PREHEATING OF UNTREATED WATER IN POWER PLANTS
20180016947 · 2018-01-18
Assignee
Inventors
Cpc classification
F22D1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F22D7/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F22D7/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01K7/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01K17/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A method for preheating untreated water in a power plant having a water/steam circuit, the power plant has a steam producer, a steam turbine, and steam lines, of which at least some connect the steam producer to the steam turbine, wherein untreated water for producing deionized water is heated by means of wastewater from the water/steam circuit and the wastewater is added to the untreated water in order to heat the untreated water. A power plant is adapted for preheating untreated water by the method.
Claims
1.-11. (canceled)
12. A method for preheating untreated water in a power plant having a water/steam circuit, the power plant comprising a steam generator, a steam turbine and steam lines, of which at least some connect the steam generator to the steam turbine, the method comprising: heating untreated water for production of deionized water by waste water from the water/steam circuit, and admixing the waste water with the untreated water for the purpose of heating the untreated water.
13. The method as claimed in claim 12, wherein the waste water is a blowdown water from the steam generator.
14. The method as claimed in claim 12, wherein the waste water is a condensate from the steam lines.
15. The method as claimed in claim 12, wherein the waste water is distributed in the untreated water.
16. The method as claimed in claim 12, wherein an untreated water temperature is controlled, by closed-loop control, by alteration of a blowdown water quantity.
17. The method as claimed in claim 16, wherein on the basis of a heat demand for the preheating, more water is blown down than is required on the basis of a water chemistry requirement.
18. A power plant having a water/steam circuit, the power plant comprising: a steam generator, a steam turbine and steam lines, which at least in part connect the steam generator to the steam turbine, an untreated-water mixer and a vessel for waste water from the water/steam circuit, wherein the untreated-water mixer and the vessel for waste water from the water/steam circuit are fluidically connected to each other, an apparatus in the untreated-water mixer for distributing the waste water in the untreated water, and a closed-loop controller for closed-loop control of the untreated water temperature, wherein the closed-loop controller for the untreated water temperature comprises an open-loop control of a blowdown water quantity.
19. The power plant as claimed in claim 18, wherein the vessel for waste water from the water/steam circuit is connected to the steam generator.
20. The power plant as claimed in claim 18, wherein the vessel for waste water from the water/steam circuit is connected to the steam lines.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The invention is explained exemplarily in greater detail on the basis of the drawings. There are shown schematically, and not true to scale:
[0020]
[0021]
DETAILED DESCRIPTION OF INVENTION
[0022]
[0023] The steam turbine installation 12 comprises a steam turbine 4 having a coupled generator 19, and, in a water/steam circuit 2, a condenser 20 downstream from the steam turbine 4, and a waste-heat steam generator 3. In
[0024] The waste-heat steam generator 3 is also represented in a highly simplified form. For the purpose of supplying working fluid, expanded in the gas turbine 13, into the waste-heat steam generator 3, there is a waste-gas line 22 connected to an input 23 of the waste-heat steam generator 3. The expanded working fluid from the gas turbine 13 leaves the waste-heat steam generator 3, via the output 24 thereof, in the direction of a flue, not represented in greater detail.
[0025] A feed-water vessel/deaerator 25 can be fed with condensate from the condenser 20, via a condensate line 26, connected into which there is a condensate pump unit 27. The arrangement of the feed-water vessel/deaerator 25 in the water/steam circuit 2 of
[0026] Shown exemplarily on the steam turbine 4 is a steam extraction 34 for a steam supply system. In principle, steam extractions may be provided at various points on the steam turbine, but also in the region of the waste-heat steam generator 3. Exemplarily, a condensate return 35 goes into the condensate line 26.
[0027] The power plant 1 additionally comprises an untreated-water mixer 6, and a vessel 7 for waste water from the water/steam circuit 2, which, according to the invention, are fluidically connected to each other. An apparatus 8 for distributing the waste water in the untreated water is provided in the untreated-water mixer 6.
[0028] The vessel 7 for waste water from the water/steam circuit 2 is connected both to the steam generator 3 and there, in particular, to the steam drum 30, and to the steam lines 5.
[0029] Provided for the purpose of closed-loop control of the untreated water temperature there is a closed-loop controller 9 that, on the one hand, senses a current untreated water temperature by means of a temperature sensor 36, and on the other hand, by means of the pump 37 connected into the water line 41 between the vessel 7 and the untreated-water mixer 6, conveys an appropriate quantity of waste water from the vessel 7 into the untreated-water mixer 6. If the heat demand for the preheating of the untreated water in the untreated-water mixer 6 exceeds that which can be achieved by the quantity of water present in the vessel 7, the blown-off water quantity is increased, by means of a corresponding open-loop control 10, even if this were not necessary on the basis of a water chemistry requirement.
[0030] Finally,
[0031]