The report mainly discusses about the analysis of the failure that occurred in two adjacent super heater tubes that were made up of CrMo steel. This was a 60 MW thermal power plant that made use of the coal. The major reason lying behind the failure was due to the oxide deposition upon the internal surface of the tube and this deposition was initially responsible for the creation of a significant amount of resistance for the heat transfer process [1]. This in turn was associated with undesirable rise in the temperature of the components. Besides this the report has also been associated with proposing the risk mitigation strategy as well.
Specific Theory -In a power plant the prime importance is provided to the process required for the purpose of generating electricity without the existence of any kind of forced outages. The major concern for the forced outages in the coal fire station is due to eh failure of the super heater tube of the boilers. The major reason lying behind the damage occurring over the time of operation is due to the flowing of the fuel gases over the super heater tubes. This type of damage is often termed as the fireside damage or corrosion. This type of damage is generally dependent upon the coal quality, as well as on the materials that are being used along with the various operations and the maintenance. It is seen that the tubes interior is generally vulnerable and are primarily dependent upon the water quality that is used for the generating steam of high pressure [2]. So there is an essential need of a steady or continuous flow of steam so as to make sure that the materials of the tube are maintained under the temperature that has been prescribed. In case of its absence there exists the high possibility of shooting-up of the temperature which in turn is responsible for the detrition of the materials as well as the subsequent failure at a fast rate. For such instances the overall efficiency of the plant is entirely dropped. So it is very essential to analyse the failure of the tubes in order to find as solution for taking certain actions that would be helping in avoiding such kind of risks in the future [3].
The possible ways that are to be adopted in order to eliminate the further risks similar to the boiler incident have been listed below:
The damage of the tubes were visible with naked eyes only. It was observed that both of the tubes were associated with experiencing a temperature of around 540 C and was associated with a stress level of around 100kg/cm2 at the time of operation. In one of the sample it was observed that there existed fish mouth cracking I one side whereas on the other side of the welding there was a bulge. Besides this there also existed a layer wise corrosion at the open end of the crack [6]. Besides this there existed a drastic decrease in the thickness of the walls as well. There also existed multiple cracks in the inner surface in the longitudinal direction but this type of cracks were entirely absent in the outer surface. So it was observed that the outer surface was blackened that lead to thermal effect whereas the inner surface was entirely deep brown in colour having multiple red spots.
Some of the facts that were identified after analysing the entire incident have been listed below:
The most possible ways by which this kind of failures can be eliminated is by proper monitoring of the entire process. Everything needs to be monitored in a proper way along with which proper materials are also to be used of the purpose of creating a proper tube of the boilers which are essential for the purpose of eliminating this kind of the problems. Besides this there is also a need of proper cleaning as well so as to eliminate the formation of oxides as well as the subsequent spilling from inside the tubes wall. Besides this good quality water should also be used so as to prevent thickening of the walls [11]. Creep and softening of the materials is another problem that was responsible for the failure. Oxide scale management would be helping in the smoothing of the heat transfer process initially helping in the elimination of local overheating. Besides the steam pressure is to be decreased at a substantial rate so as to decrease the stress occurring due to high temperature creep. This would be helping in preventing the softening of the materials as well.
Strengths |
Weaknesses |
Mitigate the uncertainties and minimize the business risks Estimate of oxide scale growth into the super heater Identification of product mix and product market |
Difficult to manage scale exfoliation Weak relationship to be existed for range of oxidation Not allowed to measure ultimate shear strength of the interface |
Opportunities |
Threats |
Management of the wastes which are generated by the hot metal and steel Develop phase field models for describing the oxide scale growth |
Surface properties are affected by growth of the oxide scale Eliminate of potential administration by 100% of the nitrous oxide |
References
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