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		<id>https://www.scipedia.com/wd/index.php?action=history&amp;feed=atom&amp;title=Capua_et_al_2010a</id>
		<title>Capua et al 2010a - Revision history</title>
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		<updated>2026-05-07T23:32:19Z</updated>
		<subtitle>Revision history for this page on the wiki</subtitle>
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	<entry>
		<id>https://www.scipedia.com/wd/index.php?title=Capua_et_al_2010a&amp;diff=56274&amp;oldid=prev</id>
		<title>Scipediacontent at 10:04, 14 June 2017</title>
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				<updated>2017-06-14T10:04:47Z</updated>
		
		<summary type="html">&lt;p&gt;&lt;/p&gt;
&lt;table class=&quot;diff diff-contentalign-left&quot; data-mw=&quot;interface&quot;&gt;
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				&lt;td colspan='2' style=&quot;background-color: white; color:black; text-align: center;&quot;&gt;← Older revision&lt;/td&gt;
				&lt;td colspan='2' style=&quot;background-color: white; color:black; text-align: center;&quot;&gt;Revision as of 10:04, 14 June 2017&lt;/td&gt;
				&lt;/tr&gt;&lt;tr&gt;&lt;td colspan=&quot;2&quot; class=&quot;diff-lineno&quot; id=&quot;mw-diff-left-l1&quot; &gt;Line 1:&lt;/td&gt;
&lt;td colspan=&quot;2&quot; class=&quot;diff-lineno&quot;&gt;Line 1:&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;== Abstract ==&lt;/div&gt;&lt;/td&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;== Abstract ==&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;/td&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class='diff-marker'&gt;−&lt;/td&gt;&lt;td style=&quot;color:black; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #ffe49c; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;&lt;del class=&quot;diffchange diffchange-inline&quot;&gt;En este artículo se presenta una metodología que permite obtener de forma automática la geometría de muros de mampostería para proceder al cálculo estructural mediante elementos finitos considerando por separado las unidades estructurales (ladrillo o piedra) y el mortero. Esta geometría se obtiene mediante un proceso de detección de bordes en fotografías digitales de los muros analizados. A modo de ejemplo se presentan dos aplicaciones de este metodología. Una de ellas es el análisis de unmuro de mampostería regular de obra. La otra aplicación es el análisis de un muro de mampostería de piedra irregular. El cálculo computacional en ambos casos se ha basado en un modelo sencillo propuesto que permite simular el deterioro del muro de mampostería debido a la fisuración por tracción de las juntas. Suumary &lt;/del&gt;This paper presents a proposed methodology developed to obtain the geometry of masonry walls. The methodology is based on the automatic recognition of boundaries. The geometry is used to proceed to the numerical simulation of damages based on a simple model, which allows determinate the cracking process due the tensile stresses in joints. Masonry units are considered as lineal and elastic elements, and the non-elastic processes are considered to exist only in the joints. Two examples are included showing two different walls: a regular mansonry wall built with bricks, and an irregular masonry wall with limestone stones as masonry units.&lt;/div&gt;&lt;/td&gt;&lt;td class='diff-marker'&gt;+&lt;/td&gt;&lt;td style=&quot;color:black; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;This paper presents a proposed methodology developed to obtain the geometry of masonry walls. The methodology is based on the automatic recognition of boundaries. The geometry is used to proceed to the numerical simulation of damages based on a simple model, which allows determinate the cracking process due the tensile stresses in joints. Masonry units are considered as lineal and elastic elements, and the non-elastic processes are considered to exist only in the joints. Two examples are included showing two different walls: a regular mansonry wall built with bricks, and an irregular masonry wall with limestone stones as masonry units.&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;/td&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;== Full document ==&lt;/div&gt;&lt;/td&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;== Full document ==&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;&amp;lt;pdf&amp;gt;Media:draft_Content_288382906RR261A.pdf&amp;lt;/pdf&amp;gt;&lt;/div&gt;&lt;/td&gt;&lt;td class='diff-marker'&gt;&amp;#160;&lt;/td&gt;&lt;td style=&quot;background-color: #f9f9f9; color: #333333; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #e6e6e6; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;&amp;lt;pdf&amp;gt;Media:draft_Content_288382906RR261A.pdf&amp;lt;/pdf&amp;gt;&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;

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&lt;/table&gt;</summary>
		<author><name>Scipediacontent</name></author>	</entry>

	<entry>
		<id>https://www.scipedia.com/wd/index.php?title=Capua_et_al_2010a&amp;diff=56241&amp;oldid=prev</id>
		<title>Scipediacontent: Scipediacontent moved page Draft Content 288382906 to Capua et al 2010a</title>
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				<updated>2017-06-14T08:43:57Z</updated>
		
		<summary type="html">&lt;p&gt;Scipediacontent moved page &lt;a href=&quot;/public/Draft_Content_288382906&quot; class=&quot;mw-redirect&quot; title=&quot;Draft Content 288382906&quot;&gt;Draft Content 288382906&lt;/a&gt; to &lt;a href=&quot;/public/Capua_et_al_2010a&quot; title=&quot;Capua et al 2010a&quot;&gt;Capua et al 2010a&lt;/a&gt;&lt;/p&gt;
&lt;table class=&quot;diff diff-contentalign-left&quot; data-mw=&quot;interface&quot;&gt;
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				&lt;td colspan='1' style=&quot;background-color: white; color:black; text-align: center;&quot;&gt;← Older revision&lt;/td&gt;
				&lt;td colspan='1' style=&quot;background-color: white; color:black; text-align: center;&quot;&gt;Revision as of 08:43, 14 June 2017&lt;/td&gt;
				&lt;/tr&gt;&lt;tr&gt;&lt;td colspan='2' style='text-align: center;' lang='en'&gt;&lt;div class=&quot;mw-diff-empty&quot;&gt;(No difference)&lt;/div&gt;
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		<author><name>Scipediacontent</name></author>	</entry>

	<entry>
		<id>https://www.scipedia.com/wd/index.php?title=Capua_et_al_2010a&amp;diff=56188&amp;oldid=prev</id>
		<title>Scipediacontent: Created page with &quot;== Abstract ==  En este artículo se presenta una metodología que permite obtener de forma automática la geometría de muros de mampostería para proceder al cálculo estruc...&quot;</title>
		<link rel="alternate" type="text/html" href="https://www.scipedia.com/wd/index.php?title=Capua_et_al_2010a&amp;diff=56188&amp;oldid=prev"/>
				<updated>2017-06-14T07:48:32Z</updated>
		
		<summary type="html">&lt;p&gt;Created page with &amp;quot;== Abstract ==  En este artículo se presenta una metodología que permite obtener de forma automática la geometría de muros de mampostería para proceder al cálculo estruc...&amp;quot;&lt;/p&gt;
&lt;p&gt;&lt;b&gt;New page&lt;/b&gt;&lt;/p&gt;&lt;div&gt;== Abstract ==&lt;br /&gt;
&lt;br /&gt;
En este artículo se presenta una metodología que permite obtener de forma automática la geometría de muros de mampostería para proceder al cálculo estructural mediante elementos finitos considerando por separado las unidades estructurales (ladrillo o piedra) y el mortero. Esta geometría se obtiene mediante un proceso de detección de bordes en fotografías digitales de los muros analizados. A modo de ejemplo se presentan dos aplicaciones de este metodología. Una de ellas es el análisis de unmuro de mampostería regular de obra. La otra aplicación es el análisis de un muro de mampostería de piedra irregular. El cálculo computacional en ambos casos se ha basado en un modelo sencillo propuesto que permite simular el deterioro del muro de mampostería debido a la fisuración por tracción de las juntas. Suumary This paper presents a proposed methodology developed to obtain the geometry of masonry walls. The methodology is based on the automatic recognition of boundaries. The geometry is used to proceed to the numerical simulation of damages based on a simple model, which allows determinate the cracking process due the tensile stresses in joints. Masonry units are considered as lineal and elastic elements, and the non-elastic processes are considered to exist only in the joints. Two examples are included showing two different walls: a regular mansonry wall built with bricks, and an irregular masonry wall with limestone stones as masonry units.&lt;br /&gt;
&lt;br /&gt;
== Full document ==&lt;br /&gt;
&amp;lt;pdf&amp;gt;Media:draft_Content_288382906RR261A.pdf&amp;lt;/pdf&amp;gt;&lt;/div&gt;</summary>
		<author><name>Scipediacontent</name></author>	</entry>

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