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    • 1. 发明专利
    • Water supply preheating system
    • 供水预热系统
    • JP2013164173A
    • 2013-08-22
    • JP2012025890
    • 2012-02-09
    • Tokyo Gas Co Ltd東京瓦斯株式会社Yazaki Energy System Corp矢崎エナジーシステム株式会社Techno Yazaki Kkテクノ矢崎株式会社
    • ITO HIDEJIMABUCHI HARUKAKOSHIMIZU DAISUKEWASHIO RYO
    • F24H1/00
    • PROBLEM TO BE SOLVED: To provide a water supply preheating system capable of performing water supply and preheating efficiently while suppressing installation cost and an installation space.SOLUTION: A water supply preheating system includes: a solar heat collector 2; a first heat medium cyclic path 3 connected with the solar heat collector 2 and allowing a first heat medium to circulate therein; a heat collecting heat exchanger 4 connected to the first heat medium cyclic path; a second heat medium cyclic path 5 connected to the heat collecting heat exchanger and allowing a second heat medium to circulate therein; a heat storage tank 6 connected to the second heat medium cyclic path and storing the second heat medium heated by heat exchange with the first heat medium; a bypass path 11 for bypassing the second heat medium from an upstream side to a downstream side of the heat storage tank; a water supply preheating heat exchanger 7 enabling heat exchange between the second heat medium circulating in the second heat medium cyclic path and supply water; and a switching 12 capable of switching to a direct water supply preheating passage with the second heat medium circulating therein via the bypass path between the heat collecting heat exchanger and the water supply preheating heat exchanger or an indirect water supply preheating passage with the second heat medium circulating therein via the heat storage tank between the heat collecting heat exchanger and the water supply preheating heat exchanger.
    • 要解决的问题:提供一种能够在抑制安装成本和安装空间的同时有效地进行供水和预热的供水预热系统。解决方案:一种供水预热系统,包括:太阳能集热器2; 与太阳能集热器2连接并允许第一热介质在其中循环的第一热介质循环路径3; 连接到第一热介质循环路径的集热热交换器4; 连接到集热热交换器并允许第二热介质在其中循环的第二热介质循环路径5; 连接到第二热介质循环路径的蓄热罐6,并且通过与第一热介质的热交换而加热的第二热介质; 旁路路径11,其用于从所述蓄热槽的上游侧向下游侧旁通所述第二热介质; 能够在第二热介质循环路径中循环的第二热介质与供水之间进行热交换的供水预热热交换器7; 以及开关12,其能够通过第二热介质在集热热交换器和供水预热用热交换器之间的旁通路径或与第二热介质的间接供水预热通路相连接的直接供水预热通道切换 在集热热交换器和供水预热用热交换器之间经由蓄热箱循环。
    • 2. 发明专利
    • Heat source machine unit and method of assembling the same
    • 热源机组及其组装方法
    • JP2011158129A
    • 2011-08-18
    • JP2010018309
    • 2010-01-29
    • Gastar CorpRinnai CorpTokyo Gas Co Ltdリンナイ株式会社東京瓦斯株式会社株式会社ガスター
    • KIMURA KOTAROITO HIDEJISASAKI HIROAKI
    • F24H9/06F24H1/00F24H1/12
    • PROBLEM TO BE SOLVED: To mount and fix a heat source machine on a mounting table without lifting up the heat source machine. SOLUTION: A back-side mounting backing plate 58 having a mounting screw hole 59 is disposed at a back side of an upper end of the mounting table 46, and receiving pieces 62a, 62b having mounting screw holes 63a, 63b are disposed at a front side. A back-side mounting bracket 64 having a mounting hole 65 at its back side, is disposed on a lower end of the heat source machine 20, and front-side mounting brackets 66a, 66b having mounting holes 67 are disposed at a front side. The mounting table 46 is laid in a state in which its front side faces upward, the heat source machine 20 is also laid in a state in which its front side faces upward, the corresponding back-side mounting bracket 64 and front-side mounting brackets 66a, 66b are placed on front faces of the back-side mounting backing plate 58 and the receiving pieces 62a, 62b, screws 74 are inserted to the mounting holes, engaged with the screw holes and fastened to fix the heat source machine 20 to the mounting table 46, and then the heat source machine 20 is raised to be vertically placed. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:将热源机安装固定在安装台上,而不必抬起热源机。 解决方案:具有安装螺纹孔59的后侧安装背板58设置在安装台46的上端的后侧,并且设置有具有安装螺钉孔63a,63b的接收片62a,62b 在前方 其后侧具有安装孔65的背面安装支架64设置在热源机20的下端,具有安装孔67的前侧安装支架66a,66b设置在前侧。 安装台46处于其前侧朝上的状态,热源机20也处于其前侧朝上的状态,对应的背面安装支架64和前侧安装支架 66a,66b被放置在背面安装背板58的前表面上,并且接收片62a,62b,螺钉74插入到安装孔中,与螺钉孔接合并紧固以将热源机20固定到 安装台46,然后将热源机20升高成垂直放置。 版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Solar heat hot water supply device
    • 太阳能热水供应装置
    • JP2011153718A
    • 2011-08-11
    • JP2010013647
    • 2010-01-25
    • Gastar CorpRinnai CorpTokyo Gas Co Ltdリンナイ株式会社東京瓦斯株式会社株式会社ガスター
    • KANI YOSHIMIKISASAKI HIROAKIKIMURA KOTAROITO HIDEJI
    • F24H1/00F24S90/00
    • Y02E10/40
    • PROBLEM TO BE SOLVED: To provide a solar heat hot water supply device capable of efficiently heating a heat medium according to necessity of a reheating operation when the heat medium circulated in a heat medium circulation pipe conduit is heated by utilizing an auxiliary heat source machine, and preventing superheat of the heat medium even when an amount of insolation is changed during the reheating operation. SOLUTION: In performing the reheating operation for heating the heat medium in the heat medium circulation pipe conduit 7 at an auxiliary heating section 141 by circulating a heated auxiliary heat medium to a circulation pipe conduit for heating by operating the auxiliary heat source machine 3, a heat medium circulation passage is switched so that the heat medium is not circulated to a solar heat collector 1 in starting the reheating operation but circulated to a bypass passage 14 communicating a heat medium circulation going way 7a and a heat medium circulation returning way 7c, and the heat medium circulation passage is switched so that the heat medium is circulated to the solar heat collector 1 in a heat collecting state of the solar heat collector 1 during the reheating operation. COPYRIGHT: (C)2011,JPO&INPIT
    • 解决的问题:提供一种太阳能热水供给装置,其能够在通过利用辅助热量来加热在热介质循环管路中循环的热介质时,根据需要进行再热作业而有效地加热热介质 并且即使在再加热操作期间改变日照量时也防止热介质的过热。 解决方案:在辅助加热部分141进行用于加热热介质循环管道7中的热介质的再加热操作时,通过使辅助加热部件141通过操作辅助热源机器循环加热的辅助热介质到循环管道进行加热 在图3中,切换热介质循环通道,使热介质在开始加热操作时不会循环到太阳能集热器1中,而循环到与热介质循环通道7a连通的旁通通道14和热介质回流回路 7c,并且热介质循环通道被切换,使得热介质在再加热操作期间在太阳能集热器1的集热状态下循环到太阳能集热器1。 版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Solar heat hot water supply system
    • 太阳能热水供应系统
    • JP2011149673A
    • 2011-08-04
    • JP2010013468
    • 2010-01-25
    • Gastar CorpRinnai CorpTokyo Gas Co Ltdリンナイ株式会社東京瓦斯株式会社株式会社ガスター
    • KANI YOSHIMIKISASAKI HIROAKIKIMURA KOTAROITO HIDEJI
    • F24H1/00F24H1/10
    • PROBLEM TO BE SOLVED: To provide a solar heat hot water supply system capable of properly performing an antifreezing operation without separately disposing an outside air temperature sensor. SOLUTION: This solar heat hot water supply system includes a heat medium circulation pipe conduit 7 for circulating a heat medium between a solar heat collector 1 and a hot water storage tank 2, a heat medium circulation pump P of the heat medium circulation pipe conduit 7, a circulation pipe conduit 15 for reheating, branched from a warm water circulation pipe conduit 17 of an auxiliary heat source machine 3, and connected with a liquid-liquid heat exchange section 141 disposed in the heat medium circulation pipe conduit 7, an opening/closing valve 151 for the circulation pipe conduit 15 for reheating, and a control section C. The auxiliary heat source machine 3 has a function of the antifreezing operation for circulating the warm water in the warm water circulation pipe conduit 17. The control section C executes control to perform the antifreezing operation of the heat medium circulation pipe conduit 7 by driving the heat medium circulation pump P and circulating the heat medium in the heat medium circulation pipe conduit 7 in conjunction with the antifreezing operation of the auxiliary heat source machine 3, and to perform the antifreezing operation of the circulation pipe conduit 15 for reheating by opening the opening/closing valve 151 of the circulation pipe conduit 15 for reheating and circulating the warm water in the circulation pipe conduit 15 for reheating. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够在不分开设置外部空气温度传感器的情况下适当地执行防冻操作的太阳能热水供水系统。 解决方案:该太阳能热水供水系统包括用于在太阳能集热器1和热水储罐2之间循环热介质的热介质循环管道7,热介质循环泵 管道7,用于再热的循环管道15,其由辅助热源机3的温水循环管道17分支,并与设置在热介质循环管道7中的液 - 液热交换部分141连接, 用于再加热的循环管道15的开闭阀151以及控制部C.辅助热源机3具有用于使温水循环管路17中的温水循环的防冻操作的功能。控制 C部执行控制,通过驱动热介质循环泵P并循环热介质i来进行热介质循环管路7的防冻操作 n与辅助热源机3的防冻操作结合的热介质循环管路7,通过打开循环管路15的开闭阀151来进行循环管路15的再加热防冻操作 用于对循环管道15中的温水进行再加热和循环,以再加热。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Solar heat hot water supply system
    • 太阳能热水供应系统
    • JP2011149672A
    • 2011-08-04
    • JP2010013462
    • 2010-01-25
    • Gastar CorpRinnai CorpTokyo Gas Co Ltdリンナイ株式会社東京瓦斯株式会社株式会社ガスター
    • KANI YOSHIMIKIHATAKE IKUMITSUKIMURA KOTAROITO HIDEJI
    • F24H1/00
    • PROBLEM TO BE SOLVED: To provide a solar heat hot water supply system capable of early obtaining hot water of a hot water supply set temperature in an initial period of hot water supply, regardless of a temperature of hot water/water in a hot water storage tank in starting a hot water supply operation. SOLUTION: This solar heat hot water supply system includes a solar heat collector 1, the hot water storage tank 2, a mixing means 64 capable of mixing the hot water/water and the water, an auxiliary heat source machine 3 connected with a downstream side of the hot water storage tank 2 by piping, and supplying hot water, and a control section C controlling the hot water supply operation. The control section C mixes the hot water/water from the hot water storage tank 2 with the water, and supplies the mixed hot water/water to the auxiliary heat source machine 3 adjusted (S31) to a low temperature not over a lower limit capacity of the auxiliary heat source machine 3 even when a temperature of the hot water/water in the hot water storage tank 2 has a high temperature of the hot water supply set temperature or more, in a case when a hot water supply operation is started after the lapse of a prescribed time from the termination of the last hot water supply operation (S2), and adjusts a temperature to the hot water supply set temperature (S3) by additionally heating the mixed hot water/water by the auxiliary heat source machine 3 (S32). COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种太阳能热水供应系统,其能够在热水供应的初始阶段早期获得热水供应设定温度的热水,而不管热水/水的温度如何 热水储水箱启动热水供应操作。 解决方案:该太阳能热水供水系统包括太阳能集热器1,热水储存箱2,能够混合热水/水和水的混合装置64,辅助热源机3与 热水储存箱2的下游侧,通过配管供给热水,控制部C控制热水供给动作。 控制部C将来自热水储存箱2的热水/水与水混合,将调整后的(S31)的辅助热源机3的混合热水/水供给到不超过下限容量的低温 即使在热水储存箱2的热水/水的温度具有高温供热设定温度以上的情况下,辅助热源机3的热辅助热源3即使在热水供给动作开始后, 从上次热水供给运转结束起经过规定时间(S2),通过辅助热源机3对混合热水/水进行附加加热来调节温度与热水供给设定温度(S3) (S32)。 版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Storage type hot water supply system utilizing solar heat
    • 储存式热水供应系统利用太阳能热量
    • JP2011149662A
    • 2011-08-04
    • JP2010013176
    • 2010-01-25
    • Gastar CorpRinnai CorpTokyo Gas Co Ltdリンナイ株式会社東京瓦斯株式会社株式会社ガスター
    • KANI YOSHIMIKISASAKI HIROAKIMORI HIROAKIKIMURA KOTAROITO HIDEJI
    • F24H1/00F24H1/18F24S90/00
    • Y02E10/40
    • PROBLEM TO BE SOLVED: To determine saved heat quantity reduced in error by calculating solar heat quantity for heating hot water/water in a tank only by solar heat, even when the hot water/water in the hot water storage tank is heated by using an auxiliary heat source machine. SOLUTION: A heat medium circulation passage 7 is formed between a solar heat collector 9 for collecting the solar heat and the hot water storage tank 2, and configures a heat radiating section 70 for heating the hot water/water in the hot water storage tank by a heat medium by disposing a part of the heat medium circulation passage 7 in the hot water storage tank. The auxiliary heat source machine 4 heats warm water circulated in a warm water circulation passage 41 to heat the heat medium circulated in the heat medium circulation passage 7 by the warm water. A control device 10 calculates a hot water supply heat quantity on the basis of a water supply temperature detected by a water supply temperature detector 54, a hot water tapping temperature detected by a mixing temperature detector 68, and a hot water supply flow rate detected by a water amount sensor 67, calculates the auxiliary heat source heat quantity consumed by usage of the auxiliary heat source machine, calculates the solar heat quantity used for supplying hot water by subtracting the auxiliary heat source heat quantity from the hot water supply heat quantity, and displays the solar heat quantity on a display section 43a. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:即使在热水储存箱中的热水/水被加热的情况下,通过计算仅通过太阳热量加热罐中的热水/水的太阳能热量来确定减少的误差减少的热量 通过使用辅助热源机。 解决方案:在用于收集太阳热的太阳能集热器9和热水储存箱2之间形成热介质循环通道7,并且构成用于加热热水中的热水/水的散热部70 通过将热介质循环通道7的一部分设置在热水储存箱中,通过热介质进行储存。 辅助热源机4加热在热水循环通道41中循环的温水,以通过温水加热在热介质循环通道7中循环的热介质。 控制装置10基于由供水温度检测器54检测到的供水温度,由混合温度检测器68检测到的热水出口温度和由 水量传感器67计算使用辅助热源机器消耗的辅助热源热量,通过从热水供给热量中减去辅助热源热量来计算用于供给热水的太阳能热量,以及 在显示部43a上显示太阳能热量。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Storage type hot water supply system utilizing solar heat
    • 储存式热水供应系统利用太阳能热量
    • JP2011149645A
    • 2011-08-04
    • JP2010012155
    • 2010-01-22
    • Gastar CorpRinnai CorpTokyo Gas Co Ltdリンナイ株式会社東京瓦斯株式会社株式会社ガスター
    • KANI YOSHIMIKISASAKI HIROAKIKIMURA KOTAROITO HIDEJI
    • F24H1/00F24H1/18F24S90/00
    • Y02E10/40
    • PROBLEM TO BE SOLVED: To provide a storage type hot water supply system utilizing solar heat, capable of heating a hot water/water in a hot water storage tank to a sterilization temperature or more at a proper time without depending on an amount of insolation. SOLUTION: This storage type hot water supply system utilizing solar heat, is provided with a liquid-liquid heat exchange section 8 configured by disposing a part of a warm water circulation passage 41 (circulation passage 41b for heating) for circulating the warm water heated by an auxiliary heat source machine 4 in adjacent to a part of a heat medium circulation passage 7, and in a sterilization operation for increasing a temperature of the hot water/water in the hot water storage tank 2 to the sterilization temperature or more, a heat medium circulated in the heat medium circulation passage 7 is heated by heat exchange with the warm water circulated in the circulation passage 41b for heating, in the liquid-liquid heat exchange section 8. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种利用太阳能热量的存储式热水供应系统,其能够在适当的时间将热水储存罐中的热水/水加热至灭菌温度以上,而不依赖于量 的日照。

      解决方案:利用太阳能热量的储存式热水供给系统设置有液 - 液热交换部分8,其配置有一部分温水循环通道41(加热用循环通道41b) 在热介质循环通道7的一部分附近由辅助热源机4加热的水,以及用于将热水储存罐2中的热水/水的温度升高至灭菌温度以上的灭菌操作 在液 - 液热交换部分8中,在热介质循环通道7中循环的热介质通过与循环通道41b中循环的温水进行热交换而加热。(C)2011年, JPO&INPIT

    • 8. 发明专利
    • Supply water preheating system
    • 供水预加热系统
    • JP2013036693A
    • 2013-02-21
    • JP2011173650
    • 2011-08-09
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • ITO HIDEJIMABUCHI HARUKA
    • F24H1/00
    • PROBLEM TO BE SOLVED: To provide a supply water preheating system capable of coping with an instantaneous maximum supply water flow rate while achieving simpleness and low costs by miniaturizing a preheating unit.SOLUTION: This supply water preheating system includes a water supply pipe 3 to which the supply water is supplied from a supply water source 100, a solar heat collection unit 10 connected to the water supply pipe 3 and preheating the supply water guided from the water supply pipe 3 by utilizing solar heat, a supply pipe 4 connected to the solar heat collection unit 10 and guiding the supply water preheated by the solar heat collection unit 10 to a hot water supply device 101, a bypass pipe 5 connecting the water supply pipe 3 and the supply pipe 4, and a mechanical valve 6 which is disposed on the bypass pipe 5 and to which a primary side pressure at a side of the water supply pipe 3 and a secondary side pressure at a side of the supply pipe 4 are acted so that it is opened according to differential pressure between the primary side pressure and the secondary side pressure.
    • 要解决的问题:提供一种能够应付瞬时最大供水流量的供水预热系统,同时通过使预热单元小型化而实现简单性和低成本。

      解决方案:该供水预热系统包括从供水源100供给供水的供水管3,与供水管3连接的太阳能热收集单元10,并预热由 通过利用太阳能热量的供水管3,连接到太阳能热收集单元10并将由太阳能热收集单元10预热的供给水引导到热水供应装置101的供应管4,连接水的旁通管5 供给管3和供给管4,以及设置在旁通管5上的机械阀6,供水管3的一侧的一次侧压力和供给管一侧的二次侧压力 4的作用使得其根据初级侧压力和次级侧压力之间的压差打开。 版权所有(C)2013,JPO&INPIT

    • 9. 发明专利
    • Leakage inspection device and inspection method
    • 泄漏检测装置和检查方法
    • JP2005049124A
    • 2005-02-24
    • JP2003203787
    • 2003-07-30
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • ITO HIDEJITAKAHASHI JUICHINISHIMURA AKIHIRO
    • G01M3/26
    • PROBLEM TO BE SOLVED: To provide a leakage inspection device and an inspection method, permitting inspection in a short time, having a proper working property, obtaining a reliable inspection result independently of the surrounding environmental variation, and capable of securely detecting very little leakage.
      SOLUTION: The leakage inspection device 10 is provided with: a pressurized gas supply passage 11 in which the downstream edge is connected to an object 1 to be inspected and in which a pressurizing pump 2 for pressurizing and supplying the gas, as an inspection medium, to the object 1 to be inspected is connected to the upstream edge; a pressurizing chamber 12 provided in communication with the pressurized gas supply passage 11, into which the gas having the same pressure as the object 1 to be inspected is charged when the gas is pressurized and supplied; a gas flow passage 13 in communication with from a branch point 11B to a junction 11C; a fluid gas detection means 14 formed in the gas flow passage 13, for detecting the gas fluid flowing through the gas flow passage 13; and passage shutting means 15-18 capable of freely opening/closing the passage to be shut, at the upstream of the branch point 11B in the pressurized gas supply passage 11, between the communication point 11A and the junction 11C in the pressurized gas supply passage 11, and at both sides of the fluid gas detection means 14 in the gas flow passage 13.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供泄漏检查装置和检查方法,允许在短时间内进行检查,具有适当的工作特性,独立于周围环境变化获得可靠的检查结果,并且能够非常可靠地检测 漏水少 泄漏检查装置10设置有:加压气体供给路径11,其中下游边缘连接到待检查物体1,并且其中加压和供给气体的加压泵2作为 检查介质,待检查对象1连接到上游边缘; 与加压气体供给路11连通而设置的加压室12,在对加压气体供给通路11进行加压供给时,对与要检查对象物1相同的压力的气体进行充气; 从分支点11B连接到连接点11C的气体流路13; 形成在气体流路13中的流体气体检测装置14,用于检测流过气体流路13的气体流体; 以及能够在加压气体供给路径11的分支点11B的上游,在通气点11A与加压气体供给通路11c的连接部11C之间自由开闭关闭通路的通路关闭单元15-18 气体流路13中的流体气体检测装置14的两侧。(C)2005,JPO&NCIPI
    • 10. 发明专利
    • Water supply device having primary side heat source and secondary side heat source
    • 具有主要热源和二次热源的供水装置
    • JP2012180952A
    • 2012-09-20
    • JP2011043028
    • 2011-02-28
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • ITO HIDEJIKOSHIMIZU DAISUKE
    • F24H1/00
    • PROBLEM TO BE SOLVED: To enable reheating of water stored in a heat storage part 5 when needed, and to thereby enable avoidance of contamination of hot water in the heat storage part 5, in a hot water system A composed of a heat recovery unit A having the heat storage part 5 for recovering heat from a primary side heat source 1, and a hot water supply facility C having a secondary side heat source 11 for further heating primary hot water and a hot water supply facility 13.SOLUTION: The water heater system A has a temperature measurement gauge TEW1a for measuring temperature of outlet water temperature of a heat storage tank 5. When a control means 50 detects, by information from the temperature measurement gauge TEW1a, that the temperature of hot water in the heat storage tank 5 is equal to or below a predetermined temperature for a predetermined time and the hot water has not been used by a predetermined frequency during the predetermined time, the control means switches so that a shutoff valve SVA is closed and shutoff valves SVC, SVB, SVD are opened. Thereby, supply water reaches to a heat source machine through a bypass pipe 20, and hot water in the heat storage tank 5 is re-heated in the heat source machine 11 and then is returned to the heat storage tank 5.
    • 要解决的问题:为了能够在需要时储存在蓄热部5中的水再加热,能够避免在蓄热部5中的热水的污染,在由热量构成的热水系统A 具有用于从一次侧热源1回收热量的蓄热部5的回收单元A和具有用于进一步加热一次热水的二次侧热源11的热水供给设备C和热水供给设备13。 >解决方案:热水器系统A具有用于测量储热罐5的出口水温温度的温度测量计TEW1a。当控制装置50通过来自温度测量计TEW1a的信息检测到热水温度 在预定时间内,蓄热箱5等于或低于预定温度并且在预定时间内热水未被预定的频率使用,则控制装置将这样切换 关闭阀SVA关闭,截止阀SVC,SVB,SVD打开。 由此,供水通过旁通管20到达热源机,蓄热箱5中的热水在热源机11中被再次加热,然后返回到蓄热箱5。 (C)2012,JPO&INPIT