Vent sizing. The DIERS method - Hybrid systems

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Vent sizing. The DIERS method - Hybrid systems

Author : Jean-Louis GUSTIN

Publication date: April 10, 2009 | Lire en français

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Overview

ABSTRACT

In the chemical industry, most reactors and a large number of containments are equipped with relief vents in order to protect them against runaway reactions in the condensed phase. The DIERS methods (Design Institute for Emergency Relief Systems) provide precious assistance for the calculation of the dimensioning of these relief systems. This article is dedicated to the hybrid systems; reactional systems that pressurize the containments through vapor pressure and the simultaneous production of non-condensable gases. The characteristics of these systems and the size calculation are presented. The decomposition of oxygenated water was chosen as an example in order to illustrate this approach.

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 INTRODUCTION

DIERS (Design institute for emergency relief systems) methods are used to protect reactors and enclosed vessels from runaway reactions. DIERS methods have already been the subject of two articles in Techniques de l'Ingénieur.

The article [SE 5 041] [1] provides an overview of DIERS' methods for sizing emergency vents to protect reactors and other equipment against runaway condensed-phase reactions.

DIERS methods distinguish three categories of reaction systems according to the type of pressurization they produce:

• High vapor systems are the subject of the same article [SE 5 041] . They account for 90% of vent sizing for reaction control.

• Gassy reactions are the second category of reaction systems for which we have specific methods of sizing emergency vents. These reaction systems are the subject of the article [SE 5 042][2] in Techniques de l'Ingénieur. They account for less than 10% of emergency vent sizing cases.

• Finally, hybrid systems are reaction systems that pressurize enclosures by steam pressure and incondensable gas production simultaneously. They are the subject of this article [SE 5 043] .

The demand for sizing this type of reaction system is relatively low, due to the complexity of the situation, the complexity of...

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