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		<updated>2026-05-07T00:51:23Z</updated>
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		<title>Scipediacontent: Scipediacontent moved page Draft Content 175283414 to Jardim et al 2014a</title>
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				<updated>2021-01-28T16:50:33Z</updated>
		
		<summary type="html">&lt;p&gt;Scipediacontent moved page &lt;a href=&quot;/public/Draft_Content_175283414&quot; class=&quot;mw-redirect&quot; title=&quot;Draft Content 175283414&quot;&gt;Draft Content 175283414&lt;/a&gt; to &lt;a href=&quot;/public/Jardim_et_al_2014a&quot; title=&quot;Jardim et al 2014a&quot;&gt;Jardim et al 2014a&lt;/a&gt;&lt;/p&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 16:50, 28 January 2021&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=Jardim_et_al_2014a&amp;diff=191698&amp;oldid=prev</id>
		<title>Scipediacontent: Created page with &quot; == Abstract ==  Petrobras Transporte S.A. – TRANSPETRO’s Gas Pipeline System, composed by 7.3 thousand kilometers, 135 delivery stations and 21 compressor stations, has a...&quot;</title>
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				<updated>2021-01-28T16:50:30Z</updated>
		
		<summary type="html">&lt;p&gt;Created page with &amp;quot; == Abstract ==  Petrobras Transporte S.A. – TRANSPETRO’s Gas Pipeline System, composed by 7.3 thousand kilometers, 135 delivery stations and 21 compressor stations, has a...&amp;quot;&lt;/p&gt;
&lt;p&gt;&lt;b&gt;New page&lt;/b&gt;&lt;/p&gt;&lt;div&gt;&lt;br /&gt;
== Abstract ==&lt;br /&gt;
&lt;br /&gt;
Petrobras Transporte S.A. – TRANSPETRO’s Gas Pipeline System, composed by 7.3 thousand kilometers, 135 delivery stations and 21 compressor stations, has a very seasonally dependent operation. Highly linked with the Brazilian energy grid, during the dry season of the year a large part of the 77.3 million cubic meters of natural gas daily transportation are used to generate around 6.4 gigawatts to power the country. Additionally, the ever increasing number of power plants and distribution companies around the country demand more and more gas to be offered to supply the system. Among the different sources of natural gas available, the LNG is the most flexible for such seasonal operation.&amp;lt;/jats:p&amp;gt;                &amp;lt;jats:p&amp;gt;In order to support this current demand and to attend future demands, the regasification ability of Baía de Guanabara LNG Terminal was increased in December 2012, by changing the regasification vessel that supplies the southeast portion of the gas pipeline network, from 14 to 20 million cubic meters per day. To prepare to receive the new ship, some tests were performed to determine the operational limits on system survival time without LNG supply during vessel exchange. This assessment involved two different issues. The ship change operation occurred during a period of high consumption, when the LNG terminal was needed to sustain the network inventory. A long period without this supply, caused by the exchange of LNG vessel, would affect the deliveries. On the other hand, the new ship’s commissioning curve would introduce a large amount of natural gas into the system during a short period of time, demanding that the deliveries absorbed such volume. Four planning scenarios were assessed based on some expected pipeline supply and delivery conditions. The work was important as a reference for future changes on operating supply units of TRANSPETRO gas pipeline system, showing the importance of pipeline simulation both as a planning tool for pipeline logistic problems and as operational support.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
== Original document ==&lt;br /&gt;
&lt;br /&gt;
The different versions of the original document can be found in:&lt;br /&gt;
&lt;br /&gt;
* [http://pdfs.semanticscholar.org/c563/7c6a17df8cc1846b34ad921b91d8f04cff74.pdf http://pdfs.semanticscholar.org/c563/7c6a17df8cc1846b34ad921b91d8f04cff74.pdf]&lt;br /&gt;
&lt;br /&gt;
* [http://asmedigitalcollection.asme.org/IPC/proceedings-pdf/doi/10.1115/IPC2014-33392/2509943/v004t08a012-ipc2014-33392.pdf http://asmedigitalcollection.asme.org/IPC/proceedings-pdf/doi/10.1115/IPC2014-33392/2509943/v004t08a012-ipc2014-33392.pdf],&lt;br /&gt;
: [http://dx.doi.org/10.1115/ipc2014-33392 http://dx.doi.org/10.1115/ipc2014-33392]&lt;br /&gt;
&lt;br /&gt;
* [http://www.simdut.com.br/Trabalhos/IPC2014-33392.pdf http://www.simdut.com.br/Trabalhos/IPC2014-33392.pdf],&lt;br /&gt;
: [https://asmedigitalcollection.asme.org/IPC/proceedings/IPC2014/46131/V004T08A012/265918 https://asmedigitalcollection.asme.org/IPC/proceedings/IPC2014/46131/V004T08A012/265918],&lt;br /&gt;
: [https://memagazineselect.asmedigitalcollection.asme.org/IPC/proceedings/IPC2014/46131/V004T08A012/265918 https://memagazineselect.asmedigitalcollection.asme.org/IPC/proceedings/IPC2014/46131/V004T08A012/265918],&lt;br /&gt;
: [http://proceedings.asmedigitalcollection.asme.org/proceeding.aspx?articleid=2022800 http://proceedings.asmedigitalcollection.asme.org/proceeding.aspx?articleid=2022800],&lt;br /&gt;
: [https://academic.microsoft.com/#/detail/2001096427 https://academic.microsoft.com/#/detail/2001096427]&lt;/div&gt;</summary>
		<author><name>Scipediacontent</name></author>	</entry>

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