By Cyril F. Parry
This sensible advisor fills a niche within the literature on strain reduction process layout, operation and upkeep. The publication covers the applicability to and reliability of other strain aid units to person situations.
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Additional info for Relief Systems Handbook - IChemE
With a common venting systema flame arrestorcan prevent a flashback in the manifolds, so in these circumstances it is worth considering. The major considerationis the cleanlinessof the discharge. Since the principle of the flame arrestor depends on a multiplicity of fine passages, any dirt or debris in the discharge will tend to block the arrestor and a blocked arrestor can be more dangerous than a possible flashback. Where the situation is not clearcut, a risk analysis should be performed to assess the hazard potential with and without the flame arrestor.
A flame arrester is not considered necessary with a P/V breather valve since the flame speeds are less than the venting velocity through the valve. 3 EMERGENCY VENTS When the emergencydischargecapacity required, for instance in the case of fire, is larger that can be conveniently provided by the vent or breather valve, it is customaryto provide a low-pressurestorage tank with an emergency vent. This is usually designed as a hinged weighted cover that will lift at a slightly greater pressure than the P/V breather valve.
6) so that branches enter horizontal manifolds from the top. Where the minimisation of pressure drop is important, tees into manifolds should be angled or swept. 10). The maximum discharge rate through any portion of the discharge system must be established from the combined discharges of the relief devices feeding that portion of the system, taking into account the simultaneous lifting of several devices due to one contingency. For example,the single contingency of power failurecould trigger several relief devices simultaneouslybut leave the other relief devices in that portion of the system unaffected.