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Risk and emergency preparedness

NORSOK 2001 Risk and emergency preparedness analysis NORSOK Standard Z-013 Rev.2, 2001-09-01... [Pg.382]

NORSOK 2001. NORSOK Z-013 Risk and emergency preparedness analysis. Rev. 2, Norwegian Technology Centre. Available at http //www.standard.no/pronorm-3/data/f/0/01/50/3 10704 0/Z-013.pdf. Access in 24/06/2008. [Pg.1017]

Standards Norway (2001). Norsok Standard Risk and emergency preparedness analysis, Z-013. Oslo, Norwegian Technology Centre. [Pg.2119]

NORSOK Standard Z-013, Edition 3, 2010. Risk and emergency preparedness assessment. Published by Standards Norway. [Pg.460]

The basic aim of the main study phase is to develop the necessary basis for government approval and for the main contracts. The project matnres the concept further and establishes a contractual strategy, technical specifications and other tender documents. A Plan for the development and operation of the installation and an Environmental Impact statement are developed and transmitted to the authorities. They are based on input from different SHE studies, including a coarse Risk and Emergency Preparedness Analysis (REPA). A primary aim is to provide input to the documentation required by the authorities. The different SHE analyses... [Pg.314]

The project screens different development concepts. Risks that may make a concept unfeasible or result in high extra costs are focused on in special studies. An independent consultant carries out coarse Risk and emergency-preparedness analysis (REPA) for the two development alternatives that are considered (NORSOK Standard Z-013, see Norsk Standard, 1998). They are a standard production ship and a standard semi-submersible PDQ platform. The aim is to get a total overview of the risks involved for concept selection and to check compliance with the acceptance criteria. It is important to remember that the REPA and the acceptance criteria evaluate the integrity of passive and embedded barriers in particular. These are to a large extent determined in the early project phase. [Pg.323]

The Risk and Emergency-Preparedness Analysis (REPA) is also subject to updating with new incidents and in connection with modifications. The aim in the latter case is to check that the modifications do not violate any of the acceptance criteria for the risk of major accidents. [Pg.343]

Norsk Standard, 1996/97/98/99. Technical Safety (Norsok Standard S-001). Working Environment (Norsok Standard S-002). Environmental Care (Norsok Standard S-003). Machinery—Working Environment Assessment and Documentation (Norsok Standard S-005). Health, Safety and Environment During Construction (Norsok Standard S-CR-002), Risk and Emergency Preparedness Analysis (Norsok Standard Z-013). Norsk Standard, Oslo. [Pg.414]

Risk tracking (as new data become available, as risk models are improved, and when changes occur in the facility, the related changes in risk related to safety, environmental protection, and emergency preparedness will be calculated and tracked) and... [Pg.54]

Table 1. The work safety risk index and emergency preparedness effects in Xinjiang, China. Table 1. The work safety risk index and emergency preparedness effects in Xinjiang, China.
MHMY and MTTV in Bazhou decreased year by year MHTW and MMTCM from 2008 to 2011. Overall, the work safety risk in Bazhou decreases, and emergency preparedness effects are fine. [Pg.565]

The ICI-MOND Fire Explosion and Toxicity Index (ICI 1985) was derived from DOW one and it is yet appreciated in process industry in many countries, including Italy. In ICI-MOND index method there are some ninety elementary questions, nested in a three levels tree. For many issues there is also a forth level of nested questions. About two thirds of the questions are for penalties and one third for credits accounting. For the most of the questions a quantitative answer is required. The questions are organized in chapters for penalties section the subjects are related to materials and quantities, processes and equipment, layout, health for credits section instead the method deals with containment, control, safety culture, fire engineering and emergency preparedness. Every issue weighs differently in overall risk levels accounting. Results are presented in a structured way, discriminat-iug fire, toxic, confined and unconfined explosion. [Pg.736]

The NORSOK Standard Z-013 is a standard edited by theNPD (Norwegian Petroleum Directorate), which is a Norwegian agency in charge to regulate the oil industry activities in the North Sea. This standard has been reedited in 2001 and refers to risk analysis and emergency preparedness. [Pg.1012]

Wireless Priority Service (WPS) can improve connection capabilities for a limited number of authorized national security and emergency preparedness mobile phone users. In the event of congestion in the wireless network, an emergency call using WPS will take priority queuing for the next available channel. Obtain a last-resort backup means of communication such as wireless, WIFI, or satellite. Consider HF radio as an option, recognizing that HF usually requires a skilled operator such as a licensed HAM radio operator. Evaluate the resiliency, redundancy, and interoperability of the system while performing your inventory and risk assessment analysis. [Pg.148]

The internal control regulation of SHE and all the 15 specific regulations regarding risk analysis, emergency preparedness, working environment, etc. have been replaced by a framework regulation, and four more detailed pieces of regulation on ... [Pg.66]

NORSOK, 2010. Z-013, Risk assessment and emergency preparedness analysis, 3rd edition. Standard Norge... [Pg.369]

Law and liability, threat and risk assessment, emergency preparedness, and safety design form the beginning of identifying a need for occupational safety awareness. The basic questions of Where we are Where do we need to be and How do we get there identify occupational safety needs and help us to form our objective for efficient and effective occupational safety programs. Risk assessment and cost analysis round out the formula for determining occupational safety needs. [Pg.4]

The Istanbul Seismic Risk Mitigation and Emergency Preparedness Project (ISMEP) (with loans from World Bank and ElB) allowed for retrofitting of 250 schools and reconstruction of 36 schools in 2007-2008 with 600 more undergoing assessment and feasibility studies. In 2009 the remaining 450 schools were slated for retrofitting. [Pg.2464]

Process risk management Management of residual risk through hazard identification, risk assessment and reduction, emergency preparedness, and working with suppliers and customers (including carriers) apply... [Pg.189]


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