IP Library Granted Patent US 11,885,487
Granted Patent B2
US 11,885,487 · App. 17/781,019 · Granted Jan 30, 2024

Hot evaporator refilling

Inventor: Walter Adriaan Kramer (Rotterdam, NL)
Assignee: NEM ENERGY B.V.
F22B1/1815F22D1/003
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Quick Facts
Patent No.
US 11,885,487
App. No.
17/781,019
Granted
Jan 30, 2024
Kind
B2
Abstract

A heat recovery steam generator includes an exhaust-gas channel with an economizer heating surface and evaporator heating surface. The heating surfaces are connected to one another such that, on a feed water side, the economizer heating surface is upstream of the evaporator heating surface. A water/steam separator is arranged on the feed water side downstream of the evaporator heating surface. An excess pipe length system is outside the exhaust-gas channel and is designed in such a way that, after a complete filling of the economizer heating surface, feed water, in a riser of the excess pipe length system, reaches an overflow and thus passes into the evaporator heating surface via a down pipe. A vent line branches off the overflow of the excess pipe length system. A first filling line and a first valve are arranged between an economizer filling outlet and the evaporator outlet of the evaporator heating surface.

Claims (24)

1. A heat recovery steam generator of vertical design, comprising:

an exhaust-gas channel in which at least one economizer heating surface with economizer inlet and economizer outlet and at least one evaporator heating surface with evaporator inlet and evaporator outlet are arranged,

wherein the at least one economizer heating surface and the at least one evaporator heating surface are connected to one another in such a way that, on a feed water side, the at least one economizer heating surface is arranged upstream of the at least one evaporator heating surface, such that the economizer outlet is in fluid connection with the evaporator inlet,

wherein a water/steam separator is arranged on the feed water side downstream of the at least one evaporator heating surface,

wherein an excess pipe length system is arranged outside the exhaust-gas channel and on the feed water side between the at least one economizer heating surface and the at least one evaporator heating surface,

wherein the excess pipe length system is designed in such a way that, after a complete filling of the at least one economizer heating surface, feed water, in a riser of the excess pipe length system, reaches an overflow and thus passes into the at least one evaporator heating surface via a down pipe,

wherein a vent line with a vent valve branches off the overflow of the excess pipe length system,

wherein a first filling line and a first valve are arranged between an economizer filling outlet, arranged downstream of the economizer inlet of the at least one economizer heating surface, and the evaporator outlet of the at least one evaporator heating surface,

wherein the first filling line leads to the evaporator outlet of a last evaporator heating surface and the first valve is arranged in the first filling line, and

wherein a connecting line interconnects the evaporator outlet of the last evaporator heating surface and the water/steam separator, and the first filling line leads to the connecting line and the first valve is arranged in the first filling line.

2. The heat recovery steam generator according to claim 1 ,

wherein the first valve and at least part of the first filling line are arranged outside the exhaust-gas channel.

3. The heat recovery steam generator according to claim 1 ,

wherein the first filling line branches off from, on a feed water side, a second to last economizer heating surface.

4. The heat recovery steam generator according to claim 1 ,

wherein the first filling line branches off from, on a feed water side, a last economizer heating surface.

5. The heat recovery steam generator according to claim 1 ,

wherein the vent line is arranged between the overflow of the excess pipe length system and the water/steam separator.

6. The heat recovery steam generator, as claimed in claim 1 ,

wherein a second filling line is connected to the connecting line and a second valve is arranged in the second filling line.

7. The heat recovery steam generator, as claimed in claim 6 ,

wherein the first filling line is connected to the second filling line at a connection point downstream of the second valve, and the first valve is arranged downstream of the connection point in the second filling line.

8. A method for refilling an evaporator heating surface of a heat recovery steam generator of vertical design, the heat recovery steam generator comprising an exhaust-gas channel in which at least one economizer heating surface with economizer inlet and economizer outlet and at least one evaporator heating surface with evaporator inlet and evaporator outlet are arranged, wherein the at least one economizer heating surface and the at least one evaporator heating surface are connected to one another in such a way that, on a feed water side, the at least one economizer heating surface is arranged upstream of the at least one evaporator heating surface, such that the economizer outlet is in fluid connection with the evaporator inlet, wherein a water/steam separator is arranged on the feed water side downstream of the at least one evaporator heating surface, wherein an excess pipe length system is arranged outside the exhaust-gas channel and on the feed water side between the at least one economizer heating surface and the at least one evaporator heating surface, wherein the excess pipe length system is designed in such a way that, after a complete filling of the at least one economizer heating surface, feed water, in a riser of the excess pipe length system, reaches an overflow and thus passes into the at least one evaporator heating surface via a down pipe, wherein a vent line with a vent valve branches off the overflow of the excess pipe length system, wherein a first filling line and a first valve are arranged between an economizer filling outlet, arranged downstream of the economizer inlet of the at least one economizer heating surface, and the evaporator outlet of the at least one evaporator heating surface, wherein the first filling line leads to the evaporator outlet of a last evaporator heating surface and the first valve is arranged in the first filling line, and wherein a connecting line interconnects the evaporator outlet of the last evaporator heating surface and the water/steam separator, and the first filling line leads to the connecting line and the first valve is arranged in the first filling line, the method comprising:

supplying water from the at least one economizer heating surface to the evaporator heating surface from the evaporator outlet.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2023
From: SIEMENS ENERGY B.V.
To: NEM ENERGY B.V.
Reel/Frame 062899/0776 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2022
From: KRAMER, WALTER ADRIAAN
To: SIEMENS ENERGY B.V.
Reel/Frame 060048/0152 →
Priority Claims (1)
EP 19215308 · Dec 11, 2019 · regional
Continuity (1)
Related Publication 20220412548A1 · Dec 29, 2022