Nonlinear automatic undisturbed single valve/sequence valve switching method for steam turbine
A technology of bumpless switching and steam turbine, which is applied in the direction of machines/engines, mechanical equipment, engine components, etc., and can solve problems such as load disturbance and large unit power
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specific Embodiment approach 1
[0050] Specific embodiment one: the method of the present embodiment comprises the following steps: Step 1, definition χ is the integrated flow command, u is the valve opening degree, n is the valve number, then two kinds of steam distribution modes can be expressed as:
[0051] The steam distribution rule of the sequence valve is:
[0052] u 1 = f 1 (χ)
[0053] u 2 = f 2 (χ)
[0054] …
[0055] u n =f n (χ)
[0056] The steam distribution law of single valve is:
[0057] u ‾ = f ‾ ( χ )
[0058] like image 3 Two steam distribution laws are shown with four regulating valves. In the case of single valve, the four valves act in unison, and in the case of sequence valve, each valve is opened in sequence.
[0059] Assume that at load point χ 0 switch from a single valve to a sequence valve, from t 1 time starts, t 2 The moment swi...
specific Embodiment approach 2
[0091] Specific implementation mode two: a nonlinear automatic non-disturbance switching method of a steam turbine single valve or multiple valves in this embodiment, the experimental method determines the switching method: first adjust t′ The valve position at time u i (i=1,2,...,n and i≠k), then adjust the valve position u k , until the actual flow rate q(t′)=χ 0 , the power remains unchanged at this time, that is, determine the first point on the nonlinear law, repeat the above operations, you can get a series of points on the nonlinear switching law, and then you can get a continuous nonlinear switching law Yes, this step does not require theoretical calculations, the operation is simple, and the accuracy basically meets the needs of actual operation. However, there is randomness in the experimental results in the experimental process. Other steps are the same as in the first embodiment.
specific Embodiment approach 3
[0092] Specific implementation mode three: a nonlinear automatic non-disturbance switching method for a steam turbine single valve or multiple valves in this embodiment, which is characterized in that the switching method is determined by theoretical calculation: first determine the valve position u at time t′ i (i=1,2,...,n and i≠k), calculate and maintain the actual flow q(t')=χ 0 Required valve position u k , that is, determine the first point on the nonlinear law, repeat the above calculations, you can get a series of points on the nonlinear switching law, and after fitting, you can get a continuous nonlinear switching law. This step requires accurate Theoretical calculations, and the accuracy of the data required for calculations must be ensured to meet the needs of actual operation. But this step does not require experimentation. Other steps are the same as in the first embodiment.
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