An electronic instruction manual and checklist for steam boiler start-up

2004 ◽  
Author(s):  
Satoru Tokuda ◽  
Esa M. Rantanen ◽  
Jessica C. M. Gonzalez de Sather
Author(s):  
Satoru Tokuda ◽  
Esa M. Rantanen ◽  
Jessica C. M. Gonzalez de Sather

2014 ◽  
Vol 875-877 ◽  
pp. 1176-1182 ◽  
Author(s):  
Bohdan Węglowski ◽  
Paweł Ocłoń ◽  
Andrzej Majcher

The calculations of stresses acting on the wall of boiler drum during the start-up process are presented in this paper. On the basis of the temperature measurements, which were carried out to determine the temperature distribution along the circumference of the outer wall of boiler drum, the temperature at the inner wall surface is determined using the inverse methods. The computations are carried out for the whole operation cycle of the power plant. Therefore, the pressure and temperatures are updated at consecutive time steps. These parameters allow determining the maximum values of circumferential, axial and Von Misses stresses during the operation cycle of steam boiler.


2018 ◽  
Vol 240 ◽  
pp. 05007
Author(s):  
Piotr Dzierwa

The paper shows the method of determining the start-up curves of a steam boiler, which enables its faster start-up. Faster temperature changes cause thermal stress, especially in thick-walled boiler elements. Critical elements that limit the rate of change of working fluid units include drums, outlet chamber, injection chamber, fresh steam superheater of steam coolers, tees and valve casings, rotor and turbine casing. The walls of these elements have the thickest walls due to the high pressure values occurring in them during operation. Allowable changes in temperature and pressure during start-up and shut-down can be determined by the European Standard EN 12952-3. The article shows how the start-up curves of a steam boiler can be determined using the European Standard and the method proposed by the author. Calculation results show that the starting time of the analyzed block can be significantly shortened.


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