJ, Perez-Parra JJ, Lopez JC, Montero JI (2008) CFD simulation of natural ventilation of a
parral greenhouse with a baffle device below the greenhouse vents. Acta Hortic 801:885–892
Bakker JC, Adams SR, Boulard T, Montero JI (2008) Innovative technologies for an efficient use
of energy. Acta Hortic 801:49–62
Bartzanas T, Tadj N, Draoui B, Kittas C (2008) Numerical and experimental analysis of
convective heat transfer in a heated greenhouse. Acta Hortic 801:847–854
Baxevanou C, Bartzanas T, Fidaros D, Kittas C (2008) Solar radiation distribution in a tunnel
greenhouse. Acta Hortic 801:855–862
Boulard T, Kittas C, Roy JC, Wang S (2002) Convective and ventilation transfers in greenhouses,
Part 2: Determination of distributed greenhouse climate. Biosyst Eng 83:129–147
Bournet PE, Ould Khaoua SA (2007) Predicted effects of roof vent combinations on the climate
distribution in a glasshouse considering radioactive and convective heat transfers. Acta Hortic
801:925–932
Bournet PE, Boulard T (2010) Effect of ventilator configuration on the distributed climate of
greenhouses: a review of experimental and CFD studies. Comput Electron Agric 74:195–217
Campen JB (2008) Vapor removal from the greenhouse using forced ventilation when applying a
thermal screen. Acta Hortic 801:863–868
Chow K, Hold AE (2010) On the influence of boundary conditions and thermal radiation on
predictive accuracy in numerical simulations of indoor ventilation. Build Environ 45:437–444
David I, Bogle L, Fairweather M (2012) Simulating bioreactor feature through CFD tool for the
maturation of fresh 3D printed human organs (Editors). In: Proceedings of the 22nd European
symposium on computer aided process engineering, Elsevier, London
Davidson KM, Sushil S, Eggleton CD, Marten MR (2003) Using computational fluid dynamics
software to estimate circulation time distributions in bioreactors. Biotechnol Prog 19:1480–1486
Dayan J, Dayan E, Strassberg Y, Presnov E (2004) Simulation and control of ventilation rates in
greenhouses. Math Comput Simul 65:3–17
Defraeye T, Blocken B, Carmeliet J (2010) CFD analysis of convective heat transfer at the
surfaces of a cube immersed in a turbulent boundary layer. Int J Heat Mass Tran 53:297–308
De la Torre-Gea G, Ríco-García E (2010) Crop under greenhouse simulations as porous media in
computational fluid dynamics models. In: Proceedings of the 5th symposium of engineering,
Queretaro State University, Queretaro, Mexico, Nov 2010
De la Torre-Gea G, Soto-Zarazúa GM, Guevara-González R, Rico-García E (2011a) Bayesian
networks for defining relationships among climate factors. Int J Phys Sci 6(18):4412–4418
De la Torre-Gea G, Soto-Zarazúa GM, López-Crúz I, Torres-Pacheco I, Rico-García E (2011b)
Computational fluid dynamics in greenhouses: a review. Afr J Biotechnol 10(77):17651–17662
Dhanasekharan MK, Sanyal J, Jain A, Haidari A (2005) A generalized approach to model oxygen
transfer in bioreactors using population balances and computational fluid dynamics. Chem
Eng Sci 60:213–218
De la Torre-Gea G, Rico-García E (2012) Redes bayesianas aplicadas a un modelo de Dinámica
de Fluidos Computacional para las condiciones climáticas al interior de un invernadero. Res
Comput Sci 55:249–258
Demrati H, Boulard T, Bekkaoui A, Bouirden L (2001) Natural ventilation and microclimatic
performance of a large-scale banana greenhouse. J Agric Engng Res 80(3):261–271
Endalew AM, Hertog M, Gebrehiwot MG, Baelmans M, Ramon H, Nicolaï BM, Verboven P
(2009) Modelling airflow within model plant canopies using an integrated approach. Comput
Electron Agric 66:9–24
Fidaros DK, Baxevanou CA, Bartzanas T, Kittas C (2010) Numerical simulation of thermal
behavior of a ventilated arc greenhouse during a solar day. Renewable Energy 35:1380–1386
Impron I, Hemming S, Botb GPA (2007) Simple greenhouse climate model as a design tool for
greenhouses in tropical lowland. Biosyst Eng 98:79–89
360
G. De la Torre-Gea et al.
Anderson JD (1995) Computational fluid dynamics. McGraw-Hill, New York. ISBN: 978-3-54085055-7
Baeza EJ, Perez-Parra JJ, Lopez JC, Montero JI (2008) CFD simulation of natural ventilation of a
parral greenhouse with a baffle device below the greenhouse vents. Acta Hortic 801:885–892
Bakker JC, Adams SR, Boulard T, Montero JI (2008) Innovative technologies for an efficient use
of energy. Acta Hortic 801:49–62
Bartzanas T, Tadj N, Draoui B, Kittas C (2008) Numerical and experimental analysis of
convective heat transfer in a heated greenhouse. Acta Hortic 801:847–854
Baxevanou C, Bartzanas T, Fidaros D, Kittas C (2008) Solar radiation distribution in a tunnel
greenhouse. Acta Hortic 801:855–862
Boulard T, Kittas C, Roy JC, Wang S (2002) Convective and ventilation transfers in greenhouses,
Part 2: Determination of distributed greenhouse climate. Biosyst Eng 83:129–147
Bournet PE, Ould Khaoua SA (2007) Predicted effects of roof vent combinations on the climate
distribution in a glasshouse considering radioactive and convective heat transfers. Acta Hortic
801:925–932
Bournet PE, Boulard T (2010) Effect of ventilator configuration on the distributed climate of
greenhouses: a review of experimental and CFD studies. Comput Electron Agric 74:195–217
Campen JB (2008) Vapor removal from the greenhouse using forced ventilation when applying a
thermal screen. Acta Hortic 801:863–868
Chow K, Hold AE (2010) On the influence of boundary conditions and thermal radiation on
predictive accuracy in numerical simulations of indoor ventilation. Build Environ 45:437–444
David I, Bogle L, Fairweather M (2012) Simulating bioreactor feature through CFD tool for the
maturation of fresh 3D printed human organs (Editors). In: Proceedings of the 22nd European
symposium on computer aided process engineering, Elsevier, London
Davidson KM, Sushil S, Eggleton CD, Marten MR (2003) Using computational fluid dynamics
software to estimate circulation time distributions in bioreactors. Biotechnol Prog 19:1480–1486
Dayan J, Dayan E, Strassberg Y, Presnov E (2004) Simulation and control of ventilation rates in
greenhouses. Math Comput Simul 65:3–17
Defraeye T, Blocken B, Carmeliet J (2010) CFD analysis of convective heat transfer at the
surfaces of a cube immersed in a turbulent boundary layer. Int J Heat Mass Tran 53:297–308
De la Torre-Gea G, Ríco-García E (2010) Crop under greenhouse simulations as porous media in
computational fluid dynamics models. In: Proceedings of the 5th symposium of engineering,
Queretaro State University, Queretaro, Mexico, Nov 2010
De la Torre-Gea G, Soto-Zarazúa GM, Guevara-González R, Rico-García E (2011a) Bayesian
networks for defining relationships among climate factors. Int J Phys Sci 6(18):4412–4418
De la Torre-Gea G, Soto-Zarazúa GM, López-Crúz I, Torres-Pacheco I, Rico-García E (2011b)
Computational fluid dynamics in greenhouses: a review. Afr J Biotechnol 10(77):17651–17662
Dhanasekharan MK, Sanyal J, Jain A, Haidari A (2005) A generalized approach to model oxygen
transfer in bioreactors using population balances and computational fluid dynamics. Chem
Eng Sci 60:213–218
De la Torre-Gea G, Rico-García E (2012) Redes bayesianas aplicadas a un modelo de Dinámica
de Fluidos Computacional para las condiciones climáticas al interior de un invernadero. Res
Comput Sci 55:249–258
Demrati H, Boulard T, Bekkaoui A, Bouirden L (2001) Natural ventilation and microclimatic
performance of a large-scale banana greenhouse. J Agric Engng Res 80(3):261–271
Endalew AM, Hertog M, Gebrehiwot MG, Baelmans M, Ramon H, Nicolaï BM, Verboven P
(2009) Modelling airflow within model plant canopies using an integrated approach. Comput
Electron Agric 66:9–24
Fidaros DK, Baxevanou CA, Bartzanas T, Kittas C (2010) Numerical simulation of thermal
behavior of a ventilated arc greenhouse during a solar day. Renewable Energy 35:1380–1386
Impron I, Hemming S, Botb GPA (2007) Simple greenhouse climate model as a design tool for
greenhouses in tropical lowland. Biosyst Eng 98:79–89
360
G. De la Torre-Gea et al.
