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    • 31. 发明专利
    • Solar heat use heat source device
    • 太阳能热利用装置
    • JP2011169515A
    • 2011-09-01
    • JP2010033700
    • 2010-02-18
    • Gastar Corp株式会社ガスター
    • MOGI TORUISOZAKI TAKESHISHIDA MITSURUSATO TETSUYAKIMURA KOTARO
    • F24H1/00F24H1/18F24S90/00
    • Y02B10/20Y02E10/40
    • PROBLEM TO BE SOLVED: To provide a solar heat use heat source device capable of correctly obtaining a solar heat use heat amount without causing enlargement of the device and cost increase. SOLUTION: Liquid circulating in a liquid circulation passage 3 is heated by heat of sunlight by using a heat collector 13 to heat hot water in a hot water storage tank 14. Based on detection values detected by thermistors 34-37 which detect temperature of the hot water stored in the hot water storage tank 14, hot water temperature in the entire hot water storage tank 14 is defined as reference temperature according to a setting method defined in advance. Each time the hot water of the hot water storage tank 14 is supplied, a solar heat use heat amount calculation means 8 obtains a solar heat use heat amount per hot water supply by a product of a value obtained by subtracting the reference temperature from the detection temperature of hot water delivered from the hot water storage tank 14 detected by a delivered hot water temperature detection means 46 and flow rate of the hot water delivered from the hot water storage tank 14 so as to add the solar heat use heat amount per hot water supply during a period of calculating/setting the solar heat use heat amount. COPYRIGHT: (C)2011,JPO&INPIT
    • 解决的问题:提供能够正确地获得太阳能热利用热量而不引起装置的扩大和成本增加的太阳能热利用热源装置。 解决方案:在液体循环通道3中循环的液体通过使用集热器13加热太阳光热,以加热热水储存箱14中的热水。基于检测温度的热敏电阻34-37检测的检测值, 存储在热水储存箱14中的热水的温度,根据预先规定的设定方法将整个蓄热水箱14的热水温度定义为基准温度。 每当供热热水储存箱14的热水时,太阳热利用热量计算装置8通过从检测中减去基准温度获得的值的乘积获得每热水供应的太阳热利用热量 由热水储存箱14检测出的热水储存箱14输送的热水的温度和从热水储存箱14输送的热水的流量,以每热水添加太阳热利用热量 在计算/设定太阳热利用热量的期间供给。 版权所有(C)2011,JPO&INPIT
    • 32. 发明专利
    • Drainage treating system
    • 排水处理系统
    • JP2008298412A
    • 2008-12-11
    • JP2007148246
    • 2007-06-04
    • Gastar Corp株式会社ガスター
    • KIMURA KOTAROMOGI TORUSHIMABUKURO DAISUKE
    • F23L17/14A47K3/00C02F1/02F24H1/00F24H1/14F24H9/00F24H9/16
    • PROBLEM TO BE SOLVED: To suppress breeding of bacteria in a bathtub and a bathroom by drainage neutralized by a drainage neutralizer. SOLUTION: A drainage reservoir tank 15 for storing the drainage neutralized by the drainage neutralizer 3 and a heater 9 having a function for heat treating and sterilizing the drainage inside the drainage reservoir tank 15 are provided on the drainage discharge side of the drainage neutralizer 3 that stores drainage generated in a latent heat recovering heat exchanger for recovering exhaust latent heat of a burner and neutralizes the drainage. A drainage treating control means is provided for operating the heater 9 and executing heat treatment of the drainage under a prescribed heating condition for sterilizing when the amount of drainage stored in the drainage reservoir tank 15 reaches a prescribed drainage heating reference amount, and discharging the drainage in the drainage reservoir tank 15 after the heating sterilization treatment. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过排水中和器中和的排水来抑制浴缸和浴室中的细菌繁殖。

      解决方案:用于储存由排水中和器3中和的排水的排水储罐15和具有用于对排水储罐15内的排水进行热处理和灭菌的功能的加热器9设置在排水口的排水排放侧 存储在用于回收燃烧器的排气潜热的潜热回收热交换器中产生的排水并中和排水的中和器3。 提供排水处理控制装置,用于操作加热器9,并在规定的加热条件下进行排水的热处理,以便当排放储水箱15中存储的排水量达到规定的排水加热参考量时进行消毒,并排放排水 在加热灭菌处理后的排水槽15中。 版权所有(C)2009,JPO&INPIT

    • 33. 发明专利
    • Drain neutralizer
    • 排水中和剂
    • JP2008290048A
    • 2008-12-04
    • JP2007140640
    • 2007-05-28
    • Gastar Corp株式会社ガスター
    • KIMURA KOTAROMOGI TORUSHIMABUKURO DAISUKE
    • C02F1/66F24H9/16
    • PROBLEM TO BE SOLVED: To solve problems such as a drain neutralizer gets clogged with foreign matter incorporated in the neutralizer.
      SOLUTION: A solid neutralizing agent 35 is filled in a drain storage chamber 33 storing drain produced in a latent heat recovering heat exchanger to neutralize the drain and a drain passage 9 through which a drain introduction part 31 and a drain discharge part 32 communicate with each other is provided in the drain storing chamber 33 along the filling area 11 for the neutralizing agent 35 filled in the drain storing chamber 33. At least a part of a passage wall 10 of the drain passage 9 is made to form a filter wall 13 through which the drain is passed but the neutralizing agent 35 is not passed and the drain passage 9 communicates with the neutralizing agent filling area 11 of the drain storage chamber 33 through the filter wall 13. When being incorporated in the drain flowing-in to the drain introducing part 31, the foreign matter 12 as well as the drain is discharged from the drain discharge part 32 through the drain passage 9.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了解决诸如排水中和器的问题被并入中和器中的异物堵塞。 解决方案:将固体中和剂35填充在存储在潜热回收热交换器中产生的排水的排水储存室33中,以排放排水;以及排水通道9,排水导入部31和排放排放部32 在排水收容室33内沿着填充在排水收容室33内的中和剂填充区域11设置排水收容室33.排水通路9的通道壁10的至少一部分形成过滤器 排水通过的壁13,但中和剂35不通过,排水通道9通过过滤壁13与排水储存室33的中和剂填充区域11连通。当被排入流入 到漏极引入部分31,异物12以及漏极通过排放通道9从排出排出部分32排出。(C)版权所有(C)2009,JPO&INPIT
    • 34. 发明专利
    • Drain neutralizer and bathroom structure using the drain neutralizer
    • 排水中和剂和浴室结构使用排水中和剂
    • JP2008180463A
    • 2008-08-07
    • JP2007015319
    • 2007-01-25
    • Gastar Corp株式会社ガスター
    • MOGI TORUCHOKAI KAZUHIROKIMURA KOTAROIIZUKA YASUSHI
    • F23L17/14A47K4/00C02F1/66F24H1/16F24H9/00
    • PROBLEM TO BE SOLVED: To provide a drain neutralizer capable of neutralizing drain over a long period even if the width of an arrangement space thereof or the longitudinal space on the lower side of a combustion device is small. SOLUTION: The drain introduced from a drain inlet part 12 is stored and neutralized in a drain storage chamber 14, and discharged through a drain discharge part 13. The drain storage chamber 14 is divided to a water sealing chamber 9 of exhaust air and a draining chamber 10 by a partition wall 11 while connecting the water sealing chamber 9 with the draining chamber 10 on the lower side. The drain storage chamber 14 is filled with a solid neutralizer 7, and includes a drain non-passing area 19 corresponding to an extending area provided in a high level position extended upward over the drain inlet part 12 and the drain discharge part 13 and a drain passing area 18 corresponding to the drain storage chamber 14 below the drain inlet part 12 and the drain discharge part 13. When the neutralizer 7 in the drain passing area 18 is reduced by neutralization of the drain through the drain passing area 18, the neutralizer 7 in the drain non-passing area 19 naturally falls into the drain passing area 18 to replenish the neutralizer therein. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:即使其排出空间的宽度或燃烧装置的下侧的纵向空间较小,也能够长时间地中和排水的排水中和器。 解决方案:从排水入口部分12引入的排水口在排水储存室14中储存和中和,并通过排放排放部分13排放。排水储存室14被分为排气口的水密封室9 以及在下侧将水封室9与排水室10连接的同时由分隔壁11排出的排水室10。 排水储存室14填充有固体中和器7,并且包括排水通过区域19,其对应于设置在向上延伸到排水入口部分12和排放排放部分13的高位置的延伸区域,排水管 通过区域18对应于排水入口部分12和排放排泄部分13下方的排水储存室14.当通过排水通过区域18中和排水通道区域18中的中和器7时,中和器7 排水不通过区域19自然落入排水通过区域18中以补充中和器。 版权所有(C)2008,JPO&INPIT
    • 35. 发明专利
    • Drain neutralizer
    • 排水中和剂
    • JP2008032355A
    • 2008-02-14
    • JP2006208408
    • 2006-07-31
    • Gastar Corp株式会社ガスター
    • MOGI TORUCHOKAI KAZUHIROKIMURA KOTAROIIZUKA YASUSHI
    • F24H9/16C02F1/66F24H1/12F24H9/00
    • PROBLEM TO BE SOLVED: To provide a drain neutralizer for neutralizing drain produced in a latent heat recovery heat exchanger and introducing it into a bath drain port while preventing the backflow of the drain even when the bath drain port is flooded. SOLUTION: The drain introduced from a drain introduction port 12 is reserved in a drain reservoir 14 and neutralized, and then it is introduced from a drain discharge port 13 to the bath drain port 15. A partition wall 11 partitions the drain reservoir 14 into a water sealing chamber 9 on the side of the drain introduction port 12 and a drain chamber 10 on the side of the drain discharge port 13. On the lower end side of the partition wall 11, the water sealing chamber 9 is communicated with the drain chamber 10. The water sealing chamber 9 uses the drain for water-sealing exhaust gas which flows from the drain introduction port 2 to the side of the drain reservoir 14 together with the drain to prevent the flow to the side of the drain discharge port 13. In a region ranging from the drain chamber 10 to the drain discharge port 13, an air vent port 17 is provided for preventing the backflow of the drain from the drain reservoir 14 to the side of the drain introduction port 12 when the drain discharge port 13 is water-sealed when the bath drain port 15 is flooded. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种排水中和器,用于中和潜热回收热交换器中产生的排水并将其引入浴槽排水口,同时防止排水口淹没时排水口的回流。 解决方案:从排水引入口12引入的排水管预留在排水容器14中并中和,然后从排水口13被引入浴槽排出口15.分隔壁11将排水容器 14进入排水引入口12侧的水封室9和排水口13一侧的排水室10.在分隔壁11的下端侧,水封室9与 排水室10.水密封室9使用排水口将排水引入口2的排水排出口与排水口一起从排水口14流到排水容器14侧,以防止流向排水排出侧 在从排水室10到排水口13的范围内,设有排气口17,用于防止排水口从排水容器14向排水导入口12的一侧回流 当排水口15被淹没时,排水口13被水密封。 版权所有(C)2008,JPO&INPIT
    • 36. 发明专利
    • White bubble generating device
    • 白色发泡装置
    • JP2007167401A
    • 2007-07-05
    • JP2005370002
    • 2005-12-22
    • Gastar Corp株式会社ガスター
    • FUKUYOSHI KENZOKIMURA KOTARO
    • A47K3/00A61H33/02
    • PROBLEM TO BE SOLVED: To provide a small-sized and inexpensive white bubble generating device allowing a user who soaks in a hot water tub such as a bathtub to comfortably soak in a white bubble-delivering hot water tub.
      SOLUTION: The hot water tub such as the bathtub is provided with a case 9 in a side wall, and the inside of the case 9 is provided with a tip side of a hot water delivery nozzle 2 delivering the hot water with air pressurized and melted therein, a white bubble generation part 3 forming cavitation in the hot water delivered from the hot water discharge nozzle 2 and generating the white bubbles, and a while bubble delivery port 4 delivering the white bubbles generated form the while bubble generation part 3. The while bubble delivery port 4 is provided in the upper part of the circumferential wall face of the case 9, and the white bubble delivered from the white bubble discharge port 4 is delivered toward a water surface of the hot water tub to form the white bubble layer on the hot water tub surface.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种小型和便宜的白色泡沫产生装置,其允许浸泡在诸如浴缸的热水桶中的使用者舒适地浸泡在白色泡沫输送热水桶中。 解决方案:诸如浴缸的热水桶在侧壁中设置有壳体9,并且壳体9的内部设置有热水输送喷嘴2的末端侧,该热水输送喷嘴将热水与空气 在其中加压和熔化的白色气泡产生部分3,在从热水排出喷嘴2输送的热水中形成气蚀并产生白色气泡,以及一个气泡输送口4,其传送由气泡发生部分3产生的白色气泡 气泡输送口4设置在壳体9的周壁面的上部,从白色气泡排出口4输送的白色气泡向热水槽的水面输送,形成白色 泡沫层在热水桶表面。 版权所有(C)2007,JPO&INPIT
    • 37. 发明专利
    • System for reheating and supplying air bubble
    • 再生和供应气泡系统
    • JP2007163028A
    • 2007-06-28
    • JP2005359934
    • 2005-12-14
    • Gastar Corp株式会社ガスター
    • KIMURA KOTAROFUKUYOSHI KENZO
    • F24H1/00A61H33/02
    • PROBLEM TO BE SOLVED: To provide a system capable of reheating and supplying air bubbles in the best way and having a simple piping structure.
      SOLUTION: The system 1 for reheating and supplying air bubbles has a reheating device 10 and an air bubble supply device 20. The air bubble supply device 20 has a nozzle part provided in a bathtub 2, and a branch circuit 21. The branch circuit 21 is connected to the first-half pipe 11b of a reheating circulation circuit 11 at its upstream end and to the nozzle part 23 at its downstream end. The branch circuit 21 is provided with a pump means 25 and an outside air supply means 24 for supplying outside air on the suction side of the pump means 25 and supplies fine air bubbles. The nozzle part is provided with an outside air introducing means for introducing outside air to supply jet air bubbles. A controller 29 of the air bubble supply device 20 obtains reheating operation information from a detected temperature coming from a temperature sensor 27 provided in the branch circuit 21, and stops air bubble supply control during a reheating operation.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供能够以最佳方式再加热和供应气泡并具有简单的管道结构的系统。 解决方案:用于再加热和供应气泡的系统1具有再加热装置10和气泡供应装置20.气泡供应装置20具有设置在浴缸2中的喷嘴部分和分支电路21。 分支电路21在其上游端连接到再热循环回路11的前半管11b,在其下游端连接到喷嘴部23。 分支回路21设置有泵装置25和外部空气供给装置24,用于在泵装置25的吸入侧上供应外部空气并提供精细的气泡。 喷嘴部设置有用于引入外部空气以供应喷射气泡的外部空气引入装置。 气泡供给装置20的控制器29从设置在分支电路21中的温度传感器27的检测温度获得再加热运转信息,并且在再加热运转中停止气泡供给控制。 版权所有(C)2007,JPO&INPIT
    • 38. 发明专利
    • Hot water storage system
    • 热水储存系统
    • JP2013044493A
    • 2013-03-04
    • JP2011184174
    • 2011-08-25
    • Gastar Corp株式会社ガスター
    • KIMURA KOTARO
    • F24D17/00F24H1/10F24H1/18
    • PROBLEM TO BE SOLVED: To provide a hot water storage system which can suppress changes of a tapping temperature due to influences of hot water remaining in a connection pipe, when hot water is tapped under the conditions that hot water at a set temperature can be supplied from a hot water storage tank and the heat source of an auxiliary heat source machine is turned off.SOLUTION: Upon carrying out an off-tapping operation, when the temperature of hot water that has been supplied from a hot water storage tank 14 to a water heater 12 at the last time of tapping is lower than the set temperature of the this time, hot water at an initial supply temperature which is higher than a temperature calculated by adding a temperature (for example, 1°C) corresponding to the part of the temperature reduction in a connection pipe 16 to the set temperature, is supplied to the water heater 12 by a predetermined initial supply amount at the beginning of tapping; and then hot water at a temperature higher than the set temperature by 1°C is supplied.
    • 要解决的问题:提供一种热水存储系统,其可以抑制由于连接管中残留的热水的影响而导致的出口温度的变化,当在设定温度的热水条件下点燃热水时 可以从热水储存箱供应,并且辅助热源机器的热源被关闭。 解决方案:当进行脱水操作时,当在最后一次从热水储存箱14供给热水器12的热水温度低于设备温度 此时,将初始供给温度的热水提供给比通过将与连接管16中的部分降温相对应的温度(例如1℃)计算出的温度设定为设定温度而计算的温度, 热水器12在开料开始时预定的初始供给量; 然后供给比设定温度高1℃的热水。 版权所有(C)2013,JPO&INPIT
    • 39. 发明专利
    • Hot water terminal cooling system
    • 热水终端冷却系统
    • JP2012163252A
    • 2012-08-30
    • JP2011023678
    • 2011-02-07
    • Gastar CorpTokyo Gas Co Ltd東京瓦斯株式会社株式会社ガスター
    • KISHIDA TAKUYASUZUKI AKINORIKIMURA KOTARO
    • F24D3/00F24F5/00F24H1/12
    • PROBLEM TO BE SOLVED: To provide a heater terminal cooling system which utilizes a hot water circulatory system of a latent heat recovery type heat source apparatus.SOLUTION: As shown with a thick line in Fig.5, circulating water circulates in a low temperature circulating circuit B and an in-apparatus circulating circuit C. Further, cool water (tap water) supplied through a water supply line 7a is dispersed on a surface of a secondary heat exchanger 5a from a water dispersion nozzle 7b, takes heat of vaporization from the circulating water flowing through the secondary heat exchanger 5a and evaporates. Evaporated moisture is discharged outside through an exhaust section 5e accompanying blast by a circulating fan 4c. The water which has not evaporated is dropped on a receiving tray 11a and finally guided to a not shown outlet through a drain pipe 11c. On the other hand, the circulating water cooled at a near dew-point temperature by losing heat of vaporization at the secondary heat exchanger 5a is supplied to a floor heating panel 3 through the low temperature circulating circuit B and cools a surface panel by cold energy. However, condensation is not formed on the panel surface because the evaporation always occurs at a temperature below a dew-point in a room.
    • 要解决的问题:提供利用潜热回收型热源装置的热水循环系统的加热器端子冷却系统。 解决方案:如图5中粗线所示,循环水在低温循环回路B和设备内循环回路C中循环。此外,通过供水管线7a供给的冷水(自来水) 从分散喷嘴7b分散在二次热交换器5a的表面上,从流过二次热交换器5a的循环水中吸收蒸发热,蒸发。 蒸发的水分通过循环风扇4c通过伴随爆炸的排气部分5e排出。 没有蒸发的水落在接收托盘11a上,最后通过排水管11c引导到未示出的出口。 另一方面,通过在二次热交换器5a处失去蒸发热而在近露点温度下冷却的循环水通过低温循环回路B供给到地板加热板3,并通过冷能冷却表面板 。 然而,由于蒸发总是在低于室内露点的温度下发生,所以在面板表面上不形成冷凝。 版权所有(C)2012,JPO&INPIT
    • 40. 发明专利
    • Bath device
    • 浴室装置
    • JP2012002460A
    • 2012-01-05
    • JP2010139523
    • 2010-06-18
    • Gastar Corp株式会社ガスター
    • KIMURA KOTAROSEYAMA TAKEHIRO
    • F24H1/00
    • PROBLEM TO BE SOLVED: To lower a temperature of bathtub hot water without wasting water and heat energy.SOLUTION: A reheating circulation pathway connected to the bathtub is thermally connected to a hot water storage tank through a liquid circulation pathway for a heat collector for circulating liquid to the heat collector for collecting heat of sunlight, and a liquid circulation pathway for a heater connected to a heating device. A heat exchange control means 11 for lowering a temperature, receives a bathtub hot water temperature lowering command for lowering the bathtub hot water temperature in comparison with a predetermined bath set temperature, compares a bathtub hot water temperature detection value with a stored hot water detection value, and drives a bathtub hot water circulation pump 6 when the stored hot water temperature detection value is lower than the bathtub hot water temperature detection value to circulate the bathtub hot water through the reheating circulation pathway without reheating the water, and lowers the bathtub hot water temperature by exchanging heat between the circulated bathtub hot water and the hot water in the hot water storage tank through the liquid circulation pathway for the heat collector and the liquid circulation pathway for the heater.
    • 要解决的问题:降低浴缸热水的温度,而不浪费水和热能。 解决方案:连接到浴缸的再加热循环路径通过用于集热器的液体循环通道热连接到热水储存器,用于将液体循环到集热器以收集太阳光的热量;以及液体循环路径 连接到加热装置的加热器。 一个用于降低温度的热交换控制装置11,与预定的浴设定温度相比,接收用于降低浴缸热水温度的浴缸热水温度降低命令,将浴缸热水温度检测值与储存的热水检测值 并且当储存的热水温度检测值低于浴缸热水温度检测值时,驱动浴缸热水循环泵6,以使浴缸热水循环通过再热循环路径而不再加热水,并且降低浴缸热水 通过热收集器的液体循环路径和加热器的液体循环路径在循环的浴缸热水和热水储存箱中的热水之间进行热交换的温度。 版权所有(C)2012,JPO&INPIT