PAPER SENDING SUBSCRIPTION

  • googleplus
  • facebook
  • twitter
  • linkedin
  • linkedin

DYNA JOURNAL ENGINEERING DYNA JOURNAL ENGINEERING

  • Skip to the menu
  • Skip to the content
  • DYNA Publishing
    • DYNA
    • DYNA Energy & Sustainability
    • DYNA Management
    • DYNA New Technologies
  • Journal
    • The Journal and its organs
      • Management Board and General Meeting of Shareholders
      • Editors Board
      • Scientific Board
    • History
    • Mission - Vision and Values
    • Annual survey result
    • Frequent asked questions
    • Dissemination and Indexing
    • It is said about DYNA...
    • Collaborate with DYNA
    • Links of interest for engineering
      • FRIENDLY organizations
      • Contributing organizations
      • Engineering Associations
      • Others engineering journals
      • Other interesting links
  • Authors and Referees
    • Guidelines, rules and forms
    • Dissemination and indexing
    • How researchers can collaborate
  • Papers
    • Search
    • Volumes and issues
    • Most downloaded last year
    • Submission of papers
    • Next issue contents
    • Monographic reports
  • News
    • News
    • Newsletters
    • Book Review
    • Software review
  • Blogs and Community
    • Forums
    • How collaborate
  • Subscribing
    • Sign up
  • Advertising
    • Target audience & ad formats
    • Advertising prices
    • Contents for next issue
    • Newsletter
  • Contact
    • How to contact
  • Search
    • In this Journal
    • Search in DYNA journals

Return to the menu

  • Homepage
  • Papers
  • Search

Search

×

 |    : /

Vote:

Results: 

0 points

 0  Votes

NUMERICAL SIMULATION OF THE EFFECT OF GREENHOUSE CROP SIZE ON THE THERMAL GRADIENT OF AIR GENERATED BY HEATING SYSTEMS

 |    : /

JULY 2024   -  Volume: 99 -  Pages: 353-356

DOI:

https://doi.org/10.52152/D11049

Authors:

CRUZ ERNESTO AGUILAR RODRIGUEZ
-
JORGE FLORES VELAZQUEZ
-
EDWIN VILLAGRAN MUNAR
-
JOSE ANGEL RAMOS BANDERAS
-
CONSTANTIN ALBERTO HERNANDEZ BOCANEGRA
-
JAVIER PEREZ INOCENCIO

Disciplines:

  • Agricultural engineering (CONSTRUCCIONES AGROPECUARIAS )

Downloads:   20

How to cite this paper:  
Download pdf

Download pdf


Key words:
Simulación, CFD, crecimiento del tomate, homogenización térmica, confort térmico, Simulation, CFD, tomato growth, thermal homogenization, thermal comfort, Simulación, CFD, crecimiento del tomate, homogenización térmica, confort térmico
Article type:
COLABORACION/COLLABORATION DAMR
Section:
COLLABORATIONS

In regions where winter temperatures fall below the tolerable thermal limits for crops, it is necessary to implement emergent equipment to supply heat inside the greenhouse. The objective of this work was to evaluate numerically the effect of two heating systems and crop size on the thermal gradient inside the greenhouse. This work aimed to estimate the thermal gradient generated by the heating system as a function of the age (height) of a greenhouse tomato crop. Temperature prediction was carried out using a numerical model based on Computational Fluid Dynamics (CFD), the impact of each heating system was examined, as well as the influence of crop size on thermal homogenization. The results indicate that when using electric heaters, the temperature at 1.5 m above the ground increases in the simulated no-crop scenario. As the crop size increases, the temperature at 1.5 m from the ground decreases (difference of up to 8 °C between the scenario with and without 2 m crop). Suggests that the crop, acting as a porous medium (barrier), reduces the energy exchange between the top of the greenhouse and the crop zone. However, when having a pipe heating system, the temperature at 1.5 m from the ground is more homogeneous, and the simulated scenario with the highest temperature is the one where the crop size is the largest (2 m) with a thermal difference of up to 1.5 °C between the scenario with and without 2 m crop. In summary, we have a larger thermal difference between the simulated scenarios when using electric heaters. However, electric heaters are still the best option to increase the greenhouse temperature, increasing the air temperature by up to 3 °C in the worst simulated scenario compared to the piped system.

Keywords: Simulation; CFD; tomato growth; thermal homogenization; thermal comfort.

Share:  

  • Twittear
  • facebook
  • google+
  • linkedin
  • delicious
  • yahoo
  • myspace
  • meneame
  

Search

banner crosscheck

  •  
  • Twitter
  • Twitter
  •  
  • Facebook
  • Facebook
  •  
Tweets por el @revistadyna.
Loading…

Anunciarse en DYNA 

© Engineering Journal Dyna 2006 - Publicaciones Dyna, S.L

Official Science and Technology Body of the Federation of Industrial Engineers' Associations

Address: Unit 1804 South Bank Tower, 55 Upper Ground, London UK, SE1 9EY

Email: office@revistadyna.com

  • Menu
  • DYNA Publishing
    • DYNA Publishing
    • DYNA
    • DYNA Energy & Sustainability
    • DYNA Management
    • DYNA New Technologies
  • Journal
    • The Journal and its organs
      • The Journal and its organs
      • Management Board and General Meeting of Shareholders
      • Editors Board
      • Scientific Board
    • History
    • Mission - Vision and Values
    • Annual survey result
    • Frequent asked questions
    • Dissemination and Indexing
    • It is said about DYNA...
    • Collaborate with DYNA
    • Links of interest for engineering
      • Links of interest for engineering
      • FRIENDLY organizations
      • Contributing organizations
      • Engineering Associations
      • Others engineering journals
      • Other interesting links
  • Authors and Referees
    • Guidelines, rules and forms
    • Dissemination and indexing
    • How researchers can collaborate
  • Papers
    • Papers
    • Search
    • Volumes and issues
    • Most downloaded last year
    • Submission of papers
    • Next issue contents
    • Monographic reports
  • News
    • News
    • Newsletters
    • Book Review
    • Software review
  • Blogs and Community
    • Blogs and Community
    • Forums
    • How collaborate
  • Subscribing
    • Sign up
  • Advertising
    • Target audience & ad formats
    • Advertising prices
    • Contents for next issue
    • Newsletter
  • Contact
    • How to contact
  • Search
    • In this Journal
    • Search in DYNA journals

Regístrese en un paso con su email y podrá personalizar sus preferencias mediante su perfil


: *   

: *   

:

: *     

 

  

Loading Loading ...