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Modelagem de Vazamento de Condensado a partir do Gasoduto do ...

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Pág.<br />

VI-28/39<br />

Resulta<strong>do</strong>s das Simulações<br />

para um <strong>Vazamento</strong> <strong>de</strong><br />

Con<strong>de</strong>nsa<strong>do</strong> no <strong>Gasoduto</strong> <strong>do</strong><br />

Campo <strong>de</strong> Camarupim<br />

VI<br />

______________________<br />

Coor<strong>de</strong>na<strong>do</strong>r da Equipe<br />

<strong>Mo<strong>de</strong>lagem</strong> <strong>de</strong> <strong>Vazamento</strong> <strong>de</strong> Con<strong>de</strong>nsa<strong>do</strong><br />

a <strong>partir</strong> <strong>do</strong> <strong>Gasoduto</strong> <strong>do</strong> Campo <strong>de</strong> Camarupim,<br />

Bacia <strong>do</strong> Espírito Santo<br />

Figura VI.2.1-10 - Cenário CAM_COND_INV_62_9H. Contornos <strong>de</strong> probabilida<strong>de</strong> <strong>de</strong><br />

con<strong>de</strong>nsa<strong>do</strong> na coluna d’água (acima <strong>do</strong> corte <strong>de</strong> 3,85 ppb) para um<br />

vazamento ocorren<strong>do</strong> no <strong>Gasoduto</strong> <strong>do</strong> Campo <strong>de</strong> Camarupim, durante<br />

os meses <strong>de</strong> inverno (junho a agosto), com <strong>de</strong>rrame <strong>de</strong> 62,62 m 3 após<br />

9 horas.<br />

______________________<br />

Técnico Responsável<br />

Revisão 00<br />

10/2006

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