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    • 41. 发明专利
    • Solar heat use heat source device
    • 太阳能热利用装置
    • JP2011027306A
    • 2011-02-10
    • JP2009172222
    • 2009-07-23
    • Gastar Corp株式会社ガスター
    • KIMURA KOTAROMOGI TORU
    • F24H1/00F24J2/04F24J2/42
    • Y02B10/20Y02E10/44
    • PROBLEM TO BE SOLVED: To provide a solar heat use heat source device installable in collective housing and achieving energy saving. SOLUTION: A heat collector 1 for collecting solar heat is installed in a balcony handrail part of the collective housing so that a solar heat receiving surface faces vertically. The heat collector 1 heats inner liquid by heat of sunlight received by the light receiving surface, and is formed by connecting a liquid circulation passage 5 for circulating the liquid with a liquid passage 4 within an apparatus case 42. A reheating circulation passage 13 connected to a bathtub 27 is thermally connected to the liquid circulation passage 5 via a liquid and liquid heat exchanger 7. When the temperature inside the heat collector 1 detected by an inner liquid temperature sensor 3 is higher than detection temperature by a bath temperature sensor 21, heat exchange is performed between liquid circulated in the liquid circulation passage 5 and hot water passing through the reheating circulation passage 13 via the liquid-liquid heat exchanger 7, so as to reheat the bathtub hot water by heat collected by the heat collector 1. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种安装在集体住房中并实现节能的太阳能热利用热源装置。 解决方案:用于收集太阳热的集热器1安装在集体壳体的阳台扶手部分中,使得太阳能受热表面垂直面对。 集热器1通过由受光面接收的太阳光的热量来加热内部液体,并且通过将液体循环通道5与液体通道4连接在设备壳体42内而形成。再加热循环通道13连接到 浴缸27通过液体和液体热交换器7与液体循环通道5热连接。当内部液体温度传感器3检测到的集热器1内部的温度高于浴温传感器21的检测温度时,加热 在液体循环通道5中循环的液体和通过液 - 液热交换器7通过再加热循环通道13的热水之间进行交换,以便通过集热器1收集的热量再加热浴缸热水。

      版权所有(C)2011,JPO&INPIT

    • 44. 发明专利
    • COMBUSTOR
    • JPH1137456A
    • 1999-02-12
    • JP20730297
    • 1997-07-16
    • GASTAR CORP
    • KOSHIMIZU DAISUKEKIMURA KOTARO
    • F23N5/00
    • PROBLEM TO BE SOLVED: To provide a combustor which generates no oscillated combustion by forcibly restricting the downstream pressure fluctuation. SOLUTION: A combustor 10 includes a burner 12, a combustion chamber 13 which is provided with a heat exchanger heated by the burner, a fuel supply portion 14 which supplies a fuel gas, an air supply portion 15 which supplies combustion air, and a mixing portion 11 which regulates and mixes the fuel gas and the combustion air fed from the fuel supply portion 14 and the air supply portion 15 and supplies the mixture gas to the burner. At the downstream of the fuel supply portion 14, detection means 17 which detects an oscillation and a control part 18 which controls the supply amount of fuel gas from the fuel supply portion 14 on the basis of the period of oscillation when the detection means detects the oscillation are provided.
    • 45. 发明专利
    • COMPLEX HOT WATER FEEDING DEVICE
    • JPH09269148A
    • 1997-10-14
    • JP10332596
    • 1996-03-29
    • GASTAR CORP
    • SAITO TOSHIHISAFUKUZAWA KIYOSHIOKAMOTO KIKUOWATANABE HISAYASUKIMURA KOTARO
    • F24H1/00F24H1/46
    • PROBLEM TO BE SOLVED: To provide a complex hot water feeding device in which hot water showing a less amount of variation in hot water temperature when the hot water is discharged again even if a bath burner is ignited during a stopped state of hot water feeding combustion. SOLUTION: When a bath burner combustion is carried out within a period (a setting wait time) in which a stabilization of temperature of hot water to be fed again during a stopped state of hot water feeding combustion can be attained, a bath capability reduction control section 1 estimates and detects a temperature of residual hot water in response to a data of temperature characteristic of the residual hot water in a hot water feeding heat exchanger made at a hot temperature estimating section 2, a bath combustion capability is controlled to be lower than a normal set combustion capability during a normal operation in response to a displacement amount where this estimated temperature of hot water is displaced in respect to a set temperature of feeding hot water, and a cooling promoting phenomenon of the residual hot water caused by a rotational driving of a combustion fan or a post-boiling temperature increasing phenomenon is restricted. A memory 8 stores in advance data in a releasing segment arranged before a terminal point from the terminal point of a set waiting time. In the case that the bath burner combustion is not detected from a stopped state of hot water feeding combustion to a starting time of releasing section, a capability reduction control stopping section 5 does not start its subsequent bath capability reduction controlling operation.
    • 47. 发明专利
    • COMBINATION HOT WATER SUPPLYING APPARATUS
    • JPH0996445A
    • 1997-04-08
    • JP27648895
    • 1995-09-29
    • GASTAR CORP
    • SAITO TOSHIHISAWATANABE HISAYASUKIMURA KOTAROOKAMOTO KIKUOFUKUZAWA KIYOSHI
    • F24H1/00F24H1/46F24H9/00
    • PROBLEM TO BE SOLVED: To keep a balance between a bath burner combustion and a hot water supply resumption hot water temperature stabilizing control, during a set stand-by period of time from the stop of a hot water supplying combustion to the beginning of a longest resumption of a hot water supplying. SOLUTION: The data of a bath burner combustion capability when a bath burner combustion is performed during a set stand-by period of time, is provided to a bath capability data memory unit 51 as bath capability data, in response to a hot water supply operating condition parameter prior to the stoppage of a hot water supplying combustion, and in an operating condition parameter memory unit 49, the hot water supply operating condition parameter prior to the stoppage of the hot water supplying combustion is stored. The stored data and the bath capability data are collated by a bath capability adjusting/controlling unit 50, and a maximum combustion capability and a minimum combustion capability are switched by the combustion capability of the bath capability data in response to the hot water supply operating condition parameter prior to the stoppage of the hot water supplying combustion, and the combustion capability of the bath burner when the bath burner combustion is performed without performing the resumption of a hot water supplying during the set stand-by period of time, is controlled.
    • 48. 发明专利
    • HOT WATER FEEDER
    • JPH08200812A
    • 1996-08-06
    • JP3610395
    • 1995-01-31
    • GASTAR CORP
    • SAITO TOSHIHISAWATANABE HISAYASUHAYASHI HITOSHIKIMURA KOTARO
    • F23N5/02F24H1/10
    • PURPOSE: To stabilize a hot water temperature by suppressing the occurrence of undershooting and overshooting as much as possible during re-outflow of hot water. CONSTITUTION: An after-boiling time setting means 23 is provided to set an after-boiling time after completion of hot water feed operation based on a combustion condition parameter. After a lapse of the set after-boiling time, a heat insulation time responding to a quantity of a holding heat of a burner device is set by a fan rotation set command part 24. During the time, a combustion fan 5 is rotated and a quantity of a holding heat of a burner device is added to a heat-exchanger. A remaining hot water temperature in the heat- exchanger is insulated to suppress undershooting of a feed hot water temperature during the re-feed of hot water after completion of hot water feed operation. Further, a time of a post fan to rotate the combustion fan 5 consecutively after completion of combustion operation of a burner device is set to a minimum short time set by a post fan time setting means 28 and an excessive increase in after-boiling temperature is suppressed.
    • 49. 发明专利
    • COMBUSTING DEVICE
    • JP2000121043A
    • 2000-04-28
    • JP30784698
    • 1998-10-14
    • GASTAR CORP
    • KOSHIMIZU DAISUKEKIMURA KOTARO
    • F23N5/00
    • PROBLEM TO BE SOLVED: To forcibly suppress the pressure variation at a downstream side and prevent vibration combustion, by providing a detecting means for detecting vibration at a downstream of a fuel feeding portion, and, when the vibration is detected, by controlling an air supplying portion so that combustion air is supplied with its amount being varied with a frequency which is behind the frequency of the vibration. SOLUTION: A fuel gas fed from a fuel feeding portion 14 and combustion air supplied from an air supply portion 15 are mixed in a mixing portion 11, followed by regulating the pressure so as to produce a mixed gas having a given pressure, at the time of operating a combusting device 10. A combustion chamber 13 and a heat exchanger in a heat exchanging/discharging portion 16 are heated by combusting the mixed gas by means of a burner 12, thereby heating a fluid. A control unit 18 controls the amount of the fuel gas to be fed in accordance with the required quantity of heat, and when a pressure sensor 17 detects a pressure variation of the mixing portion 11, a supply system of the combustion air, that is, the number of revolution of a fan, is controlled on the basis of the pressure variation. Thus, a statically determinate control of the pressure variation is conducted, thereby forcibly suppressing the pressure variation at a downstream side of the fuel feeding portion 14.
    • 50. 发明专利
    • COMBUSTION EQUIPMENT
    • JPH11325597A
    • 1999-11-26
    • JP14238598
    • 1998-05-08
    • GASTAR CORP
    • KIMURA KOTAROYAMAGUCHI TATSUO
    • F24H1/10
    • PROBLEM TO BE SOLVED: To effectively avoid freezing of a water in a reheating circulating passage of a bathtub water. SOLUTION: Data of a temperature change with respect to a time of a retained water in an external piping 31 of a reheating circulating passage 23 of a bathtub water is previously given. A circulating pump 17 is driven at the time of a fear of freezing such as in winter or the like, a hot water of a bathtub 18 is circulated to the passage 23, and a water temperature in the passage 23 is detected by a bath temperature sensor 21 immediately before stopping of the pump 17. A pump waiting allowing time required to lower the water of an external piping to a water temperature immediately before the water is frozen from the detected water temperature is obtained based on the detected water temperature and the data. When a lapse time from the stop of the pump 17 arrives at the allowing time, the pump 17 is driven to prevent freezing of the water in the passage 13.