Liquid heating apparatus and operating methods
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
F24H-001/18
A47J-031/54
A47J-031/40
A47J-031/56
출원번호
US-0763433
(2014-01-22)
등록번호
US-10226152
(2019-03-12)
우선권정보
GB-1301297.6 (2013-01-24)
국제출원번호
PCT/GB2014/050174
(2014-01-22)
국제공개번호
WO2014/114935
(2014-07-31)
발명자
/ 주소
Howitt, James
Moughton, Colin Peter
출원인 / 주소
Strix Limited
대리인 / 주소
O'Shea Getz P.C.
인용정보
피인용 횟수 :
0인용 특허 :
8
초록▼
An apparatus for dispensing a predetermined volume of a warm liquid includes a heater, a pump and a temperature sensor sensitive to the temperature of the liquid upstream of the heater. A controller is arranged to receive upstream temperature data from the temperature sensor, calculate the amount of
An apparatus for dispensing a predetermined volume of a warm liquid includes a heater, a pump and a temperature sensor sensitive to the temperature of the liquid upstream of the heater. A controller is arranged to receive upstream temperature data from the temperature sensor, calculate the amount of energy required to reach a desired final temperature, energize the heater for a calculated period of ON time, and dispense liquid for a calculated period of time that is at least partly contemporaneous with the calculated period of ON time. After the heater has been de-energized, the dispensed liquid removes residual heat so that the average temperature after dispensing the predetermined volume is the desired final temperature.
대표청구항▼
1. A method of operating an apparatus comprising a heater and a pump to dispense a predetermined volume of a warm liquid, said method comprising the steps of: measuring the temperature of the liquid upstream of the heater;calculating an amount of energy required for the heater to heat the predetermi
1. A method of operating an apparatus comprising a heater and a pump to dispense a predetermined volume of a warm liquid, said method comprising the steps of: measuring the temperature of the liquid upstream of the heater;calculating an amount of energy required for the heater to heat the predetermined volume of the liquid from the upstream temperature to a desired final temperature;calculating a period of “ON” time required for energization of the heater to deliver the calculated amount of energy;energizing the heater for the calculated period of “ON” time;operating the pump during a first period of time to dispense a first volume of heated liquid at or above a predetermined initial temperature from an outlet of the apparatus, wherein the first period of time is at least partly contemporaneous with the calculated period of “ON” time;de-energizing the heater; andoperating the pump for a second period of time subsequent to the first period of time, the second period of time being calculated such as to dispense a second volume of the liquid from the outlet of the apparatus so as to remove substantially all residual heat from the heater, the first and second volumes together providing the predetermined volume heated by the calculated amount of energy,wherein the average temperature of the first and second volumes of the liquid is the desired final temperature after the predetermined volume has been dispensed. 2. A method as claimed in claim 1, wherein the heater comprises a flow heater in which liquid is permitted to enter and exit the heater while heating is taking place. 3. A method as claimed in claim 1, wherein the step of calculating the energy required for the heater to heat a predetermined volume of the liquid from the upstream temperature to a desired final temperature comprises measuring the temperature of, or downstream of, the heater. 4. A method as claimed in claim 1, further comprising delivering a constant flow rate of the liquid through the heater. 5. A method as claimed in claim 1, wherein the pump is a positive displacement pump arranged to deliver a constant flow rate of the liquid through the heater. 6. A method as claimed in claim 1, wherein the desired final temperature is between 27° C. and 4° C. 7. A method as claimed in claim 1, wherein the second period of time is longer than the first period of time. 8. A method as claimed in claim 1, wherein the second volume of liquid is greater than the first volume of liquid. 9. A method as claimed in claim 1, wherein the predetermined volume of liquid is selected by a user. 10. A method as claimed in claim 1, comprising calculating the first and second periods of time for operating the pump to dispense the first and second volumes of liquid. 11. A method as claimed in claim 1, further comprising measuring the mains supply voltage and adjusting operation of the heater and/or of the pump to take into account the mains supply voltage. 12. A method of operating an apparatus comprising a heater and an arrangement for dispensing a predetermined volume of a warm liquid, said method comprising the steps of: measuring the temperature of the liquid upstream of the heater;calculating an amount of energy required for the heater to heat the predetermined volume of the liquid from the upstream temperature to a desired final temperature;calculating a period of “ON” time required for energization of the heater to deliver the calculated amount of energy;energizing the heater for the calculated period of “ON” time;dispensing a first volume of directly heated liquid from an outlet of the apparatus during a first calculated period of time, wherein the first period of time is at least partly contemporaneous with the calculated period of “ON” time;de-energizing the heater; anddispensing a second volume of liquid from the outlet of the apparatus for a second calculated period of time subsequent to the first period of time, the second period of time being calculated such that the second volume of liquid is heated by removing substantially all residual heat from the heater, the first and second volumes together providing the predetermined volume heated by the calculated amount of energy, wherein the average temperature of the first and second volumes of the liquid is the desired final temperature after the predetermined volume has been dispensed. 13. A method as claimed in claim 12, wherein the desired final temperature is between 27° C. and 47° C. 14. A method as claimed in claim 12, wherein the predetermined volume of liquid is selected by a user. 15. An apparatus for dispensing a predetermined volume of a warm liquid, comprising a heater, a pump, a temperature sensor sensitive to the temperature of the liquid upstream of the heater, and a controller arranged to: receive upstream temperature data from the temperature sensor,calculate the amount of energy required for the heater to heat a predetermined volume of the liquid from the upstream temperature to a desired final temperature,calculate a period of “ON” time required for energization of the heater to deliver the calculated amount of energy,energize the heater for the calculated period of “ON” time,operate the pump during a first period of time to dispense a first volume of heated liquid at or above a predetermined initial temperature from an outlet of the apparatus, wherein the first period of time is at least partly contemporaneous with the calculated period of “ON” time,de-energize the heater, andoperate the pump for a second period of time subsequent to the first period of time, the second period of time being calculated such as to dispense a second volume of the liquid from the outlet of the apparatus so as to remove substantially all residual heat from the heater, the first and second volumes together providing the predetermined volume heated by the calculated amount of energy;wherein the average temperature of the first and second volumes of the liquid is the desired final temperature after dispensing the predetermined volume. 16. An apparatus as claimed in claim 15, wherein the heater comprises a flow heater in which liquid is permitted to enter and exit the heater while heating is taking place. 17. An apparatus as claimed in claim 15, comprising a reservoir for supplying liquid to the heating means, and optionally an intermediate holding chamber between the reservoir and the pump, wherein the temperature sensor is located in the reservoir or in the intermediate holding chamber. 18. An apparatus as claimed in claim 15, wherein the desired final temperature is between 27° C. and 47° C. 19. An apparatus as claimed in claim 15, comprising an input to allow the predetermined volume of liquid to be selected by a user. 20. An apparatus as claimed in claim 15, wherein the controller is arranged to measure the mains supply voltage and adjust operation of the heater and/or of the pump to take into account the mains supply voltage.
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