EP3883882A1 - Elektronisches kraftstoffeinfüllsystem mit verbesserter sicherheit - Google Patents

Elektronisches kraftstoffeinfüllsystem mit verbesserter sicherheit

Info

Publication number
EP3883882A1
EP3883882A1 EP20900691.5A EP20900691A EP3883882A1 EP 3883882 A1 EP3883882 A1 EP 3883882A1 EP 20900691 A EP20900691 A EP 20900691A EP 3883882 A1 EP3883882 A1 EP 3883882A1
Authority
EP
European Patent Office
Prior art keywords
battery
fuel
main body
electronic circuit
sensor
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn
Application number
EP20900691.5A
Other languages
English (en)
French (fr)
Other versions
EP3883882A4 (de
Inventor
Berkehan BULGURCU
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Bulgurcu Bilgen Goezde
Original Assignee
Bulgurcu Bilgen Goezde
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 Bulgurcu Bilgen Goezde filed Critical Bulgurcu Bilgen Goezde
Publication of EP3883882A1 publication Critical patent/EP3883882A1/de
Publication of EP3883882A4 publication Critical patent/EP3883882A4/de
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D7/00Apparatus or devices for transferring liquids from bulk storage containers or reservoirs into vehicles or into portable containers, e.g. for retail sale purposes
    • B67D7/06Details or accessories
    • B67D7/32Arrangements of safety or warning devices; Means for preventing unauthorised delivery of liquid
    • B67D7/34Means for preventing unauthorised delivery of liquid
    • B67D7/344Means for preventing unauthorised delivery of liquid by checking a correct coupling or coded information
    • B67D7/346Means for preventing unauthorised delivery of liquid by checking a correct coupling or coded information by reading a code
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D7/00Apparatus or devices for transferring liquids from bulk storage containers or reservoirs into vehicles or into portable containers, e.g. for retail sale purposes
    • B67D7/06Details or accessories
    • B67D7/32Arrangements of safety or warning devices; Means for preventing unauthorised delivery of liquid
    • B67D7/3209Arrangements of safety or warning devices; Means for preventing unauthorised delivery of liquid relating to spillage or leakage, e.g. spill containments, leak detection

Definitions

  • This invention relates to an electronic fuel filling system with improved security which is fixedly inserted into standard overflow buckets during fuel supply into storage tanks in fuel filling stations, thusly preventing unauthorized filling and preventing wrong filling, which comprises smaller and less movable pieces in its inner structure, in which suitability and status of use of a changeable battery can be controlled with an ID system, which enables continuous use of a product with an alarm before discharge, which detects disassembly thereof thanks to a multiaxial accelerometer and a vibrometer with maximum security and a magnetic field detector hall effect sensor, which transmits information, and in which fuel type and fuel quality may be detected with the sensor therein.
  • Crude oil Liquid state hydrocarbons formed by alteration of organic material within layers of soil and stored within these layers is called as crude oil.
  • the prefix “crude” in fuel means that it is a raw material and not yet processed. Crude oil is converted into a number of intermediates and fuel products intended for daily use by being resolved (refined) in refineries.
  • chambers in tanks in tank trucks with which transport from refineries to fuel stations are realized. These chambers are formed so that fuels are not mixed into each other, and each chamber is filled with a different fuel (gasoline, diesel fuel, etc.), and transport of tank truck to fuel station is realized accordingly.
  • a different fuel gasoline, diesel fuel, etc.
  • storage in fuel stations there are also more than one storage in fuel stations to store these fuels. Each storage is filled with a different kind of fuel and the distribution is performed into this storage. These storages are above and/or below ground in fuel stations, and filler orifices may be on tank lid or close and/or distant to storages.
  • a flow line is formed between the tank truck and storages and the fuel within chambers of the tank truck is transferred into storages by means of this flow line with the aid of gravity and pump.
  • the flow line used for this procedure is enabled by means of an elastic hose with a connection member on both sides.
  • One end of this elastic hose is connected to the outlet of a chamber within the tank truck by a person, and the other end is connected to the orifice of the storage within which the same kind of fuel is stored, and the transfer is realized accordingly.
  • this procedure is completely realized under the initiative of a person. This causes emergence of some serious risks.
  • the most common of these situations is connection of an end of the flow line mounted to the tank truck and connection of the other end to a different fuel storage, or to a storage with a different kind of fuel.
  • the end of the flow line mounted to the tank truck is connected to the diesel fuel chamber, and the other end is connected to the gasoline storage under the fuel station and transfer is realized that way.
  • diesel fuel within a chamber of the tank truck is transferred into the storage storing gasoline by means of the flow line and in this case diesel fuel and gasoline will be mixed inside the storage storing gasoline.
  • mixture of diesel fuel and gasoline as it is not possible to distill these two fuels from each other, it will lead to complete cleaning of the storage with this mixture and will render these fuels useless.
  • this mixed fuel may be transferred into vehicle fuel tanks by means of fuel pumps. Transfer of a fuel into a vehicle functioning with a different kind of fuel and injection of this mixture into an engine may cause serious malfunctions. Thus, it is of great importance that both ends of a flow line are inserted into right chambers and storages.
  • a Smart Fuel Filler Elbow with application number TR2017/10647 in the prior art consists of a device enabling the prevention of wrong fuel and/or unqualified fuel supply to wrong tank truck by analyzing fuel quality and kind with a number of physical parameters by means of a sensor comprising mechanical resonators during fuel supply into storage tanks in fuel filler stations via a measurement unit, and a smart fuel filler elbow with mobile qualifications which can be carried by a user and easily transported to an area of use.
  • the fuel filling elbow is attempted to be inserted onto the orifice of the fuel storage tank. This procedure is difficult and time-consuming particularly in filling point sub-traffic stations.
  • the invention has a feature of comprehending the fuel type of the filling point in accordance with the magnet's pole on the filling orifice via a magnetic sensor comprised as an advantage.
  • This invention relating to an electronic fuel filling system with improved security which is fixedly inserted into standard overflow buckets during fuel supply into storage tanks in fuel filling stations, thusly preventing unauthorized filling and preventing wrong filling, which comprises smaller and less movable pieces in its inner structure, in which suitability and status of use of a changeable battery can be controlled with an ID system, which enables continuous use of a product with an alarm before discharge, which detects disassembly thereof thanks to a multiaxial accelerometer and a vibrometer with maximum security and a magnetic field detector hall effect sensor, which transmits information, and in which fuel type and fuel quality may be detected with the sensor therein overcomes all aforementioned disadvantages characterized in that a mulfunction is not caused due to the fact that wrong filling to the fuel storages in the fuel stations is prevented, the main body is smaller, financial losses in the stations may be prevented by overcoming non-use of this device by the operator and unauthorized filling with fixed use in the stations with sub-traffic filling points via eliminations of problems caused by the
  • a buoy consisting of an outer cover, a magnet and a sensor sensing the magnet in the filling elbows causing the malfunctioning risk and enabling fuel supply depending on whether there is a filling or not by measuring the level of fuel inside the filling elbow body.
  • This level measurement procedure is performed with the capability of sensing air of the sensor in the prior art and absence of fuel in case of incoming air and presence of fuel in case of air absence and in this case adaptation of this situation into the system with a change in the software, and thusly use of the buoy is eliminated and number of the used movable parts is decreased.
  • the battery card checks the battery and detects the energy spent on the filling procedure by taking voltage, current and time measurements, and thusly fullness level of the battery is determined or calculated.
  • the device cannot function due to the inability of overcoming ID control due to inappropriate matching even if a different battery with the same features is inserted during battery change.
  • the valid provision for activation of the device is ID suitability between battery-battery card-electronic circuit.
  • the battery box is reinforced with resin in order for having a security feature against shocks and impacts while inserting the battery into the battery box. Thanks to resin- reinforcement, intervention by unauthorized people is rendered difficult as battery cannot be separated from the battery box easily.
  • the junction box There is an electronic card inside the junction box on the main body.
  • the data collected on the electronic card is shared by the central server or the main client via the communication system.
  • the fuel filling stations are followed from a center.
  • follow from one single center enables control and follow of individual stations by fuel companies.
  • the hall effect sensor on the main card with the ring magnet inserted on the S adapter closes itself and sends this information to the central server in case the magnetic field formed by the ring magnet with magnetic field forming and sensing is moved away from the distance to be sensed by the sensor, or in case a multiaxial accelerometer and vibrometer sensor preassigned to the device are moved away from angle and distance ranges of necessity or in case of sudden high vibrations.
  • use status of the device can be analyzed and the fillings can be conducted securely.
  • Fig. 1- General view of the filling system.
  • FIG. 2- General view of the filling system.
  • FIG. 3- View of the filling system as inserted into the standard overflow buckets.
  • Fig. 4- View of the filling system as inserted into the standard overflow buckets.
  • Fig. 6- Electronic circuit detailed view in the filling system.
  • Fig. 7 Electronic circuit and battery card detailed view in the filling system.
  • Fig. 8- Graphic illustrating differentiation of fuel types with dielectric coefficient.
  • the invention consists of a main body (1) inserted onto the orifice of fuel tank trucks used for fuel transfer; a junction box (2) with a protection accommodation function which can be seen and accessed by a user on the side on the main body (1); an indicator (5) being present on the junction box (2) and notifying the user relating to the procedures; an electronic circuit (4) being present in the junction box (2) and enabling all electronic control; a battery (3) being on side of the junction box (2) on the main body (1) and providing the electronic circuit (4) with the electrical energy of need; a S adapter (6) inserted into standard overflow buckets of the main body (1) and facilitating inserting thereof into a narrow place; a ring magnet (9) being present on the S adapter and forming a magnetic field; a hall effect sensor (12) sensing the magnetic field and detecting the disassembly with distancing of the magnetic field; a multiaxial accelerometer sensor (10) and a vibrometer sensor (11) detecting the disassembly of the system by sensing movement and sudden high vibrations on
  • the electronic fuel filling system there is a main body (1) which comprises all components thereon, which can be inserted into the standard overflow buckets in the fuel stations and which can stand still.
  • a battery (3) on the side of the main body (1).
  • New generation battery (3) also identified in global standards comprising features to be hold by devices to function in explosive areas with additional protection thanks to the exproof feature and changed on a certain basis provides warning close to battery (3) depletion with battery level indicator, thusly continuous use thereof is enabled, has an ID protection integrated into the electronic card (4) and the battery (3) with the battery card (8) having renewed protection circuit, and prevents wrong battery insertion by not functioning unless a compatible battery (3) is inserted.
  • the electronic filling system with improved security has been rendered more compact.
  • the battery card (8) connects to the electronic card (4) on the battery (3).
  • the battery card (8) detects the energy spent on filling by checking the battery (3) and determined the battery (3) life.
  • the system cannot function as ID control cannot be overcome even if the same battery (3) is inserted during the battery (3) change.
  • the valid provision for activation of the system is ID suitability between battery (3)-battery card (8)-electronic circuit (4).
  • the battery box (7) is reinforced with resin in order for having a security feature against shocks and impacts while inserting the battery (3) into the battery box (7).
  • the product has been rendered more compact with dimensional shrinking of the indicator (5) enabling monitoring of the filling stages on the product and thusly enabling easy visibility of warnings by a user and enabling of a situation in case of a wish to mount other systems thereon with displacement thereof.
  • the sensor connects to the electronic circuit (4) with contact to the fuel inside the main body (1).
  • the sensor detects the dielectric coefficient of the fuel passing through the main body (1).
  • a separate sensor conducts temperature measurement. Said two sensors transmit the sensed data to the electronic circuit (4).
  • the sensor may determine fuel, air, fuel mixture and fuel quality passing through the main body (1) with the dielectric coefficient. In accordance with this determination, filling is not performed unless fuel type and fuel quality desired by the fuel station are not present.
  • the fluid inside the system may be detected completely.
  • the dielectric coefficient of the air is 1 ; the one of the diesel fuel is 2.19 and the one of the gasoline is 2.39. These values vary depending on products of the company, additives used and environmental conditions. With respect to these coefficient ranges, the desired fuel is filled into the desired section, and filling is not performed before detection of the dielectric coefficient range of the desired fuel quality.
  • Detection of undesired liquids such as cleaning liquids or water inside the tank trucks during the filling into the filling tanks is also determined with the dielectric coefficient by the sensor. The filling procedure stops in such case. Entry of such liquids into the filling tank is prevented.
  • the dielectric coefficient determination in the electronic circuit (4) is conducted mathematically. Temperature value is required in such mathematical calculation.
  • the dielectric coefficient is calculated at 15°C fixed temperature according to this system. Thusly, during calculation, the dielectric coefficient calculated in accordance with the current environmental temperature value measured with the temperature sensor is converted into the dielectric coefficient at fixed 15°C with mathematical calculation.
  • the electronic circuit (4) may send the collected data to peripheral devices and/or main server and central client via the communication system.
  • the fuel companies may control and remotely follow the filling stations.
  • the fact that there is a movable part in the main body (1) and buoy part with a risk of failure due to contamination factors is eliminated has decreased malfunctioning risk. With this feature, costs and risks are minimized.
  • junction box (2) Thanks to the aforementioned integrations and improvements performed on the junction box (2) section, the system is rendered accessible for intervention from a single section, and use and maintenance facilities are provided. As the junction box (2) has all components therein, access may be enabled from a single junction box (2) on the main body (1).
  • a novel S adapter (6) rather than a flat adapter is used for prevention of fitting problem caused by contact of the junction box sections to the filling sections during product insertion into the standard overflow bucket in the prior art, thusly overcoming this problem.
  • the hall effect sensor on the electronic circuit (4) and the ring magnet inserted on the S adapter (6) communicate thanks to the magnetic field and it closes itself when the magnetic field is distanced during disassembly, or when the multiaxial accelerometer and vibrometer sensor on the main body (1) preassigned to the device are moved away from angle ranges or distances of necessity or in case of sudden high vibrations, it closes itself and sends this information to the central server.
  • the multiaxial accelerometer and vibrometer sensor on the main body (1) preassigned to the device are moved away from angle ranges or distances of necessity or in case of sudden high vibrations, it closes itself and sends this information to the central server.
  • use status of the device can be analyzed and the fillings can be conducted securely.
  • the product has a smaller structure, fits into the standard overflow buckets, leads to the elimination of the structure called filling cabinet, costs are reduced and is enabled to be used in sub traffic stations filling points and all other stations.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Details Of Rigid Or Semi-Rigid Containers (AREA)
  • Cooling, Air Intake And Gas Exhaust, And Fuel Tank Arrangements In Propulsion Units (AREA)
EP20900691.5A 2019-12-24 2020-06-08 Elektronisches kraftstoffeinfüllsystem mit verbesserter sicherheit Withdrawn EP3883882A4 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
TR2019/21344A TR201921344A2 (tr) 2019-12-24 2019-12-24 Güvenli̇ği̇ arttirilmiş elektroni̇k yakit dolum si̇stemi̇
PCT/TR2020/050497 WO2021133291A1 (en) 2019-12-24 2020-06-08 Electronic fuel filling system with improved security

Publications (2)

Publication Number Publication Date
EP3883882A1 true EP3883882A1 (de) 2021-09-29
EP3883882A4 EP3883882A4 (de) 2022-08-24

Family

ID=76328023

Family Applications (1)

Application Number Title Priority Date Filing Date
EP20900691.5A Withdrawn EP3883882A4 (de) 2019-12-24 2020-06-08 Elektronisches kraftstoffeinfüllsystem mit verbesserter sicherheit

Country Status (3)

Country Link
EP (1) EP3883882A4 (de)
TR (1) TR201921344A2 (de)
WO (1) WO2021133291A1 (de)

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3868045B2 (ja) * 1996-12-20 2007-01-17 極東開発工業株式会社 積込油種確認装置及び混油防止装置
US8731725B2 (en) * 2009-01-16 2014-05-20 Scully Signal Company Truck compartment verification system with alternate truck ID
WO2013023129A1 (en) * 2011-08-11 2013-02-14 Soneco Llc Securing product storage tanks against unauthorized delivery
CA2904777C (en) * 2012-11-08 2023-04-04 Delaware Capital Formation, Inc. Cross contamination control systems with fluid product id sensors
TR201710647A2 (tr) * 2017-07-20 2017-10-23 Bulgurcu Berkehan Bi̇r akilli yakit dolum di̇rseği̇
WO2019158945A1 (en) * 2018-02-16 2019-08-22 Berrys (Holdings) Technologies Limited Fuel delivery spout for avoiding misfuelling and method therefor

Also Published As

Publication number Publication date
TR201921344A2 (tr) 2020-06-22
EP3883882A4 (de) 2022-08-24
WO2021133291A1 (en) 2021-07-01

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