DK170708B1 - Process for preheating oil for a burner with atomizer and device for carrying out the process - Google Patents

Process for preheating oil for a burner with atomizer and device for carrying out the process Download PDF

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Publication number
DK170708B1
DK170708B1 DK063394A DK63394A DK170708B1 DK 170708 B1 DK170708 B1 DK 170708B1 DK 063394 A DK063394 A DK 063394A DK 63394 A DK63394 A DK 63394A DK 170708 B1 DK170708 B1 DK 170708B1
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Denmark
Prior art keywords
preheater
valve
pump
line
over
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DK063394A
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Danish (da)
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DK63394A (en
Inventor
Poul Kirkelund
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Danfoss As
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23DBURNERS
    • F23D11/00Burners using a direct spraying action of liquid droplets or vaporised liquid into the combustion space
    • F23D11/36Details, e.g. burner cooling means, noise reduction means
    • F23D11/44Preheating devices; Vaporising devices
    • F23D11/441Vaporising devices incorporated with burners
    • F23D11/448Vaporising devices incorporated with burners heated by electrical means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23NREGULATING OR CONTROLLING COMBUSTION
    • F23N1/00Regulating fuel supply
    • F23N1/007Regulating fuel supply using mechanical means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23NREGULATING OR CONTROLLING COMBUSTION
    • F23N2221/00Pretreatment or prehandling
    • F23N2221/04Preheating liquid fuel
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23NREGULATING OR CONTROLLING COMBUSTION
    • F23N2235/00Valves, nozzles or pumps
    • F23N2235/26Fuel nozzles
    • F23N2235/28Spray fuel nozzles
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23NREGULATING OR CONTROLLING COMBUSTION
    • F23N2235/00Valves, nozzles or pumps
    • F23N2235/30Pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23NREGULATING OR CONTROLLING COMBUSTION
    • F23N2239/00Fuels
    • F23N2239/06Liquid fuels

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Feeding And Controlling Fuel (AREA)

Description

DK 170708 B1DK 170708 B1

Opfindelsen angår en fremgangsmåde til forvarmning af olie for en oliebrænder med forstøver, ved hvilken olie, der leveres fra en pumpe under en før brænderdriften liggende forvarmningstid, tilføres over en forvarmer forbi forstø-5 veren til pumpens sugeside, og en anordning til gennemførelse af fremgangsmåden som angivet i den indledende del af krav 5.The invention relates to a method for preheating oil for an oil burner with atomizer, in which oil supplied from a pump during a pre-burner operation preheating time is supplied over a preheater past the atomizer to the suction side of the pump and a device for carrying out the method. as set forth in the preamble of claim 5.

Ved en kendt fremgangsmåde og en anordning af denne art 10 (US-PS 4 392 810) pumpes den af pumpen leverede olie under forvarmningstiden gennem forvarmeren og føres over en tilbageløbsledning og en deri anbragt magnetventil tilbage til pumpens sugeside. Forbindelsen fra forvarmeren til en dyse, der danner forstøveren, er derved permanent åben, 15 således at kun pumpens sugevirkning forhindrer, at der i en for-ventilationsfase, i hvilken brænderrummet før brænderens drift ventileres ved hjælp af den sædvanligvis anbragte blæser, drypper olie ud af dysen. Den manglende afspærring af dysen bevirker en langsom trykopbygning i 20 dysen, således at dysens forstøvning er mangelfuld, indtil der er opbygget et tilstrækkeligt tryk.In a known method and device of this kind 10 (US-PS 4 392 810), the oil supplied by the pump is pumped through the preheater during the preheating time and is fed back over a reflux line and a solenoid valve therein to the suction side of the pump. The connection from the preheater to a nozzle forming the nebulizer is thereby permanently open, so that only the suction effect of the pump prevents, in a pre-ventilation phase, in which the burner space before the burner operation is vented by means of the usually arranged blower, of the nozzle. The failure to shut down the nozzle causes a slow build-up of pressure in the nozzle, so that the spray nozzle is defective until sufficient pressure is built up.

Olieforvarmeren indeholder vand, som opvarmes af et elektrisk varmelegeme, og vandet opvarmer olien. En sådan for-25 varmer kræver en konstant temperatur og en periodisk indkobling af varmelegemet, også ved frakoblet brænder. Dette har et stort energibehov såvel under driften som under stilstanden til følge.The oil preheater contains water which is heated by an electric heater and the water heats the oil. Such a pre-heater requires a constant temperature and a periodic switch-on of the heater, even with the burner switched off. This has a great need for energy both during operation and during downtime.

30 Ved en anden kendt fremgangsmåde (DE 33 15 213 Al) ledes normalt den samlede olie, som fra pumpen tilføres den til oliebrænderen førende fremløbsledning, under forvarmningstiden gennem forvarmeren og føres over en tilbageløbsledning og en deri anbragt magnetventil tilbage til 35 tanken, hvor den igen blandes med kold olie. En i afhængighed af olietemperaturen styret omkoblingsventil forbin- DK 170708 B1 2 der under forvarmningen fremløbsledningen med tilbageløbsledningen og adskiller fremløbsledningen fra brænderen.By another known method (DE 33 15 213 A1), the total oil which is fed from the pump to the oil burner supply line is normally fed through the preheater during preheating time and is passed back through a reflux line and a solenoid valve therein to the tank. again mixed with cold oil. A switching valve, which is controlled in dependence on the oil temperature, connects the flow line to the return line during preheating and separates the flow line from the burner.

Ved opnåelse af den ønskede olietemperatur forbinder omkoblingsventilen fremløbsledningen over en almindeligvis 5 ved start af pumpen åben fremløbsventil med brænderen og spærrer forsinket tilbageløbsledningen, indtil den kolde olie i ledningen mellem omkoblingsventil og brænder er forbrændt. Under forsinkelsestiden sker forbrændingen ved sænkning af olietrykket ved hjælp af en i tilbageløbsled-10 ningen liggende trykholdeventil ved lavere tryk. Denne art af forvarmningen er energikrævende, da den samlede forvarmede olie under forvarmningstiden igen ledes tilbage til tanken, og omkoblingsventilens forsinkelsestid betyder en yderligere tilbageløbstid af den forvarmede olie til tan-15 ken.Upon reaching the desired oil temperature, the bypass valve connects the supply line over a generally open flow valve at the start of the pump with the burner, blocking the delayed return line until the cold oil in the line between the bypass valve and burner is burned. During the delay time, the combustion is effected by lowering the oil pressure by means of a pressure holding valve located in the reflux line 10 at lower pressure. This kind of preheating is energy intensive as the total preheated oil is returned to the tank during the preheating time, and the switching valve delay time means a further reflux time of the preheated oil to the tank.

Formålet med opfindelsen er at angive en fremgangsmåde af den i indledningen nævnte art og en anordning til gennemførelse af fremgangsmåden, som kræver mindre energi til 20 forvarmningen, sikrer en bedre forbrænding og alligevel er enkel.The object of the invention is to provide a method of the kind mentioned in the introduction and a device for carrying out the method which requires less energy for the preheating, ensures a better combustion and yet is simple.

Ifølge opfindelsen består fremgangsmåden til løsning af denne opgave i, at den ved hjælp af pumpen frembragte 25 oliestrøm under forvarmningstiden tilføres delvist over forvarmeren og delvist forbi forvarmeren til pumpens sugeside.According to the invention, the method of solving this task consists in the fact that the 25 oil flow generated by the pump during the preheating time is supplied partly over the preheater and partly past the preheater to the suction side of the pump.

På denne måde opnås, at den til forstøveren førende frem-30 løbsledning udluftes, og forvarmet olie befinder sig foran forstøveren, når fremløbsventilen åbnes og brænderen tændes. Brænderens start sker da med minimal forurening. Ved anvendelse af en gennemstrømningsforvarmer med lav effektoptagelse kan forvarmeren være frakoblet i brænderens 35 driftspauser. Da kun en delstrøm gennemstrømmer forvarmeren i forvarmningstiden, er forvarmerens ringe effekt til- DK 170708 B1 3 strækkelig til forvarmningen af olien inden for en normal for-ventilationstid.In this way, the flow line leading to the nebulizer is vented and preheated oil is in front of the nebulizer when the flow valve is opened and the burner is switched on. The burner starts then with minimal pollution. By using a low power take-up preheater, the preheater can be switched off during burner 35 operating breaks. As only a partial flow through the preheater during preheating time, the preheater's low power is sufficient to preheat the oil within a normal pre-ventilation time.

Fortrinsvis ledes den over forvarmeren til sugesiden til-5 førte delstrøm frem og tilbage over forvarmeren. Den i fremløbet opvarmede tilbageløbsolie bidrager da på sin side til opvarmningen af fremløbsolien.Preferably, the partial current fed through the preheater to the suction side is directed back and forth over the preheater. The reflux oil heated in the flow then in turn contributes to the heating of the flow oil.

Endvidere kan den delstrøm, der kommer ud af forvarmeren, 10 igen forenes med den delstrøm, som er ledt forbi forvarmeren, og den genforenede oliestrøm tilføres over en under forvarmningstiden åben tilbageløbsventil til sugesiden.Furthermore, the partial flow coming out of the preheater 10 can again be combined with the partial flow passed past the preheater and the reunited oil stream is fed over a suction side open during the preheating time.

Under brænderdriften er tilbageløbsventilen lukket, således at de to delstrømme, dvs. den samlede af pumpen leve-15 rede olie, tilføres forstøveren.During the burner operation, the reflux valve is closed so that the two partial flows, ie. the total oil supplied by the pump is supplied to the nebulizer.

Forvarmningstiden afsluttes, når en forudbestemt tid er udløbet, og den forvarmede delstrøm har opnået en forudbestemt temperatur. På denne måde sikres, at der er til-20 strækkelig forvarmet olie til rådighed ved forstøveren, og der kan ske en tilstrækkelig for-ventilation, før brænderen tændes.The preheating time is terminated when a predetermined time has elapsed and the preheated partial stream has reached a predetermined temperature. In this way it is ensured that sufficient preheated oil is available at the nebulizer and sufficient pre-ventilation can be done before the burner is switched on.

Til gennemførelse af fremgangsmåden udgår opfindelsen fra 25 en anordning ifølge US-PS 4 392 810, ved hvilken der fra en fra pumpen gennem forvarmeren til forstøveren førende fremløbsledning på et afgreningssted mellem forvarmer og forstøver afgrener en tilbageløbsledning til pumpens sugeside, og i tilbageløbsledningen er der anbragt en tilbage-30 løbsventil, som er åben under forvarmningstiden. Til løs ning af den stillede opgave er der mellem afgreningsstedet og forstøveren i fremløbsledningen anbragt en under forvarmningstiden lukket fremløbsventil, og fremløbsledningen foran forvarmeren er over et drosselelement forbundet med 35 tilbageløbsledningen.In order to carry out the method, the invention is based on a device according to US-PS 4 392 810, in which a return line to the suction side of the pump is branched from a pump through the preheater to the atomizer at a branch point between preheater and atomizer. arranged a back-30 flow valve which is open during the preheating time. For solving the posed task, a flow valve closed during preheating time is arranged between the branch location and the atomizer in the flow line, and the flow line in front of the preheater is connected over a throttle element to the return line.

4 DK 170708 B1 På denne måde er det for det første sikret, at forstøveren under forvarmningstiden ikke tilføres olie, og derfor kan ingen olie dryppe ud af forstøveren (i givet fald ud af en dyse). For det andet opnås på enkel måde ved hjælp af for-5 varmerens drosselelement og strømningsmodstand en inddeling af den af pumpen leverede oliestrøm i to delstrømme, * af hvilke kun den ene delstrøm opvarmes af forvarmeren.4 DK 170708 B1 In this way, it is firstly ensured that during the preheating time the nebulizer is not supplied with oil and therefore no oil can drip out of the nebulizer (if necessary out of a nozzle). Secondly, the pre-heater's throttle element and flow resistance are simply divided into two sub-streams, of which only one sub-stream is heated by the preheater.

Dette har den fordel, at til forvarmningen kræves mindre energi, og forvarmeren kan dimensioneres til en ringere 10 effekt.This has the advantage that less energy is required for the preheating and the preheater can be sized to an inferior power.

Fortrinsvis er der sørget for, at drosselelementet foran tilbageløbsventilen er forbundet med tilbageløbsledningen, og tilbageløbsventilen er åben under forvarmningstiden.Preferably, the throttle element in front of the reflux valve is provided to be connected to the reflux line and the reflux valve is open during the preheating time.

15 Herved opnås, at den til pumpens sugeside førende oliestrøm kan afbrydes under brænderdriften, og pumpen opbygger et højere tryk såvel i frem- som tilbageløbsledningen foran forstøveren. Når fremløbsventilen åbner, bestemmes olietrykket af pumpetrykket, som kan være reguleret af en 20 trykreguleringsventil. Desuden kan der anvendes en sædvan lig pumpe med ringe ændringer for forbindelserne mellem fremløbsledningen foran forvarmeren og drosselelementet samt mellem drosselelementet og tilbageløbsledningen og en yderligere studs for afgreningsstedet. En yderligere for-25 del består i, at under forvarmningen i fremløbsledningen mellem forvarmer og fremløbsventil kan intet overtryk opstå. Dette sparer kanaler og ventiler, som man hidtil anvendte for at undgå en for- og/eller efterdrypning fra forstøveren (fra dysen).Hereby it is achieved that the oil flow leading to the suction side of the pump can be interrupted during the burner operation, and the pump builds up a higher pressure in both the forward and the return line in front of the atomizer. When the inlet valve opens, the oil pressure is determined by the pump pressure, which may be regulated by a pressure control valve. In addition, a conventional pump with minor changes can be used for the connections between the flow line in front of the preheater and the throttle element, as well as between the throttle element and the return line, and an additional pin for the branching point. A further advantage consists in that during preheating in the flow line between preheater and flow valve no overpressure can occur. This saves channels and valves used so far to avoid a pre- and / or post-dripping from the nebulizer (from the nozzle).

3030

Fremløbsventilen kan være trykstyret. Derved opnås, at ved lukning af tilbageløbsventilen åbner fremløbsventilen automatisk, når olietrykket er tilstrækkeligt højt.The inlet valve may be pressure controlled. This results in the fact that when the return valve is closed, the inlet valve automatically opens when the oil pressure is sufficiently high.

Φ DK 170708 B1 5Φ DK 170708 B1 5

Alternativt er fremløbsventilen også elektrisk aktiverbar.Alternatively, the inlet valve is also electrically actuable.

På denne måde kan det sikres, at pumpen har opbygget et tilstrækkeligt højt tryk, før fremløbsventilen åbnes.In this way, it can be ensured that the pump has built up a sufficiently high pressure before opening the flow valve.

5 Fortrinsvis er der sørget for, at tilbageløbsventilen er en normalt åben magnetventil, hvis elektromagnetvikling ligger i serie med en arbejdskontakt, som kan aktiveres ved hjælp af en i forvarmeren placeret termostat ved opnåelse af en forudbestemt temperatur, og i serie med en ar-10 bejdskontakt, som kan aktiveres ved hjælp af en tidsgiver ved udløb af forvarmningstiden, i driftsstrømkredsen. Dette sikrer, at der er varm olie på forstøveren, når brænderen tændes.Preferably, the return valve is provided as a normally open solenoid valve whose electromagnetic winding is in series with a working contact which can be actuated by a thermostat located in the preheater to achieve a predetermined temperature, and in series with an ar-10. pickle switch, which can be activated by means of a timer at the end of the preheating time, in the operating circuit. This ensures that there is hot oil on the nebulizer when the burner is turned on.

15 Drosselelementet kan have en blænde. Ved en sådan blænde drejer det sig om en i en ledning indbygget konstant kort indsnævring, ved hvilken forholdet mellem gennemstrømningslængde og gennemstrømningsåbning er relativt lille, således at gennemstrømning og trykfald i stor udstrækning 20 er viskositetsuafhængig. Således er gennemstrømningsmodstanden forholdsvis ringe, således at den i stor udstrækning svarer til forvarmerens.15 The choke element may have an aperture. Such an aperture is a constant short constraint built into a conduit in which the ratio between the flow length and the flow opening is relatively small, so that flow and pressure drop are largely viscosity independent. Thus, the flow resistance is relatively low, so that it corresponds to a large extent to that of the preheater.

Fortrinsvis er der sørget for, at blænden danner en del af 25 et venturi-rør, hvis sugeåbning over et første afsnit af tilbageløbsledningen er forbundet med afgreningsstedet, og hvis udgang over et andet afsnit af tilbageløbsledningen er forbundet med tilbageløbsventilen. Herved sikres det, at også ved en forvarmer med stor gennemstrømningsmodstand 30 under forvarmningstiden strømmer en tilstrækkelig stor delstrøm gennem forvarmeren, og under brænderdriften, ved hvilken de to delstrømme strømmer til forstøveren, optræder intet alt for højt trykfald ved blænden.Preferably, the aperture is provided to form a portion of a venturi tube whose suction opening over a first section of the return line is connected to the branch location and whose exit over a second section of the return line is connected to the return valve. This ensures that even with a preheater with a large flow resistance 30 during the preheating time, a sufficiently large partial flow flows through the preheater, and during the burner operation, at which the two partial flows flow to the nebulizer, no excessive pressure drop occurs at the aperture.

35 Det igennem forvarmeren førte, mellem afgreningssted og drosselelement liggende afsnit af tilbageløbsledningen kan DK 170708 B1 6 være koaksial med fremløbsledningen. Dette muliggør udformningen af det mellem forvarmer og forstøver liggende afsnit af fremløbsledningen med de samme dimensioner som ved eksisterende rørledninger, således at anordningen 5 ifølge opfindelsen på enkel måde kan indsættes i eksisterende brændere.35 The portion of the return line passing through the preheater between the branch location and the throttle element may be coaxial with the flow line. This enables the design of the pre-heater and atomizer sections of the supply pipe to be of the same dimensions as existing pipelines, so that the device 5 according to the invention can be easily inserted into existing burners.

Det mellem afgreningssted og drosselelement liggende afsnit af tilbageløbsledningen er ført forbi forvarmeren.The section of the return line between the branch location and the throttle element is passed past the preheater.

10 Derved opnås, at olietemperaturen ved brænderstarten er relativ høj, mens olietemperaturen under brænderdriften dog reduceres ved, at en del af den til forstøveren strømmende olie ledes gennem den rørledning, der fører uden om forvarmeren.10 This results in the oil temperature at the burner start being relatively high, while the oil temperature during the burner operation is reduced by passing part of the oil flowing to the nebulizer through the pipeline leading outside the preheater.

1515

Det mellem afgreningsstedet og drosselelementets tilslutningssted på tilbageløbsledningen liggende afsnit af tilbageløbsledningen kan indeholde en kontraventil. Denne kontraventil frigiver tilbageløbet og spærrer i modsat 20 retning. Derved opnås, at den samlede olie under brænderdriften på sædvanlig måde strømmer gennem forvarmeren, og sædvanlige forvarmere kan anvendes uden ændringer.The portion of the return line located between the branching point and the throttle member connection point on the return line may contain a non-return valve. This check valve releases the reflux and locks in the opposite direction. This ensures that the total oil during the burner operation flows in the usual way through the preheater, and the usual preheaters can be used without change.

En alternativ udførelse kan bestå i, at der i fremløbsled-25 ningen foran forvarmeren ligger en i forvarmningstiden lukket magnetventil, at fremløbsledningen foran magnetventilen over en trykreguleringsventil er forbundet med drosselelementets indgangsside, at trykreguleringsventilens udgang over en kontraventil er forbundet med magnetventi-30 lens udgang og forvarmerens indgang, og at der mellem tilbageløbsventilen og pumpens sugeside er anbragt et yderligere drosselelement. Dette muliggør anvendelsen af en normal lukket magnetventil.An alternative embodiment may consist in the inlet conduit in front of the preheater being a solenoid valve closed during the preheating time, the inlet conduit in front of the solenoid valve over a pressure control valve being connected to the inlet side of the throttle element, and the pressure regulating valve outlet over a check valve connected to the outlet of the solenoid valve. and the preheater inlet, and an additional throttle member is arranged between the return valve and the suction side of the pump. This allows the use of a normal closed solenoid valve.

35 Også i dette tilfælde kan drosselelementerne være udformet som blænder.In this case too, the throttle elements may be designed as apertures.

DK 170708 B1 7DK 170708 B1 7

Tilbageløbsventilen kan være udformet som kontraventil.The return valve can be designed as a non-return valve.

Den har derfor en enkel opbygning.It therefore has a simple structure.

Således kan pumpe og forvarmer være sammenbygget. Dette 5 giver en kompakt opbygning, og den fra pumpen afgivne varme kan under brænderdriften bidrage til opvarmningen, således at forvarmerens effekt kan være tilsvarende ringe.Thus, the pump and preheater can be assembled. This 5 gives a compact structure, and the heat delivered from the pump during the burner operation can contribute to the heating, so that the preheater power can be correspondingly low.

Udformninger af opfindelsen beskrives nedenstående ved 10 hjælp af skematiske tegninger af foretrukne udførelseseksempler, der viser i fig. 1 et hydraulisk diagram af et første udførelseseksempel af en anordning ifølge opfindelsen, 15 fig. 2 et elektrisk diagram af en strømforsyningsindretning af dele af anordningerne i fig. 1 og 4, fig. 3 en varieret enkelthed af udførelseseksemplet i 20 fig. 1 i skematisk fremstilling, fig. 4 et hydraulisk diagram af et andet udførelseseksempel af en anordning og 25 fig. 5 et hydraulisk diagram af et tredie udførelseseksempel af en anordning.Embodiments of the invention are described below by means of schematic drawings of preferred embodiments illustrated in FIG. 1 is a hydraulic diagram of a first embodiment of a device according to the invention; FIG. 2 is an electrical diagram of a power supply device of parts of the devices of FIG. 1 and 4, FIG. 3 shows a varied simplicity of the embodiment of FIG. 1 in schematic representation; FIG. 4 is a hydraulic diagram of another embodiment of a device; and FIG. 5 is a hydraulic diagram of a third embodiment of a device.

Anordningen ifølge fig. 1 er del af et oliefyringsanlæg med en af en elektrisk motor 1 drevet pumpe 2, som tilfø-30 rer olie fra en tank 3 over en f remløbs ledning 4 gennem en elektrisk opvarmet forvarmer 5 og en fremløbsventil 6 i form af en kontraventil til en oliebrænders forstøver 7, her en dyse, hvorved fremløbsventil 6 og forstøver 7 er udformet som en enhed 8. På et afgreningssted 9 mellem 35 forvarmer 5 og forstøver 7 afgrener en tilbageløbsledning 10 til pumpens 2 sugeside. I tilbageløbsledningen 10 er DK 170708 B1 8 der anbragt en elektromagnetisk tilbageløbsventil 11, som normalt, dvs. i inaktiv tilstand, er åben. Fremløbsventi-len 6 ligger mellem afgreningsstedet 9 og forstøveren 7 i fremløbsledningen 4 og er lukket under en forvarmningstid 5 af forvarmeren 5. Fremløbsledningen 4 foran forvarmeren 5, dvs. fremløbsledningsafsnittet 4a mellem pumpe 2 og forvarmer 5, er over et drosselelement 12 i form af en blænde forbundet med tilbageløbsledningen 10 foran tilbageløbsventilen 11. Endvidere er fremløbsledningsafsnittet 4a 10 foran drosselelementet 12 over en indstillelig trykreguleringsventil 13 forbundet med henholdsvis pumpens 2 sugeside og tanken 3. Tilbageløbsledningsafsnittet 10a mellem afgreningsstedet 9 og drosselelementets 12 tilslutningssted 14 på tilbageløbsledningen 10 er ligeledes ført igen-15 nem forvarmeren 5.The device of FIG. 1 is part of an oil firing system with a pump 2 driven by an electric motor 1 which feeds oil from a tank 3 over a feed line 4 through an electrically heated preheater 5 and an inlet valve 6 in the form of a check valve to a oil burner atomizer 7, here a nozzle, whereby flow valve 6 and atomizer 7 are formed as a unit 8. At a branch point 9 between 35 preheater 5 and atomizer 7 branch a return line 10 to the suction side of the pump 2. In the return line 10, DK 170708 B1 8 is provided with an electromagnetic return valve 11, which is normally, i.e. in idle mode, is open. The inlet valve 6 lies between the branch location 9 and the nebulizer 7 in the inlet line 4 and is closed during a preheating time 5 of the preheater 5. The inlet line 4 in front of the preheater 5, ie. the flow line section 4a between pump 2 and preheater 5 is connected over a throttle element 12 in the form of an aperture to the return line 10 in front of the return valve 11. Furthermore, the flow line section 4a 10 in front of the throttle element 12 is connected over an adjustable pressure control valve 13 to the suction side 13 of the pump 2 respectively. The return line section 10a between the branch location 9 and the connection point 14 of the choke element 12 on the return line 10 is also passed through the preheater 5.

Ifølge fig. 2 tilsluttes motoren 1 og forvarmeren 5 ved lukning af en driftskontakt 15 en spændingskilde 16, således at motoren 1 driver pumpen 2, og denne begynder at 20 levere olie. En første delstrøm af olien strømmer over fremløbsledningen 4 gennem forvarmeren 5, tilbageløbsledningen 10 og den åbnede tilbageløbsventil 11 tilbage til henholdsvis pumpens 2 sugeside og tanken 3. En anden større delstrøm af den af pumpen 2 leverede olie strømmer gen-25 nem drosselelementet 12 ligeledes over den åbnede tilbageløbsventil 11 tilbage til pumpens 2 sugeside. Under for-varmningstiden er brænderen endnu ikke i drift. Det er derfor tilstrækkeligt kun at forvarme den over fremløbsledningen 4 strømmende delstrøm under denne forvarmnings-30 tid. Man klarer sig derfor under forvarmningstiden med en ringere varmeeffekt til forvarmeren 5. Da tilbageløbsledningen 10 ligeledes er ført igennem forvarmeren 5, bidrager den allerede opvarmede tilbageløbsolie ligeledes til at reducere forvarmerens 5 effekt, da olien kan overføre " 35 en del af sin varme i forvarmeren 5 til fremløbsledningen 4.According to FIG. 2, the motor 1 and the preheater 5 are connected to a voltage source 16 by closing an operating switch 15 such that the motor 1 drives the pump 2 and it begins to supply oil. A first partial flow of the oil flows over the supply line 4 through the preheater 5, the reflux line 10 and the opened reflux valve 11 back to the suction side of the pump 2 and the tank 3. A second larger partial flow of the oil supplied by the pump 2 also flows through the throttle element 12. the opened return valve 11 returns to the suction side of the pump 2. During the preheating time, the burner is not yet operational. Therefore, it is sufficient to preheat only the subcurrent flowing over the supply line 4 during this preheating time. Therefore, during the preheating time, a lesser heat effect is achieved for the preheater 5. Since the reflux line 10 is also passed through the preheater 5, the already heated reflux oil also contributes to reducing the preheater 5 power, since the oil can transfer part of its heat into the preheater. 5 to the supply line 4.

DK 170708 B1 9DK 170708 B1 9

Efter udløb af en ved hjælp af en tidsgiver 17 (fig. 2) bestemt forvarmningstid lukker tidsgiveren 17 en i strømkredsen til tilbageløbsventilens 11 elektromagnetvikling 18 liggende arbejdskontakt 19, mens en i forvarmeren 5 5 anbragt termostat 20 lukker en ligeledes i elektromagnetviklingens 18 strømkreds liggende arbejdskontakt 21, så snart termostaten konstaterer en forudbestemt temperatur.Upon expiry of a preheating time determined by a timer 17 (Fig. 2), the timer 17 closes a working contact 19 located in the circuit of the reflux valve 11, while a thermostat 20 located in the preheater 5 5 closes a working contact of the electromagnetic winding 18 21 as soon as the thermostat detects a predetermined temperature.

Når de to arbejdskontakter 19 og 21 er lukket, skifter tilbageløbsventilen 11 til lukkestillingen, således at 10 oliens tilbageløb til pumpens 2 sugeside er spærret. Den af pumpen 2 leverede olie strømmer da såvel over fremløbs-ledningen 4 som over drosselelementet 12 og tilbageløbsledningsafsnittet 10a til brænderens forstøver 7, hvorved den trykstyrede fremløbsventil 6 åbner, så snart det nød-15 vendige tryk opnås. Herved benyttes forvarmeren 5 på sædvanlig måde under brænderdriften. Da drosselelementet 12 er udformet som blænde og har en relativ stor gennemstrømningsåbning, forhindrer det praktisk taget ikke gennemstrømningen under brænderdriften.When the two working contacts 19 and 21 are closed, the return valve 11 switches to the closing position, so that the return of the oil to the suction side of the pump 2 is blocked. The oil supplied by the pump 2 then flows both over the flow line 4 as well as over the throttle element 12 and the return line section 10a to the burner atomizer 7, whereby the pressure controlled flow valve 6 opens as soon as the necessary pressure is obtained. Hereby the preheater 5 is used in the usual manner during the burner operation. Since the throttle element 12 is configured as aperture and has a relatively large flow opening, it does not practically prevent the flow during burner operation.

2020

Ifølge fig. 3 kan en variation af den i fig. 1 viste anordning bestå i, at blænden 12a danner en del af et ven-tur i-rør, hvis sugeåbning over tilbageløbsledningens 10 afsnit 10a er forbundet med afgreningsstedet 9, og hvis 25 udgang over tilbageløbsledningens 10 andet afsnit 10b er forbundet med tilbageløbsventilen 11. Ved denne udformning sikres det, at også ved meget stor gennemstrømningsmodstand af forvarmeren 5 strømmer en tilstrækkelig delstrøm (ved åben tilbageløbsventil 11) gennem forvarmeren 5 under 30 forvarmningstiden.According to FIG. 3, a variation of the embodiment of FIG. 1, the aperture 12a forms part of a vent in-tube whose suction opening over the section 10a of the return line 10 is connected to the branch location 9 and whose exit over the second section 10b of the return line 10 is connected to the return valve 11. In this embodiment, it is ensured that even at very high flow resistance of the preheater 5, a sufficient partial flow (at open reflux valve 11) flows through the preheater 5 during the preheating time.

Udførelseseksemplet i fig. 4 adskiller sig kun fra det i fig. 1 ved, at det mellem afgreningsstedet 9 og drosselelementet 12 liggende afsnit 10a af tilbageløbsledningen 35 10 er ført forbi forvarmeren 5 og indeholder en kontraven til 22, som åbner i retning mod pumpens 2 sugeside. På DK 170708 B1 10 denne måde er det sikret, at der også ved en forvarmer 5 med meget ringe gennemstrømningsmodstand kun strømmer en lille del af den af pumpen 2 leverede oliestrøm gennem forvarmeren 5 under forvarmningstiden ved åben tilbage-5 løbsventil 11, og under brænderdriften (ved lukket tilbageløbsventil 11) ledes den samlede oliestrøm over fremløbsledningen 4 og forvarmeren 5 til enheden 8, uden at en delstrøm strømmer gennem drosselelementet 12.The exemplary embodiment of FIG. 4 differs only from that of FIG. 1, in that the section 10a of the return line 35 10 lying between the branch location 9 and the throttle element 12 is passed past the preheater 5 and contains a counter 22 for opening towards the suction side of the pump 2. In DK 170708 B1 this way, it is ensured that even with a preheater 5 with very low flow resistance, only a small part of the oil flow supplied by the pump 2 flows through the preheater 5 during the preheating time at open reflux valve 11 and during the burner operation. (at closed reflux valve 11), the total oil flow is passed over the flow line 4 and preheater 5 to the unit 8 without a partial flow flowing through the throttle element 12.

10 I øvrigt er driften af anordningen ifølge fig. 4 den samme som driften af anordningen ifølge fig. 1.10 Moreover, the operation of the device according to FIG. 4 is the same as the operation of the device according to FIG. First

Ved udførelseseksemplet i fig. 5 ligger der til dannelse af de to delstrømme i fremløbsledningen 4 foran forvarme-15 ren 5 en i forvarmningstiden lukket magnetventil 23, mens det foran magnetventilen liggende fremløbsledningsafsnit 4a er forbundet med drosselelementets 12 indgangsside over trykreguleringsventilen 13. Trykreguleringsventilens 13 udgang er over en kontraventil 24 forbundet med magnetven-20 tilens 23 udgang og forvarmerens 5 indgang. Mellem tilbageløbsventilen 11a, der er udformet som kontraventil, og pumpens 2 sugeside er der anbragt et yderligere drosselelement 25.In the embodiment of FIG. 5, for forming the two partial flows in the supply line 4 in front of the preheater 15, a solenoid valve 23 closed during the preheating time 5 is located, while the inlet conduit section 4a located in front of the solenoid valve is connected to the inlet side of the throttle member 12 over the pressure control valve 13. The output of the pressure control valve 13 is connected to the outlet of the magnetic valve 20 and the input of the preheater 5. Between the return valve 11a, which is designed as a check valve, and the suction side of the pump 2, a further throttle element 25 is arranged.

25 Ved dette udførelseseksempel er magnetventilen 23 lukket i forvarmningstiden. Den af pumpen 2 leverede olie strømmer derfor over trykreguleringsventilen 13, og derefter inddeler olien sig i to delstrømme. Den første delstrøm strømmer over drosselelementet 12, som igen er udformet som 30 blænde, tilbage til pumpens 2 sugeside, mens den anden delstrøm over kontraventilen 24, forvarmeren 5, den tilbageløbsventil 11a, som åbner ved et lavere tryk end fremløbsventilen 6, og drosselelementet 25, der ligeledes er udformet som blænde, strømmer tilbage til pumpens 2 suge-35 side. Det elektriske styrekredsløb for anordningen ifølge fig. 5 er det samme som det i fig. 2 viste, kun er der i DK 170708 B1 11 stedet for tilbageløbsventilens 11 magnetvikling 18 anbragt magnetventilens 23 magnetvikling i strømkredsen. Ved udløb af forvarmningstiden og ved opnåelse af den forudbestemte forvarmningstemperatur åbner magnetventilen 23, 5 således at olie under tryk strømmer gennem forvarmeren 5 til forstøveren 7, da fremløbsventilen 6 åbnes af det nu højere tryk, og forbrændingen kan begynde. Gennem trykreguleringsventilen 13, som holder trykket på pumpens 2 udgangsside konstant, og tilbageløbsventilen 11a strømmer 10 delstrømme, henholdsvis droslet af drosselelementerne 12 og 25, tilbage til tanken 3.In this embodiment, the solenoid valve 23 is closed during the preheating time. Therefore, the oil supplied by the pump 2 flows over the pressure control valve 13, and then the oil divides into two partial flows. The first partial flow over the throttle element 12, which in turn is apertured, returns to the suction side of the pump 2, while the second partial flow over the check valve 24, preheater 5, the return valve 11a which opens at a lower pressure than the flow valve 6, and the throttle element 25. , also designed as aperture, flows back to the suction-35 side of the pump 2. The electrical control circuit of the device according to FIG. 5 is the same as that of FIG. 2, only the magnetic winding 18 of the return valve 11 of the reflux valve 11 is arranged in the circuit of DK 170708 B1 11. At the end of the preheating time and upon reaching the predetermined preheating temperature, the solenoid valve 23, 5 opens so that pressurized oil flows through the preheater 5 to the nebulizer 7 as the inlet valve 6 is opened by the now higher pressure and combustion can begin. Through the pressure control valve 13, which keeps the pressure on the output side of the pump 2 constant and the reflux valve 11a, 10 partial flows, respectively the throttle of the throttle elements 12 and 25, flow back to the tank 3.

Claims (19)

1. Fremgangsmåde til forvarmning af olie for en oliebræn- 5 der med forstøver (7), ved hvilken olie, der leveres fra en pumpe (2) under en før brænderdriften liggende i forvarmningstid, tilføres over en forvarmer (5) forbi forstøveren (7) til pumpens (2) sugeside, kendetegnet ved, at den ved hjælp af pumpen (2) 10 frembragte oliestrøm under forvarmningstiden tilføres delvist over forvarmeren (5) og delvist forbi forvarmeren (5) til pumpens (2) sugeside.A method of preheating oil for an oil burner with atomizer (7), in which oil supplied from a pump (2) during a pre-burner operation during preheating time is supplied over a preheater (5) past the atomizer (7). ) to the suction side of the pump (2), characterized in that the oil flow generated by the pump (2) during the preheating time is supplied partly over the preheater (5) and partly past the preheater (5) to the suction side of the pump (2). 2. Fremgangsmåde ifølge krav 1, kendetegnet 15. e d, at den over forvarmeren (5) til sugesiden til førte delstrøm ledes frem og tilbage over forvarmeren (5).Method according to claim 1, characterized in that it is passed back and forth over the preheater (5) over the pre-heater (5) to the suction side of the suction side. 3. Fremgangsmåde ifølge krav 1 eller 2, kendeteg- 20 netved, at den delstrøm, der kommer ud af for varmeren (5), igen forenes med den delstrøm, som er ledt forbi forvarmeren (5), og den genforenede oliestrøm tilføres over en under forvarmningstiden åben tilbageløbsventil (11) til sugesiden. 25A method according to claim 1 or 2, characterized in that the partial flow coming out of the heater (5) is again combined with the partial flow passing past the heater (5) and the reunited oil stream is fed over a open reflux valve (11) to suction side during preheating time. 25 4. Fremgangsmåde ifølge krav 1 eller 2, kendetegnet v e d, at forvarmningen afsluttes, når en forudbestemt tid er udløbet, og den forvarmede delstrøm har opnået en forudbestemt temperatur. 30Process according to claim 1 or 2, characterized in that the preheating is terminated when a predetermined time has elapsed and the preheated partial flow has reached a predetermined temperature. 30 5. Anordning til gennemførelse af fremgangsmåden ifølge krav 1, ved hvilken der fra en fra pumpen (2) gennem forvarmeren (5) til forstøveren (7) førende fremløbsledning (4) på et afgreningssted (9) mellem forvarmer 35 (5) og forstøver (7) afgrener en tilbageløbsledning (10) til pumpens (2) sugeside, og i tilbageløbslednin DK 170708 B1 gen (10) er der anbragt en tilbageløbsventil (11; 11a), som er åben under forvarmningstiden, kendetegnet ved, at der mellem afgreningsstedet (9) og forstøveren (7) i fremløbsledningen (4) er anbragt 5 en under forvarmningstiden lukket fremløbsventil (6), og at fremløbsledningen (4) foran forvarmeren (5) over et drosselelement (12; 12a) er forbundet med tilbageløbsledningen (10).Device for carrying out the method according to claim 1, wherein a supply line (4) leading from the pump (2) through the preheater (5) to the atomizer (7) at a branching point (9) between preheater 35 (5) and atomizer (7) branches a reflux line (10) to the suction side of the pump (2), and in the reflux line DK 170708 B1 gene (10) is provided a reflux valve (11; 11a) which is open during the preheating time, characterized in that between the branching point (9) and the nebulizer (7) in the supply line (4) is arranged 5 during the preheating time (6) and the supply line (4) in front of the preheater (5) is connected to the return line (10) over a choke element (12). ). 6. Anordning ifølge krav 5, kendetegnet ved, at drosselelementet (12; 12a) foran tilbageløbsventilen (11) er forbundet med tilbageløbsledningen (10), og tilbageløbsventilen (11) er åben under forvarmningstiden. 15Device according to claim 5, characterized in that the throttle element (12; 12a) in front of the reflux valve (11) is connected to the reflux line (10) and the reflux valve (11) is open during the preheating time. 15 7. Anordning ifølge krav 5 eller 6, kendetegnet v e d, at fremløbsventilen (6) er trykstyret.Device according to claim 5 or 6, characterized in that the flow valve (6) is pressure controlled. 8. Anordning ifølge krav 5 eller 6, kendeteg- 20 netved, at fremløbsventilen er elektrisk akti verbar.Device according to claim 5 or 6, characterized in that the inlet valve is electrically operable. 9. Anordning ifølge et af kravene 5-8, kendetegnet v e d, at tilbageløbsventilen (11) er en nor- 25 malt åben magnetventil, hvis elektromagnetvikling (18) ligger i serie med en arbejdskontakt (21), som kan aktiveres ved hjælp af en i forvarmeren (5) placeret termostat (20) ved opnåelse af en forudbestemt temperatur, og i serie med en arbejdskontakt (19), som kan 30 aktiveres ved hjælp af en tidsgiver (17) ved udløb af forvarmningstiden, i driftsstrømkredsen.Device according to one of claims 5-8, characterized in that the return valve (11) is a normally open solenoid valve whose electromagnetic winding (18) is in series with a working contact (21) which can be actuated by means of a located in the preheater (5) thermostat (20) at a predetermined temperature, and in series with a working switch (19) which can be actuated by a timer (17) at the end of the preheating time, in the operating circuit. 10. Anordning ifølge et af kravene 5-9, kendetegnet v e d, at drosselelementet (12, 12a) har en 35 blænde. DK 170708 B1Device according to one of claims 5-9, characterized in that the throttle element (12, 12a) has an aperture. DK 170708 B1 11. Anordning ifølge krav 10, kendetegnet ved, at blænden (12a) danner en del af et venturi-rør, hvis sugeåbning over et første afsnit (10a) af tilbageløbsledningen (10) er forbundet med afgrenings- 5 stedet (9), og hvis udgang over et andet afsnit (10b) af tilbageløbsledningen (10) er forbundet med tilbageløbsventilen (11).Device according to Claim 10, characterized in that the aperture (12a) forms part of a venturi tube, the suction opening of which over a first section (10a) of the return line (10) is connected to the branching site (9), and the output of a second section (10b) of the return line (10) being connected to the return valve (11). 12. Anordning ifølge et af kravene 5-11, kendeteg- 10. e t v e d, at det mellem afgreningssted (9) og drosselelement (12; 12a) liggende afsnit (10a) af tilbageløbsledningen (10) er ført igennem forvarmeren (5).Device according to one of claims 5 to 11, characterized in that the section (10a) of the return line (10) passing through the pre-heater (5) between the branching point (9) and the throttle element (12; 12a) is passed. 13. Anordning ifølge krav 12, kendetegnet ved, at det igennem forvarmeren (5) førte afsnit (10a) af tilbageløbsledningen (10) er koaksial med fremløbsledningen (4).Device according to claim 12, characterized in that the portion (10a) of the return line (10) passing through the preheater (5) is coaxial with the flow line (4). 14. Anordning ifølge et af kravene 5-11, kendeteg net v e d, at det mellem afgreningssted (9) og drosselelement (12) liggende afsnit (10a) af tilbageløbsledningen (10) er ført forbi forvarmeren (5).Device according to one of claims 5-11, characterized in that the section (10a) of the return line (10) passing between the branching point (9) and the throttle element (12) is passed past the preheater (5). 15. Anordning ifølge et af kravene 5-14, kendeteg net v e d, at det mellem afgreningsstedet (9) og drosselelementets (12) tilslutningssted (14) på tilbageløbsledningen (10) liggende afsnit (10a) af tilbageløbsledningen (10) indeholder en kontraventil (22). 30Device according to one of claims 5-14, characterized in that the section (10a) of the return line (10) between the branching point (9) and the connection point (14) of the choke element (12) of the return line (10) contains a check valve (10). 22). 30 16. Anordning ifølge krav 5, kendetegnet ved, at der i fremløbsledningen (4) foran forvarmeren (5) ligger en i forvarmningstiden lukket magnetventil (23), at fremløbsledningen (4) foran magnetventilen 35 (23) over en trykreguleringsventil (13) er forbundet med drosselelementets (12) indgangsside, at trykregu- DK 170708 B1 leringsventilens (13) udgang over en kontraventil (24) er forbundet med magnetventilens (23) udgang og forvarmerens (5) indgang, og at der mellem tilbageløbsventilen (11a) og pumpens (2) sugeside er anbragt et 5 yderligere drosselelement (25).Device according to claim 5, characterized in that in the supply line (4) in front of the preheater (5) there is a solenoid valve (23) closed during the preheating time, that the supply line (4) in front of the solenoid valve 35 (23) is over a pressure control valve (13). connected to the inlet side of the throttle element (12), that the pressure control valve outlet (13) over a check valve (24) is connected to the output of the solenoid valve (23) and the preheater (5) input, and that between the return valve (11a) and the pump (2) suction side is provided with an additional throttle element (25). 17. Anordning ifølge krav 16, kendetegnet ved, at drosselelementerne (12, 25) er udformet som blænder. 10Device according to claim 16, characterized in that the throttle elements (12, 25) are designed as apertures. 10 18. Anordning ifølge krav 16 eller 17, kendetegnet v e d, at tilbageløbsventilen (11a) er udformet som kontraventil.Device according to claim 16 or 17, characterized in that the return valve (11a) is designed as a non-return valve. 19. Anordning ifølge et af kravene 5-18, kendeteg net v e d, at pumpe (2) og forvarmer (5) er sammen-bygget.Device according to one of claims 5-18, characterized in that the pump (2) and preheater (5) are assembled.
DK063394A 1993-06-07 1994-06-06 Process for preheating oil for a burner with atomizer and device for carrying out the process DK170708B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE4318817 1993-06-07
DE4318817A DE4318817C2 (en) 1993-06-07 1993-06-07 Process for preheating oil for an oil burner with atomizer and device for carrying out the process

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DK63394A DK63394A (en) 1994-12-08
DK170708B1 true DK170708B1 (en) 1995-12-11

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA1086211A (en) * 1980-01-29 1980-09-23 Kenneth R. D. Emery Oil burner
DE3315213A1 (en) * 1983-04-27 1984-10-31 Erwin 7417 Pfullingen Weiß Oil preheating device for oil firing plants

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DK63394A (en) 1994-12-08
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Legal Events

Date Code Title Description
B1 Patent granted (law 1993)
PBP Patent lapsed