WO2021235938A1 - An electrode boiler - Google Patents

An electrode boiler Download PDF

Info

Publication number
WO2021235938A1
WO2021235938A1 PCT/NO2020/050135 NO2020050135W WO2021235938A1 WO 2021235938 A1 WO2021235938 A1 WO 2021235938A1 NO 2020050135 W NO2020050135 W NO 2020050135W WO 2021235938 A1 WO2021235938 A1 WO 2021235938A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
electrode
container
boiler
level
Prior art date
Application number
PCT/NO2020/050135
Other languages
French (fr)
Inventor
Fred Strømland
Original Assignee
Parat Halvorsen As
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Parat Halvorsen As filed Critical Parat Halvorsen As
Priority to DK20744162.7T priority Critical patent/DK4153910T3/en
Priority to CN202080101159.6A priority patent/CN115667797A/en
Priority to PCT/NO2020/050135 priority patent/WO2021235938A1/en
Priority to EP20744162.7A priority patent/EP4153910B1/en
Priority to FIEP20744162.7T priority patent/FI4153910T3/en
Publication of WO2021235938A1 publication Critical patent/WO2021235938A1/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22BMETHODS OF STEAM GENERATION; STEAM BOILERS
    • F22B1/00Methods of steam generation characterised by form of heating method
    • F22B1/28Methods of steam generation characterised by form of heating method in boilers heated electrically
    • F22B1/30Electrode boilers
    • F22B1/303Electrode boilers with means for injecting or spraying water against electrodes or with means for water circulation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22BMETHODS OF STEAM GENERATION; STEAM BOILERS
    • F22B1/00Methods of steam generation characterised by form of heating method
    • F22B1/28Methods of steam generation characterised by form of heating method in boilers heated electrically
    • F22B1/284Methods of steam generation characterised by form of heating method in boilers heated electrically with water in reservoirs
    • F22B1/285Methods of steam generation characterised by form of heating method in boilers heated electrically with water in reservoirs the water being fed by a pump to the reservoirs

Definitions

  • the present invention relates to an electrode boiler for providing hot water or steam and a method for operating the electrode boiler.
  • An electrode boiler includes a number of electrodes, one for each phase, immersed in a water bath. Heat is generated by passing an AC electrical current between the electrodes or to a counter electrode using the water as conductor.
  • the boilers are designed for low voltage ((230 - 690 V) or high voltage (1 - 36 kV) supply and with heat ratings from about 0 - 100 MW. Electrode boilers have many advantages, such as an efficiency approaching 100%, easy control of output range and a fast startup.
  • the output of the boiler may be controlled with the water level covering more or less of the electrodes.
  • the output may be shut off either with switches or by lower- ing the water level out of reach of the electrodes.
  • Each method has its merits.
  • the switches are subject to wear as they have to handle large currents.
  • the boiler may be shut off avoiding switches alto gether.
  • an arc may be created. This arc may reach another electrode directly or via metal parts of the boiler. Such a situation may lead to a full short circuit.
  • the inventive electrode boiler includes a container holding water, a number of elec trodes, each electrode including a first upper end connected to a source of electric power and a second lower end submerged in the water, and means for controlling the water level in said container.
  • Said means include a circulation pump supplying water to the container through a supply line, and a throttle valve.
  • the supply line is connected to an arc stopper located beneath the second lower end of each electrode, the arc stopper comprising a receptacle made of an electrically in sulating material, wherein an upper rim of said side wall is positioned level with or just above the second lower end of the associated electrode.
  • the electrode boiler is operated using he method according to claim 2 and 3.
  • the presence of the insulating arc stopper will effectively prevent the for mation of arcs.
  • Fig. 1 is a general overview of a boiler installation showing its main components
  • Fig. 2 shows a detail of a boiler according to the present invention. Detailed description
  • the invention relates to an electrode boiler, and the embodiment of the invention described in the following paragraphs is intended to supply hot water.
  • the boiler 1 is connected in a closed water loop to a circulation pump 2 and a heat exchanger 3.
  • the pump circulates water continuously through the boiler, in which it is heated, the produced heat being removed in the heat exchanger 3 whereupon the now colder water is sent back to the boiler for reheating.
  • the heat exchanger will be omitted and the steam delivered directly to a pipe network.
  • the boiler includes a boiler drum 4. Inside the drum 4 there is mounted an inner container 5 on electrically insulated brackets. A number of electrodes 7 are sus- pended from the roof of the drum, in conductive rods passing through insulated bushings. The rods are connected to a source of AC electric power by means of conductors 10.
  • the boiler system includes a 3-way throttle valve 6 controlling the flow in the closed water loop including the circulation pump 2 and the supply line 16 supplying water to the container 5, a level safety gauge 8 and level control system 9, a pressure safety valve 11, a throttle valve 14 for draining water from the inner container 5, a processed feed water inlet 12 and a blow down outlet line 13.
  • the inner container 5 holds water at a predefined level.
  • the water level is con- trolled by the throttle valve 14, from readings from a level gauge.
  • the production from the boiler may be controlled by changing the water level.
  • the water is sup plied through the supply line 16 which branches out into a number of small tubes entering the bottom of the inner container 5.
  • Fig. 2 is a schematic illustration of the invention.
  • Each arc stopper comprises a receptacle of an electrically insulating material, such a ceramic material (e.g. porcelain), glass or PFTE.
  • the arch stoppers may be positioned at the bottom of the container 5.
  • the arc stoppers are mounted to ensure that the top rim of the receptacle is positioned on level with, or preferably a bit above the lower end of the associated electrode 7.
  • In the bottom of each arc stopper there is an opening connecting the receptacle to the water sup ply line 16.
  • the water in the inner container 5 is drained via the throttle valve 14.
  • the water outside the arc stopper 15 will drain away com pletely, while water inside the arc stopper will remain at level with the upper rim of the receptacle and maintain in contact with the electrode 7.
  • the circulation pump 2 supplying water through the supply line 16 is stopped, whereupon the wa ter level will drop also inside the arc stoppers 15.
  • the water will lose contact with the electrode 7. This is the moment when an arc could occur.
  • the presence of the arc stopper means that the arc will have to climb an insulat- ing barrier to reach another electrode or the metal of the surrounding container 4. This will effectively prevent the formation of an arc.

Landscapes

  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Water Treatment By Electricity Or Magnetism (AREA)
  • Discharge Heating (AREA)
  • Measurement Of Levels Of Liquids Or Fluent Solid Materials (AREA)

Abstract

The invention relates to an electrode boiler including a container (5) holding water, a number of electrodes (7), each electrode including a first upper end connected to a source of electric power and a second lower end submerged in the water, and means for controlling the water level in said container. Said means include a circulation pump (2) supplying water to the container (5) through a supply line (16) and a throttle valve (14). Additionally, the boiler includes an arc stopper (15) located beneath the second lower end of each electrode (7), the arc stopper comprising a receptacle made of an electrically insulating material, wherein an upper rim of said receptacle is positioned level with or just above the second lower end of the associated electrode (7).

Description

AN ELECTRODE BOILER
Field of the invention
The present invention relates to an electrode boiler for providing hot water or steam and a method for operating the electrode boiler. Background
An electrode boiler includes a number of electrodes, one for each phase, immersed in a water bath. Heat is generated by passing an AC electrical current between the electrodes or to a counter electrode using the water as conductor. The boilers are designed for low voltage ((230 - 690 V) or high voltage (1 - 36 kV) supply and with heat ratings from about 0 - 100 MW. Electrode boilers have many advantages, such as an efficiency approaching 100%, easy control of output range and a fast startup.
The output of the boiler may be controlled with the water level covering more or less of the electrodes. The output may be shut off either with switches or by lower- ing the water level out of reach of the electrodes. Each method has its merits. The switches are subject to wear as they have to handle large currents. By lowering the water level below the electrodes, the boiler may be shut off avoiding switches alto gether. However, when water is drained and gets below the electrode tips, an arc may be created. This arc may reach another electrode directly or via metal parts of the boiler. Such a situation may lead to a full short circuit.
From GB 472,479 there is known a steam producing electrode boiler wherein the bottom of the electrodes terminate in an "arc deflecting pot". In case the level of water in the boiler drum should drop below the electrodes, the pot secures that the tips of the electrodes is still surrounded by water preventing the current from being broken causing the formation of arcs.
Summary of the invention
It is an object of the present invention to provide an electrode boiler that may be shut off by lowering the water level without the risk of creating an arc and thereby short circuit the power supply. This is achieved in a boiler as defined in the appended claim 1. In particular, the inventive electrode boiler includes a container holding water, a number of elec trodes, each electrode including a first upper end connected to a source of electric power and a second lower end submerged in the water, and means for controlling the water level in said container. Said means include a circulation pump supplying water to the container through a supply line, and a throttle valve. Furthermore, the supply line is connected to an arc stopper located beneath the second lower end of each electrode, the arc stopper comprising a receptacle made of an electrically in sulating material, wherein an upper rim of said side wall is positioned level with or just above the second lower end of the associated electrode.
The electrode boiler is operated using he method according to claim 2 and 3. In particular, when shutting off the boiler by dropping the water level inside the con tainer, the presence of the insulating arc stopper will effectively prevent the for mation of arcs. Brief description of the drawings
The advantages of the invention will become apparent by reading the following de tailed description in reference to the appended drawings, in which
Fig. 1 is a general overview of a boiler installation showing its main components,
Fig. 2 shows a detail of a boiler according to the present invention. Detailed description
The invention relates to an electrode boiler, and the embodiment of the invention described in the following paragraphs is intended to supply hot water. As shown in Fig. 1, the boiler 1 is connected in a closed water loop to a circulation pump 2 and a heat exchanger 3. The pump circulates water continuously through the boiler, in which it is heated, the produced heat being removed in the heat exchanger 3 whereupon the now colder water is sent back to the boiler for reheating. In a corre sponding embodiment for steam generation, the heat exchanger will be omitted and the steam delivered directly to a pipe network.
The boiler includes a boiler drum 4. Inside the drum 4 there is mounted an inner container 5 on electrically insulated brackets. A number of electrodes 7 are sus- pended from the roof of the drum, in conductive rods passing through insulated bushings. The rods are connected to a source of AC electric power by means of conductors 10.
Furthermore, the boiler system includes a 3-way throttle valve 6 controlling the flow in the closed water loop including the circulation pump 2 and the supply line 16 supplying water to the container 5, a level safety gauge 8 and level control system 9, a pressure safety valve 11, a throttle valve 14 for draining water from the inner container 5, a processed feed water inlet 12 and a blow down outlet line 13.
The inner container 5 holds water at a predefined level. The water level is con- trolled by the throttle valve 14, from readings from a level gauge. The production from the boiler may be controlled by changing the water level. The water is sup plied through the supply line 16 which branches out into a number of small tubes entering the bottom of the inner container 5.
Fig. 2 is a schematic illustration of the invention. Below each electrode 7 there are mounted arc stoppers 15. Each arc stopper comprises a receptacle of an electrically insulating material, such a ceramic material (e.g. porcelain), glass or PFTE. The arch stoppers may be positioned at the bottom of the container 5. The arc stoppers are mounted to ensure that the top rim of the receptacle is positioned on level with, or preferably a bit above the lower end of the associated electrode 7. In the bottom of each arc stopper there is an opening connecting the receptacle to the water sup ply line 16.
When it is desired to stop production, the water in the inner container 5 is drained via the throttle valve 14. The water outside the arc stopper 15 will drain away com pletely, while water inside the arc stopper will remain at level with the upper rim of the receptacle and maintain in contact with the electrode 7. Then, the circulation pump 2 supplying water through the supply line 16 is stopped, whereupon the wa ter level will drop also inside the arc stoppers 15. At some point the water will lose contact with the electrode 7. This is the moment when an arc could occur. Howev er, the presence of the arc stopper means that the arc will have to climb an insulat- ing barrier to reach another electrode or the metal of the surrounding container 4. This will effectively prevent the formation of an arc.
T h S m

Claims

C l a i m s
1. An electrode boiler including a container (5) holding water, a number of electrodes (7), each electrode including a first upper end connected to a source of electric power and a second lower end submerged in the water, and means for controlling the water level in said container (5), wherein said means includes a circulation pump (2) for supplying water to said container (5) through a supply line (16) and a throttle valve (14), c h a r a c t e r i z e d i n that the supply line (16) is connected to an arc stopper (15) located beneath the second lower end of each electrode (7), the arc stopper (15) comprising a receptacle made of an electrically in sulating material, wherein an upper rim of said receptacle is positioned level with or just above the second lower end of the associated electrode (7).
2. A method for operating an electrode boiler according to claim 1, wherein production of the electrode boiler is started and stopped by controlling the level of water outside and inside the arc stopper (15).
3. A method according to claim 2, wherein production is stopped by first drain ing the water from said container (5) and then draining the water from the arc stopper (15).
PCT/NO2020/050135 2020-05-22 2020-05-22 An electrode boiler WO2021235938A1 (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
DK20744162.7T DK4153910T3 (en) 2020-05-22 2020-05-22 ELECTRODE BOILER
CN202080101159.6A CN115667797A (en) 2020-05-22 2020-05-22 Electrode boiler
PCT/NO2020/050135 WO2021235938A1 (en) 2020-05-22 2020-05-22 An electrode boiler
EP20744162.7A EP4153910B1 (en) 2020-05-22 2020-05-22 An electrode boiler
FIEP20744162.7T FI4153910T3 (en) 2020-05-22 2020-05-22 An electrode boiler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/NO2020/050135 WO2021235938A1 (en) 2020-05-22 2020-05-22 An electrode boiler

Publications (1)

Publication Number Publication Date
WO2021235938A1 true WO2021235938A1 (en) 2021-11-25

Family

ID=71741855

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/NO2020/050135 WO2021235938A1 (en) 2020-05-22 2020-05-22 An electrode boiler

Country Status (5)

Country Link
EP (1) EP4153910B1 (en)
CN (1) CN115667797A (en)
DK (1) DK4153910T3 (en)
FI (1) FI4153910T3 (en)
WO (1) WO2021235938A1 (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB193405A (en) * 1922-02-15 1923-10-18 British Thomson Houston Co Ltd Improvements in and relating to vapour or steam generators or boilers
GB472479A (en) 1936-03-20 1937-09-20 Sydney Cyril Harling Improvements in or relating to electrode boilers
US4418269A (en) * 1980-03-24 1983-11-29 Eaton Williams Raymond H Multi-electrode boiler
FR2604846A1 (en) * 1986-10-03 1988-04-08 Electricite De France Direct-conduction electrothermal generator
US20150316253A1 (en) * 2012-12-05 2015-11-05 No Eul Kim Electrode boiler with electrodes unit

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB193405A (en) * 1922-02-15 1923-10-18 British Thomson Houston Co Ltd Improvements in and relating to vapour or steam generators or boilers
GB472479A (en) 1936-03-20 1937-09-20 Sydney Cyril Harling Improvements in or relating to electrode boilers
US4418269A (en) * 1980-03-24 1983-11-29 Eaton Williams Raymond H Multi-electrode boiler
FR2604846A1 (en) * 1986-10-03 1988-04-08 Electricite De France Direct-conduction electrothermal generator
US20150316253A1 (en) * 2012-12-05 2015-11-05 No Eul Kim Electrode boiler with electrodes unit

Also Published As

Publication number Publication date
EP4153910B1 (en) 2023-11-22
CN115667797A (en) 2023-01-31
DK4153910T3 (en) 2024-02-26
EP4153910A1 (en) 2023-03-29
FI4153910T3 (en) 2024-02-22

Similar Documents

Publication Publication Date Title
EP2401549B1 (en) An electrode boiler
CN104822988B (en) There is the electrode boiler of electrode unit
CN104066679A (en) Polycrystalline silicon rod manufacturing method
NO20190653A1 (en) An electrode boiler
EP4153910B1 (en) An electrode boiler
KR20120008192U (en) An automatically defoaming food cooking device
KR20150051424A (en) Portable immersion heaters with against overheating function
CN107062185A (en) A kind of liquid level PCU Power Conditioning Unit for high-power grill pan stove heat electrode
CN205897084U (en) Electric heat transition system with rivers control current
CN106195977A (en) A kind of electric heating converting system of flow cavitation result electric current
US1462350A (en) Electric steam boiler
CN104066678A (en) Polycrystalline silicon rod manufacturing method
KR100913918B1 (en) A electrode type humidifier
KR20140094877A (en) Termination Structure of Superconducting Device
US3138696A (en) Eaton
US982587A (en) Apparatus for producing and utilizing electrical effluvia.
CN111536495A (en) Immersed electrode steam generator
RU2038543C1 (en) Electrode hot-water boiler
US2000413A (en) Electric cooking stove and the like
CN206904940U (en) A kind of liquid level PCU Power Conditioning Unit for high-power grill pan stove heat electrode
RU2355953C2 (en) Method and device to obtain heat energy from electric energy
JP5321042B2 (en) Electric boiler
CN110319427A (en) The control method and pipeline type directly-heated type steam generation facility of steam production process
CN111156490B (en) Low-voltage electrode boiler
US1191300A (en) Automatic electrolytic cell.

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 20744162

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

ENP Entry into the national phase

Ref document number: 2020744162

Country of ref document: EP

Effective date: 20221221