+ All Categories
Home > Documents > Modern technologies in oil & gas safety technologies...LTIF (Lost Time Injury Frequency) 0 0,2 0,4...

Modern technologies in oil & gas safety technologies...LTIF (Lost Time Injury Frequency) 0 0,2 0,4...

Date post: 11-Apr-2020
Category:
Upload: others
View: 16 times
Download: 0 times
Share this document with a friend
9
Название проекта 26.10.2017 Город Докладчик:___________ ________ 00.00.0000 Moscow 03.10.2017 Modern technologies in oil & gas safety technologies
Transcript

Название проекта

26.10.2017

Город

Докладчик:___________

________

00.00.0000

Moscow

03.10.2017

Modern technologies in oil & gas

– safety technologies

A H A Z A R D O U S I N D U S T RY

But improvements are occurring through technology and innovation

• Better identification of energy sources and

hazards

• Reduced number of people in the technical process

• Improvements in monitoring, control

• Better management systems and data analysis - especially in risk management

• Higher level of worker awareness and skill

Process Safety Improvement*

* CONCAWE ** Upstream Oil & Gas

R O S N E F T TO D AY *

Upstream assets Refineries

Countries of Company operations

Canada

Mexican Gulf

Venezuela

Russia Ukraine

Belarus

Germany

Italy

China

Brazil

Vietnam

Norway Mongolia

Turkmenistan

ВНХК

Tientsin Refinery

Cuba

India

Egypt

Indonesia Mozambique

Kyrgyzstan

Armenia

Georgia

Iraqi

Myanmar

Fuel stations count - 2 962 retail sites

2016 production rate - 1 965 mln boe produced

Petroleum / petrochemicals output rate – 98,2 mln. tons

Oil / fuel sales – 222,5 mln. tons sold

* Data taken from Rosneft’s 2016 Annual report and Sustainability report

Company headcount as of the end of 2016 – 295,8 k people

Hazardous facilities count – 3 753 units

Length of operating infield pipelines– 62 630 km

Drilling rigs count – 280 rigs

Vehicles count – 48 198 vehicles

US and DS projects run in 24 countries

Refineries - 18

3

R O S N E F T H S E P E R F O R M A N C E 2 0 1 6 *

4

LTIF (Lost Time Injury Frequency)

0

0,2

0,4

0,6

0,8

1

1,2

1,4

1,6

4 Q 3 Q 2 Q 1 Q

per quartile

Rosneft (Upstream, Gas, Oilfield Service) LTIF – 0,31

23,8

18,6

14,3

5,82 5,36 3,69

1,11 1 0,4 0

5

10

15

20

25

Eni ConocoPhilips

Shell BP Exxon RN Chevron Statoil Petrobras

GHG (Greenhouse gas) (Upstream)

35,0 34,7

30,6 27,1

23,0

10,6

0

10

20

30

40

Chevron BP Shell RN Eni Statoil

OS (Oil Spills) (Upstream)

Tons of CO2-equivalent./K bar oil equivalent.

Tons of oil spilled/M tons produced

* Data from public sources

What did Rosneft do to achieve current results (2016):

Invested in pipeline reliability program:

21,5 B rub.

Invested in the rational use of APG:

17,8 B rub.

Percentage of APG use:

90 %

Road Accident

0,4

0,14

0,07

0

0,1

0,2

0,3

0,4

0,5

CONCAWE Rosneft OGP

E X A M P L E S O F T E C H N O L O G I E S W H I C H E N S U R E

S A F E T Y

Transport

Pipelines

Production

GPS, GLONASS

Drones

Production automation

• Reduction of the number and severity of road accidents

• Control over waste transportation and disposal

• Quick detection of ruptures • Reduction of the contaminated land areas

• Decrease of accident rate, injury rate and environmental pollution

+ =

+ =

+ =

• Less fresh water consumption • Improving the discharged water quality + =

5

Water treatment одоочистка

BTF reconstruction*

* BTF – Biological treatment facility

R O S N E F T H S E – M O V I N G F O RWA R D

6

CONTROL SYSTEM EXPERTISE

SAFETY MANAGEMENT SYSTEM

REPORTING AND PERFORMANCE REVIEW

LEADERSHIP AND SAFETY CULTURE

RISK MANAGEMENT AND INTEGRITY

STRATEGY ELEMENTS

TECHNOLOGIES

BARRIERS

Prevention Detection and control Impact reduction Mitigation

ROBOTIZATION

ADVANCED ANALYTICS

PORTABLE DEVICES

INTEGRATION TECHNOLOGICAL PLATFORMS

ARTIFICIAL INTELLIGENCE

E X A M P L E S O F R I S K - B A S E D T E C H N O L O G I E S ’

A P P L I C AT I O N

7

Prevention Detection and control Impact reduction Mitigation

PIPELINE INTEGRITY • Chemical reagent addition and inhibition unit;

• Pipeline clean up (inner space cleaning);

• Computer modelling and forecast of pipeline condition;

• Turbulence reduction (use of drag reducing agents).

• Leak detection system;

• Visual check and diagnostics using pigs, unmanned devices, etc.;

• Installation of surveillance and control sensors to monitor environment.

• Installation of shut down valves;

• Use of protective containments, PIP technology;

• Diking, booms.

• Readiness (availability of equipment) for quick and effective response in case of pipeline loss of containment and oil spills (timely localization and oil spill response).

Drilling and well workover reliability

• additional mounting / drilling equipment in wells with high gas-oil ratio;

• use of equipment and technologies for conducting and interpreting the 3D seismic surveys;

• equipment for the accurate determination of bottomhole and formation pressures;

• double-barrier control.

• system of sensors to measure pressure, temperature, mud parameters, process conditions;

• installation of gas detectors to monitor the external environment.

• installation of highly effective blowout preventers;

• use of special equipment for the successful elimination of blowout safety events and blowouts.

• prompt blowout response • systems of well control and ongoing fluid

makeup.

T E C H N O L O G I E S H AV E A L R E A D Y M A D E T H E

C O M PA N Y S A F E R

As was As is

• Message to Suppliers and Contractors:

- Consistently implement existing technologies today

- Invest in the integrity of your operation and safety of your workers

- Make proposals and take actions that can help achieve the ultimate goal – an accident free work site 8

Speaker:

Christoph Nehring, VP HSE

PJSC Rosneft Oil Company

Contact information: 117997, Moscow, Sofiyskaya embankment, 26/1

Phone number: +7 (499) 517-88-88, ext. 52202

Fax: +7 (499) 517-88-88

E-mail: [email protected]


Recommended