<?xml version="1.0" encoding="ISO-8859-1"?><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">
<front>
<journal-meta>
<journal-id>0123-3033</journal-id>
<journal-title><![CDATA[Ingeniería y competitividad]]></journal-title>
<abbrev-journal-title><![CDATA[Ing. compet.]]></abbrev-journal-title>
<issn>0123-3033</issn>
<publisher>
<publisher-name><![CDATA[Facultad de Ingeniería, Universidad del Valle]]></publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id>S0123-30332024000100003</article-id>
<article-id pub-id-type="doi">10.25100/iyc.v26i1.13410</article-id>
<title-group>
<article-title xml:lang="en"><![CDATA[Numerical investigation of combustion in a panela furnace using openfoam]]></article-title>
<article-title xml:lang="es"><![CDATA[Investigación numérica de la combustión en un horno panelero utilizando openfoam]]></article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name>
<surname><![CDATA[García-Sánchez]]></surname>
<given-names><![CDATA[Gabriel F.]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Chacón-Velasco]]></surname>
<given-names><![CDATA[Jorge L.]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Fuentes-Díaz]]></surname>
<given-names><![CDATA[David A.]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
</contrib-group>
<aff id="Af1">
<institution><![CDATA[,Universidad Industrial de Santander School of Mechanical Engineering ]]></institution>
<addr-line><![CDATA[Bucaramanga ]]></addr-line>
<country>Colombia</country>
</aff>
<pub-date pub-type="pub">
<day>00</day>
<month>04</month>
<year>2024</year>
</pub-date>
<pub-date pub-type="epub">
<day>00</day>
<month>04</month>
<year>2024</year>
</pub-date>
<volume>26</volume>
<numero>1</numero>
<copyright-statement/>
<copyright-year/>
<self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_arttext&amp;pid=S0123-30332024000100003&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_abstract&amp;pid=S0123-30332024000100003&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_pdf&amp;pid=S0123-30332024000100003&amp;lng=en&amp;nrm=iso"></self-uri><abstract abstract-type="short" xml:lang="en"><p><![CDATA[Abstract To develop biomass combustion as a viable renewable energy source it is necessary to improve the furnace efficiency and investigate the potential of agricultural wastes as fuels. Computational Fluid Dynamics (CFD) modeling is a valuable tool to accomplish these objectives, OpenFOAM is a powerful open-source CFD software that has been little used in this type of application. This paper reports the study of combustion in a device of great importance for Colombia, the panela furnace, using a model developed in OpenFOAM. The combustion chamber of a Ward-Cimpa furnace, measuring 2.68 m in width and 3.32 m in height was modeled. This model was validated, by comparing the simulated values of CO and temperature at the furnace exit with data taken from literature, resulting in differences of 13.72 % and 12.23 % respectively. These discrepancies are slightly lower than those reported in other studies about the subject. The model was employed to analyze the effect of the air-flow rate on the combustion performance. The findings indicate that the increase in air-flow causes an increase in combustion activity manifested in higher temperature and CO2 emissions, which could indicate that in common operational conditions, the furnace operates under deficient air conditions and its performance could be improve by using higher air flow rates.]]></p></abstract>
<abstract abstract-type="short" xml:lang="es"><p><![CDATA[Resumen Para desarrollar la combustión de biomasa como fuente viable de energía renovable es necesario mejorar la eficiencia de los hornos e investigar el potencial de los desechos agrícolas como combustibles. El modelado de dinámica de fluidos computacional (CFD) es una herramienta valiosa para lograr estos objetivos; OpenFOAM es un potente software CFD de código abierto que ha sido poco utilizado en este tipo de aplicaciones. Este artículo reporta el estudio de la combustión en un dispositivo de gran importancia para Colombia, el horno de panela, utilizando un modelo desarrollado en OpenFOAM. Se modeló la cámara de combustión de un horno Ward-Cimpa, que mide 2,68 m de ancho y 3,32 m de alto. Este modelo fue validado comparando los valores simulados de CO y temperatura a la salida del horno con datos tomados de la literatura, arrojando diferencias de 13,72 % y 12,23 % respectivamente. Estas discrepancias son ligeramente menores que las reportadas en otros estudios sobre el tema. El modelo se empleó para analizar el efecto del caudal de aire sobre el rendimiento de la combustión. Los hallazgos indican que el aumento en el flujo de aire provoca un aumento en la actividad de combustión que se manifiesta en una mayor temperatura y emisiones de CO2, lo que podría indicar que en condiciones operativas comunes, el horno opera en condiciones de aire deficientes y su rendimiento podría mejorarse utilizando mayor cantidad de aire. caudales.]]></p></abstract>
<kwd-group>
<kwd lng="en"><![CDATA[combustion]]></kwd>
<kwd lng="en"><![CDATA[Modeling]]></kwd>
<kwd lng="en"><![CDATA[Biomass]]></kwd>
<kwd lng="en"><![CDATA[Computational Fluid Dynamics]]></kwd>
<kwd lng="en"><![CDATA[OpenFOAM]]></kwd>
<kwd lng="es"><![CDATA[Combustión]]></kwd>
<kwd lng="es"><![CDATA[Modelado]]></kwd>
<kwd lng="es"><![CDATA[Biomasa]]></kwd>
<kwd lng="es"><![CDATA[Dinámica de Fluidos Computacional]]></kwd>
<kwd lng="es"><![CDATA[OpenFOAM]]></kwd>
</kwd-group>
</article-meta>
</front><back>
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