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    • 1. 发明专利
    • 加湿器および暖房加湿器
    • 除湿器和听觉加湿器
    • JP2014228215A
    • 2014-12-08
    • JP2013108997
    • 2013-05-23
    • 株式会社ガスターGastar Corp東京瓦斯株式会社Tokyo Gas Co Ltd
    • ISOZAKI TAKESHIMOGI TORU
    • F24F6/00F24D3/00F24F6/02
    • 【課題】熱源機から延設された循環経路を循環する温水を熱源とし、別途、給水管を設けることなく加湿用の水を得ることのできる加湿器を提供する。【解決手段】熱源機30は温水を循環経路4に循環させると共に、循環する水が減った場合は水を補給する機能を備えている。加湿器10は、循環経路4を循環する温水を熱源に貯水部11内の水を熱交換器12で昇温し蒸発させて加湿する。また、貯水部11の水位を水位センサ19で検出し、所定の水位が維持されるように、循環経路4から取水した水を浄水部18で浄水した後、貯水部11に補給する。【選択図】図1
    • 要解决的问题:提供一种加湿器,其中通过从热源机器延伸的循环路径循环的热水用作热源,并且可以在不分开设置供水管的情况下获得用于加湿的水。解决方案:A 热源机30具有通过循环路径4循环热水并且在循环水减少时供水的功能。 加湿器10通过增加储水部11内的水的温度进行加湿,并且通过使用循环路径4循环的热水作为热源,通过热交换器12使水蒸发。 此外,由水位传感器19检测蓄水部11的水位,在通过水净化部18净化后,将从循环路径4吸入的水供给到储水部11, 可以保持预定的水位。
    • 4. 发明专利
    • Heat source device
    • 热源设备
    • JP2014025594A
    • 2014-02-06
    • JP2012163831
    • 2012-07-24
    • Gastar Corp株式会社ガスター
    • ISOZAKI TAKESHI
    • F24D3/00
    • PROBLEM TO BE SOLVED: To reduce waste use of heat energy in a heating operation.SOLUTION: A liquid of a heat medium is supplied to a heating device (for example, hot water mat) from a heating liquid circulation passage for heating the liquid. In the heating operation, heating control means 2 drives a liquid circulation pump 6 while heating the liquid by a heat exchanger for heating, when a temperature of the liquid in the heating liquid circulation passage normally detected by a heating low-temperature thermistor 36 becomes a heating start reference temperature or less, and both of the heating of the liquid by the heat exchanger for heating and the driving of the liquid circulation pump 6 are stopped when the temperature of the liquid becomes the heating stop reference temperature or more. After a preparation time for termination of heating operation before an operation termination scheduled time of the heating device by a predetermined time, the heating control means 2 circulates the liquid by driving the liquid circulation pump without heating the liquid by the heat exchanger for heating even when the temperature of the liquid detected by the heating low-temperature thermistor 36 becomes the heating start reference temperature or less.
    • 要解决的问题:减少加热操作中的热能的浪费。解决方案:将热介质的液体从用于加热液体的加热液体循环通道供应到加热装置(例如,热水垫)。 在加热运转中,当通过加热低温热敏电阻36正常检测到的加热液循环通路中的液体的温度成为加热运转时,加热控制机构2驱动液体循环泵6,同时通过加热用热交换器对液体进行加热, 加热开始基准温度以下,并且当液体的温度变为加热停止基准温度以上时,停止通过加热用热交换器的液体的加热和液体循环泵6的驱动。 在加热装置的运转结束预定时间达到规定时间之前,在加热运转结束的准备时间之后,加热控制装置2通过驱动液体循环泵来循环液体,而不加热热交换器的液体, 由加热低温热敏电阻36检测的液体的温度成为加热开始基准温度以下。
    • 5. 发明专利
    • Combustion device
    • 燃烧装置
    • JP2005299960A
    • 2005-10-27
    • JP2004113320
    • 2004-04-07
    • Gastar Corp株式会社ガスター
    • ISOZAKI TAKESHISATO YOSHIYUKI
    • F23L17/00F23L17/02F24H1/14
    • PROBLEM TO BE SOLVED: To provide a compulsion type combustion device capable of suppressing generation of white smoke from an exhaustion port. SOLUTION: In a combustion chamber 20, the compulsion type combustion device for supplying and discharging air for burner combustion with a combustion fan 5 provided at a lower side of a burner 1 wherein the burner 1, a main heat exchanger 4 for absorbing sensible heat in combustion gas of the burner 1, a latent heat recovering heat exchanger 6 for recovering latent heat which is provided at a position near to the exhaustion port 8 rather than to the main heat exchanger 4 and the combustion fan 5. Water introduced from a water supply tube 46 and flowing through the latent heat recovering heat exchanger 6 is preliminary heated by heat of latent heat recovery and the preliminary heated water is supplied to an input water port of the main heat exchanger 4. In an exhaustion air route 3 from the combustion chamber 20 side to the exhaustion port 8 side, an air suction mixture part 7 in a draft hood form for taking in air outside the device and mixing the air with the exhaustion gas and the exhaustion port 8 and an air sucking port 10 of the air suction mixture part 7 are provided in a uniform pressure area. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够抑制从排气口产生白烟的强制型燃烧装置。 解决方案:在燃烧室20中,用于向设置在燃烧器1的下侧的燃烧风扇5供给和排出用于燃烧器燃烧的空气的强制型燃烧装置,其中燃烧器1,用于吸收的主热交换器4 燃烧器1的燃烧气体中的显热,用于回收设置在靠近排气口8的位置而不是主热交换器4和燃烧风扇5的潜热的潜热回收热交换器6.从 通过潜热回收热量将供水管46流过潜热回收用热交换器6进行预热加热,将预热水供给到主热交换器4的输入水口。在排气通路3中, 在排气口8侧的燃烧室20侧,抽风罩的吸气混合部7形成用于吸入设备外的空气,并将空气与排气混合, 排气口8和吸气混合部7的空气吸入口10设置在均匀的压力区域。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • Neutralization treatment device and heat exchanger apparatus
    • 中和处理装置和热交换器装置
    • JP2005069635A
    • 2005-03-17
    • JP2003303107
    • 2003-08-27
    • Gastar CorpRinnai Corpリンナイ株式会社株式会社ガスター
    • ISOZAKI TAKESHIOKAMOTO HIDEO
    • F24H1/14C02F1/66F24H9/00
    • PROBLEM TO BE SOLVED: To provide a neutralization treatment device having a lager capacity for treating untreated fluid comparing with an apparatus having the same size, capable of reducing costs for a neutralizing agent, and capable of reducing the entire size of the apparatus. SOLUTION: Acid untreated fluid D1 is flowed in from the upper side of a treatment tank 83 and neutralized to be treated fluid D2. The treated fluid D2 is flowed from the lower side of the treatment tank 83 to the lower side of a treated tank 84 and flowed out from the upper side of the treated tank 84. The neutralizing agent N1 is consumed only in the treatment tank 83. The volume of the treatment tank 83 is larger than the volume of the treated tank 84. A sufficient amount of the neutralizing agent N1 can be filled in the treatment tank 83. The neutralizing agent N1 is not filled in the treated tank 84 where the neutralizing agent is not consumed. Therefore, the volume of the treated tank 84 is made small as possible. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种具有较大容量处理未处理流体的中和处理装置,与具有相同尺寸的装置相比,能够降低中和剂的成本,并且能够减小装置的整体尺寸 。 解决方案:酸性未处理流体D1从处理槽83的上侧流入并中和成处理流体D2。 处理液D2从处理槽83的下侧流向处理槽84的下侧,从处理槽84的上侧流出。中和剂N1仅在处理槽83中被消耗。 处理槽83的体积大于处理槽84的体积。可以将足够量的中和剂N1填充在处理槽83中。中和剂N1未填充在处理槽84中,其中中和 代理不消耗。 因此,处理罐84的体积尽可能小。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Bath device
    • 浴室装置
    • JP2011153802A
    • 2011-08-11
    • JP2010017048
    • 2010-01-28
    • Gastar Corp株式会社ガスター
    • ISOZAKI TAKESHIADACHI KEIICHI
    • F24H1/00
    • PROBLEM TO BE SOLVED: To provide a bath device capable of achieving comfortable and safe bathing time by making hot water within a bathtub cloudy. SOLUTION: A clouding device 33 for making bathtub hot water cloudy by generating microscopic bubbles in the bathtub water is provided. A bath remote controller 1 includes a high-density bubble switch 30 and a low-density bubble switch 31 serving as a white turbidity selection operation part for selecting the white turbidity of the bathtub hot water made cloudy by the clouding device 33. A white turbidity variable control means 32 controls the density of microscopic bubbles generated by the clouding device 33 so that the white turbidity of hot water within the bathtub becomes the white turbidity selected by either of the high-density bubble switch 30 or the low-density bubble switch 31. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种通过使浴缸内的热水混浊而能够实现舒适和安全的洗澡时间的浴室装置。 提供了一种用于通过在浴缸水中产生微小气泡来使浴缸热水混浊的混浊装置33。 浴室遥控器1包括高密度气泡开关30和用作白色浊度选择操作部分的低密度气泡开关31,用于选择由遮光装置33浑浊的浴缸热水的白浊。白浊度 可变控制装置32控制由遮光装置33产生的微气泡的密度,使得浴缸内的热水的白色浊度变为由高密度气泡开关30或低密度气泡开关31中的任何一个选择的白色浊度 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Neutralization apparatus and heat exchange device
    • 中和装置和热交换装置
    • JP2005087823A
    • 2005-04-07
    • JP2003322628
    • 2003-09-16
    • Gastar Corp株式会社ガスター
    • ISOZAKI TAKESHI
    • C02F1/66
    • PROBLEM TO BE SOLVED: To provide a neutralization apparatus which can easily control the residual amount of a neutralizer by immediately recognizing a complete consumption state where the neutralizer is consumed completely. SOLUTION: One of a pair of pH sensors S1, S2 is disposed so as to detect the pH value of untreated liquid D1, and the other of the pair of the pH sensors S1, S2 is disposed so as to detect the pH value at the bottom of a housing part 85 filled with the neutralizer N1. Thereby, when both pH values detected respectively by the pair of the pH sensors S1, S2 are different, it is recognized that the pH value detected by the other of the pair of the pH sensors S1, S2 is the pH value of treated liquid D2. On the contrary, when both pH values detected respectively by the pair of the pH sensors S1, S2 are equal to each other, it is recognized that the pH value detected by the other of the pair of the pH sensors S1, S2 is the pH value of the untreated liquid D1. This value can be judged to represent the complete consumption state where the neutralizer N1 does not exist in the bottom of the housing part and is consumed completely. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种中和装置,其可以通过立即识别完全消耗中和剂的完全消耗状态来容易地控制中和剂的残留量。

      解决方案:设置一对pH传感器S1,S2中的一个以检测未处理液体D1的pH值,并且配置一对pH传感器S1,S2中的另一个以检测pH 在装有中和器N1的壳体部分85的底部的值。 因此,当通过一对pH传感器S1,S2分别检测到的两个pH值都不同时,认为由一对pH传感器S1,S2检测出的pH值为处理液D2的pH值 。 相反,当通过一对pH传感器S1,S2分别检测到的两个pH值彼此相等时,认为由一对pH传感器S1,S2检测出的pH值为pH 未处理液体D1的值。 该值可以判断为中和器N1不存在于壳体部分的底部并完全消耗的完全消耗状态。 版权所有(C)2005,JPO&NCIPI

    • 9. 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