Gfx320 New Generation.pdf

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GFx320 Launch Proprietary - Company Confidential ©2017 FLIR Systems Inc. Information and equipment described herein may require US Government authorization for export purposes. Diversion contrary to US law is prohibited.

Por que detectar fugas de gases?

 Regulamentações ambientais;

 Segurança (patrimonial e operacional);  Prejuízos com perda de produtos e matéria prima.

Proprietary - Company Confidential ©2017 FLIR Systems Inc. Information and equipment described herein may require US Government authorization for export purposes. Diversion contrary to US law is prohibited.

2

2

Regulamentações ambientais

 EPA - 40 CFR

Guia de Boas Práticas Detecção de vazamentos e reparos.

 Tratados de redução de emissão

Global Methane Initiative

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3

What is BSER?

Best System of Emissions Reduction

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Segurança

 Razão número 1 para ExxonMobil comprar câmeras GF foi segurança!  SMART LDAR – FLIR GF permite examinar grandes áreas em curto espaço de tempo  Saúde ocupacional (exemplo: Benzeno)  Inspeções à distâncias seguras  Inspeções em equipamentos energizados e rotativos

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5

ROI

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6

$6.000.000

ROI

$5.000.000

$4.000.000

Gas Savings ($/yr)*

$3.000.000

Cumulative Gas Savings

$2.000.000

$1.000.000

$0 Yr 1

Yr 2

Yr 3

Yr 4

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Yr 5

Yr 6

7

ROI

Newsletter da ArcelorMittal

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8

ROI

Proprietary - Company Confidential ©2017 FLIR Systems Inc. Information and equipment described herein may require US Government authorization for export purposes. Diversion contrary to US law is prohibited.

9

TAC – Termo de ajuste de conduta

GF320

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10

Métodos para detecção de emissões fugitivas

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11

OGI: Tecnologia sem comparação!

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12

OGI Passado

H A Z A R D O U S L O C A T I O N

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13

OGI Passado

H A Z A R D O U S L O C A T I O N

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14

OGI – HOJE - Apresentando…

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15

Proven Solution

Ergonomic

Intrinsically Safe

3rd Party Certified

Sensitive

Temperature Calibration

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16

Solução Comprovada

1980 s

1990

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2006

2010

TODAY

17

Mitigando o risco através do design

Métodos de proteção a explosão • • • • • • • • • •

Flame Proof (Explosion Proof) Increased Safety Oil Filled Sand/Powder/Quartz Filled Encapsulated Pressurized/Purges Intrinsically Safe Non-Incendive Special Protection Energy Limited (withdrawn)

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18

Certificação de 3° parte para Áreas classificadas

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19

Para América do Norte Notified Body (NB) NEC and CSA define the use of the Class/Division System Classes

Group

Divisions

I - Gases, vapors, mists

a. b. c. d.

Acetylene Hydrogen Ethylene, carbon monoxide Hydrocarbons, propane, etc.

1

2

Normally explosive and hazardous

Not normally present in an explosive concentration, but may accidentally exist

II – Combustible dusts

e. f. g.

Metal dust Carbon and charcoal dust Flour, grain, wood, plastic

Ignitable quantities of dust exist all or some of the time under normal operations

Dust not normally present in ignitable concentrations but may accidentally exist

III – Fibers and flyings

Ignitable fiber such as cotton, lint, flax, rayon

Easily ignitable fibers or materials producing combustible flyings are present

Easily ignitable fibers are stored and handled

The FLIR GFx320 is independently certified for Class 1 Division 2

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20

Para Europa e restante do Mundo

The International Electrotechnical Commission (IEC) defines the use of the Zone System Hazard Type Gases, vapors, mists

Dusts

Zone

Duration

0

Continuously, for a long period, frequently

1

Occasionally

2

Rarely

20

Continuously, for a long period, frequently

21

Occasionally

22

Rarely

The FLIR GFx320 is independently certified for Zone 2

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21

Classe de temperature IEC/NEC/CENELEC

 Metano em concentrações entre 5% e 15% se torna inflamável em contato com superfície acima de 450°C – ou classe T1  A FLIR GFx320 – Intrinsicamente Segura – é certificada T4  T4 = 135°C – distante da temperatura de ignição do metano

Proprietary - Company Confidential ©2017 FLIR Systems Inc. Information and equipment described herein may require US Government authorization for export purposes. Diversion contrary to US law is prohibited.

Maximum Surface Temperature of Electrical Equipment

Temperature Class

Celsius

Fahrenheit

450°C

842°F

T1

300°C

572°F

T2

200°C

392°F

T3

135°C

275°F

T4

100°C

212°F

T5

85°C

185°F

T6

22

Ergonomia

Adjustable Eyepiece

Rotating Handgrip & Controls

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Articulating LCD Screen

23

Sensibilidade

High Sensitivity Mode The GFx320 core has been 3rd party tested to the EPA required detection specification for OGI equipment.

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24

Medição de temperatura

Conheça as condições térmicas do local da inspeção através da medição de temperatura,

EPA requires operators to ensure adequate thermal background is achieved during OGI inspections

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25

Equipada com GPS

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26

Monitoramento de FLARE

Combustão incompleta pode ser uma das maiores fontes de fugas de VOC

Combustão OK

Combustão Incompleta

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27

AS EMISSÕES FUGITIVAS NUNCA MAIS SE ESCONDERÃO!

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28

Alguns Clientes      

Refinarias Indústrias Químicas Gás Natural Distribuidoras de Gás Indústrias em geral Empresas de Energia

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29

Série FLIR GF

FLIR GF320 Detecção de + 20 Hidrocarbonetos Ex.: Metano, Propano, Butano, etc

FLIR GF306 Detecção de SF6, Amônia e + 24 gases Proprietary - Company Confidential ©2017 FLIR Systems Inc. Information and equipment described herein may require US Government authorization for export purposes. Diversion contrary to US law is prohibited.

FLIR GF346 Detecção de CO, N2O + 12 gases

FLIR GF304 Detecção de 13 gases refrigerantes 30

Série FLIR GF

FLIR GF309 Inspeção no interior de fornos através da chama FLIR GF343 High Performance Detecção de CO2 e H2 através de traço

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31

Classificação ATEX

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32

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