Method for warming-up a steam turbine
View Patent ↗The invention relates to a method for heating a steam turbine comprising a high-pressure turbine section and a medium-pressure turbine section and/or a low-pressure turbine section. Said method is characterized by the essential aspect that the high-pressure turbine section is impinged upon by steam having relatively great conductivity while the medium-pressure turbine section or the low-pressure turbine section remains closed during said impingement following a cold start. As soon as the conductivity drops below a certain value, the medium-pressure turbine section or the low-pressure turbine section is also impinged upon by steam.
1. A method for warming-up a steam turbine having a high-pressure turbine section, an intermediate-pressure turbine section and a rotor, comprising:
fluidically connecting the high-pressure turbine section on the inlet side via a live steam line to a steam generator;
arranging a steam valve between the high-pressure turbine section and the intermediate-pressure turbine section;
warming up the high-pressure turbine section, the live steam line and the steam generator simultaneously by:
increasing an outlet side back-pressure of the high-pressure turbine section,
opening a valve, arranged upstream of an inlet of the high-pressure turbine section, as soon as the conductivity of the steam which is produced in the steam generator falls below a tolerance value,
closing the steam valve arranged between the high-pressure turbine section and the intermediate-pressure turbine section,
governing a rotational speed of the rotor of the high-pressure turbine section at a rotational speed below the nominal speed,
reducing the back-pressure as soon as the conductivity of the steam produced in the steam generator falls below a limiting value, wherein the limiting value is lower than the tolerance value, and
warming-up the intermediate-pressure turbine section with the steam produced by the steam generator and the conductivity of which is below the limiting value, by opening the steam valve arranged between the high-pressure turbine section and the intermediate-pressure turbine section.
2. The method as claimed in claim 1 , wherein the tolerance value is between 0.5 and 5 μsiemens/cm.
3. The method as claimed in claim 1 , wherein the value of the rotational speed of the rotor is below a turbine rotor nominal speed.
4. The method as claimed in claim 3 , wherein the value of the rotational speed of the rotor is between 100 and 1000 RPM.
5. The method as claimed in claim 4 , wherein the limiting value is between 0.2 and 0.5 μsiemens/cm.
6. A method for warming-up a steam turbine having a high-pressure turbine section, a low-pressure turbine section and a rotor, comprising:
fluidically connecting the high-pressure turbine section on the inlet side via a live steam line to a steam generator;
arranging a steam valve between the high-pressure turbine section and the low-pressure turbine section;
warming up the high-pressure turbine section, the live steam line and the steam generator simultaneously by:
increasing an outlet side back-pressure of the high-pressure turbine section,
opening a valve, arranged upstream of an inlet of the high-pressure turbine section, as soon as the conductivity of the steam which is produced in the steam generator falls below a tolerance value,
closing the steam valve arranged between the high-pressure turbine section and the low-pressure turbine section,
governing a rotational speed of the rotor of the high-pressure turbine section at a rotational speed below the nominal speed,
reducing the back-pressure as soon as the conductivity of the steam produced in the steam generator falls below a limiting value, wherein the limiting value is lower than the tolerance value, and
warming-up the low pressure turbine section with the steam produced by the steam generator and the conductivity of which is below the limiting value, by opening the steam valve arranged between the high-pressure turbine section and the low-pressure turbine section.
7. The method as claimed in claim 6 , wherein the tolerance value is between 0.5 and 5 μsiemens/cm.
8. The method as claimed in claim 6 , wherein the value of the rotational speed of the rotor is below a turbine rotor nominal speed.
9. The method as claimed in claim 8 , wherein the value of the rotational speed of the rotor is between 100 and 1000 RPM.
10. The method as claimed in claim 9 , wherein the limiting value is between 0.2 and 0.5 μsiemens/cm.