Buy ISO Determination of the resistance to jet fires of passive fire protection materials Part 1: General requirements from SAI Global. Find the most up-to-date version of ISO at Engineering The method provides an indication of how passive fire protection materials perform in a jet fire that may occur for example, in petrochemical installations. It aims.
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Through our network of over 43, people in 1, laboratories and offices in countries, Intertek provides quality and safety solutions to a wide range of industries around the world.
Jet Fire Testing
It can simulate natural gas jet fires which could occur on offshore platforms and land-based facilities, where natural gas leaks can produce significant heat flux exposure to structural steel.
Such a combined assessment is required for these materials since tests performed is furnaces do not accurately represent the realities of a fire caused by hydrocarbon-based liquids or gases.
Inspection Validating the specifications, value and safety of your raw materials, products and assets. As well as describing the assessment of structural elements, the standard outlines the testing methodology to be used on panels and their respective protective materials, pipes and penetration seals.
Need help or have a question? The Jet Fire Standard was developed to be combined with in-furnace hydrocarbon curve tests EN and 8 in order to assess passive fire-protection systems to be applied on structural elements. Validating the specifications, value and safety of your raw materials, products and assets.
Testing and engineering for product development. Assurance Testing Inspection Certification. Conformity testing and product certification.
The Jet Fire Test simulates the type of fire caused by a leak in a tank, pipe or 2899-1 equipment in which flammable fuel is being stored or transported under pressure.
GSO ISO – Standards Store – GCC Standardization Organization
Assurance Enabling you to identify and mitigate the intrinsic risk in your operations, supply chains and business processes. Evaluating how your products and services meet isi exceed quality, safety, sustainability and performance standards. We conduct, amongst others, jet fire tests according to ISO Whether your business is local or global, we can ensure your products meet quality, health, environmental, safety, and social accountability standards for virtually any market around the world.
Testing Evaluating how your products and services meet and exceed quality, safety, sustainability and performance standards. The storage and transport of hydrocarbons and other chemical products in plants, tanks, pipes and vessels call for extremely strict fire-protection measures. Laboratories division around the world.
In this way, we can successfully determine the thickness of protective material required for the Jet Fire testing of profiles of differing masses and sizes.
Formally confirming that your products and services meet all trusted external and internal standards. At the moment, very few laboratories in the world are capable 228991 performing the Jet Fire Test.
Enabling you to identify and mitigate the intrinsic risk in your operations, supply chains and business processes. Jet Fire Testing determines passive fire protection materials’ resistance to jet fires according to ISOPart1 requirements.
Jet Fire Testing (ISO 22899 Part 1)
The test is conducted using 14 Megawatt 0. Auditing Consulting Sourcing Training. The Jet Fire Test allows controlled and repeatable Jet Fire simulation on panel, web and pipe configurations coated with fire protective materials.
Intertek can help you reduce the time and high costs associated with shipping and testing your products overseas. During this test, the sample is submitted to a continuous jet fire.
This enables the methodology to be adapted to the specific requirements of particular products. This test has been specifically designed for a highly specialist sector and is intended for use on partitions and elements installed in vessels, chemical plants, fuel tanks and oil or gas platforms.
This test involves assessing the flame resistance of passive fire-protection products to be used on structural elements, tanks, pipes, valves, etc. This is because the effects of thermal radiation, turbulence and the forces of is, among other things, cannot be reproduced realistically in a furnace. As these inflammable products are stored under pressure, any leak could result in a virulent fire with a high rate of flame spread.
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