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    • 81. 发明专利
    • Formation of clean room and air-conditioning unit utilizing therefor
    • 形成清洁室和空调机组
    • JPS6172947A
    • 1986-04-15
    • JP19507284
    • 1984-09-18
    • Takasago Thermal Eng Co Ltd
    • HASHIMOTO TAKAYOSHI
    • F24F3/16F24F7/00
    • F24F3/161
    • PURPOSE: To constitute the clean room of desired scale so as to be capable of copying with various requests without removing production machinery or the like in an existing building by a method wherein an enclosed space is formed by a new ceiling surface, a floor surface and wall members and an air processing equipment, supplying clean air, is provided.
      CONSTITUTION: Various air processing equipments are installed on the newly constituted ceiling structure 2 and a space thereabove and, then, the wall members are attached to form the clean room 1 newly in the existing building. A fan filter unit 3 and an air suction port unit 4 are installed on the ceiling structure 2 while an air supply duct 5 and a return duct 6 are installed in the rear side space of the ceiling structure 2. The air conditioner 7 is also installed above the new ceiling 2. A ceiling frame, consisting of a plurality of quadrilateral small frames having equal sizes, is fixed at the forming position of the ceiling structure 2. The new ceiling is formed by mounting ceiling frame mounting members onto the small frames of the ceiling frame member. The enclosed space, having necessary volume, may be formed on the floor by the new ceiling and the wall members.
      COPYRIGHT: (C)1986,JPO&Japio
    • 目的:构成所需规模的洁净室,以便能够以各种要求进行复印,而无需通过一种方法去除现有建筑物中的生产机械等,其中封闭空间由新的天花板表面,地板表面和 提供墙面成员和空气处理设备,供应洁净空气。 构成:在新建的天花板结构2和上方的空间内安装各种空气处理设备,然后在现有建筑物中新建墙壁构件,形成洁净室1。 风扇过滤器单元3和吸气口单元4安装在天花板结构2上,同时空气供应管道5和返回管道6安装在天花板结构2的后侧空间中。空调器7也安装 在天花板2的形成位置固定有由具有相同尺寸的多个四边形小框架组成的吊顶框架。新的天花板通过将天花板框架安装构件安装在 天花板框架构件。 具有必要体积的封闭空间可以通过新的天花板和壁构件形成在地板上。
    • 84. 发明专利
    • 熱源液体の供給方法
    • 供应热源液体的方法
    • JP2015040662A
    • 2015-03-02
    • JP2013172109
    • 2013-08-22
    • 高砂熱学工業株式会社Takasago Thermal Eng Co Ltd
    • ISHII SHUICHIKAWAMURA SHUNICHI
    • F24D3/00F16L55/00
    • 【課題】同一多負荷接続型配管系にある熱交換器に対して、水やブライン等の熱源液体を供給する際に、脈動を利用してポンプ動力を低減させる。【解決手段】複数の同一構成の熱交換器A、Bを、供給枝管14、帰還枝管15を通じて往管12、還管13に対して並列接続し、各熱交換器A、Bに対して熱源液体をポンプ11によって供給する配管系において、複数の熱交換器を、半数ずつの2つのグループA1〜AN、B1〜BNに分け、各グループの供給枝管14に制御弁MVを設け、供給枝管14に流れる熱源液体の流量を周期的に変化させて脈動を発生させると共に、グループA1〜AN、B1〜BNとの間では、脈動の周期を半周期ずつずらすようにした。【選択図】図1
    • 要解决的问题:当在相同的多负载连接型管道系统中向热交换器供应诸如水或盐水的热源液体时,使用脉动,从而降低泵功率。解决方案:配管系统构造成 多个相同配置的热交换器A,B通过供给支管14和反馈分支管15并联连接到排出管12和进入管13,并且热源液体通过泵11供应到每个热交换器A, 在管道系统中,多个热交换器被分成两组Ato A和Bto Bby两个组,并且控制阀MV被提供给每组的供给支管14。 流到供给分支管14的热源液体的流量周期性地变化并产生脉动。 此外,脉动周期在Ato A和Bto B组之间移动了半个周期。
    • 85. 发明专利
    • 配管への熱電発電素子の設置方法および熱電発電装置
    • 在管道中安装热电发电元件的方法和热电发电装置
    • JP2015005615A
    • 2015-01-08
    • JP2013129932
    • 2013-06-20
    • 高砂熱学工業株式会社Takasago Thermal Eng Co Ltd
    • YAMADA TETSUJIIRIBE MASATAKEOKAMOTO HIDEYUKIYONEZAWA HITOSHI
    • H01L35/30H01L35/32
    • 【課題】結露を発生させずに熱電発電素子に配管に装着でき、しかも、熱電発電素子が耐熱温度範囲外となることを回避できるようにする。【解決手段】配管2の熱伝導率よりも低い熱伝導率を有する材質からなる治具3を配管2の表面に装着し、治具2を介して熱電発電素子4を配管2の表面に取り付けることにより、配管2の表面の熱を治具3を介して熱電発電素子4に伝導させる。熱電発電素子4と配管2との間に治具3を介在させることにより、配管2から熱電発電素子4に伝導する熱量を調整し、熱電発電素子4が耐熱温度範囲外となることを回避する。治具3の材質、枚数、厚みのいずれかを変えることによって、熱電発電素子4に伝導させる熱量を調整することができる。【選択図】図1
    • 要解决的问题:将热电发电元件安装在管道中而不产生结露,并进一步防止热电发电元件脱离耐热温度范围。解决方案:由具有导热性的材料形成的夹具3 低于配管2的面积,并且通过夹具2将热电发电元件4安装在配管2的表面,使得管道2的表面上的热量被传导到 热电发电元件4经由夹具3.通过将夹具3插入到热电发电元件4与配管2之间,调节从配管2向热电发电元件4传导的热量, 防止热电发电元件4脱离耐热温度范围。 通过改变夹具3的材料,数量和厚度中的任何一个,可以调节向热电发电元件4传导的热量。
    • 87. 发明专利
    • Charge/discharge system and method for drying charge/discharge system
    • 充电/放电系统和方法,用于干燥充电/放电系统
    • JP2014194916A
    • 2014-10-09
    • JP2013115035
    • 2013-05-31
    • Takasago Thermal Eng Co Ltd高砂熱学工業株式会社National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • KATO ATSUSHIIOKURA TSUTOMU
    • H01M8/06C25B11/08C25B11/12C25B15/00H01M4/90H01M8/04H01M8/10H01M8/18
    • Y02E60/528
    • PROBLEM TO BE SOLVED: To maintain the performance of a reversible cell for a long time in a charge/discharge system using a reversible cell of solid polymer type having a water electrolysis function and a fuel function.SOLUTION: In a cell stack 2 having a plurality of reversible cells 10, there are provided a port A and a port B leading to the flow path of a reaction fluid on an oxygen generation electrode side during water electrolysis and a port C and a port D leading to the flow path of a reaction fluid on a hydrogen generation electrode side. The port A is set at a raw water supply port during water electrolysis operation, and at a hydrogen exhaust port during fuel cell operation; the port B is set at a raw water supply and pure oxygen exhaust port during water electrolysis operation, and at a hydrogen supply port during fuel cell operation; the port C is set at a hydrogen exhaust port during water electrolysis operation, and at an oxidant and generated water discharge port during fuel cell operation; and the port D is set at an oxidant supply port during fuel cell operation. To the oxygen generation electrode during water electrolysis operation is supplied hydrogen during fuel cell operation; and, to the hydrogen generation electrode during water electrolysis operation is supplied air during fuel cell operation.
    • 要解决的问题:使用具有水电解功能和燃料功能的固体聚合物类型的可逆电池在充电/放电系统中长时间维持可逆电池的性能。解决方案:在具有 多个可逆电池10,在水电解期间设置有通向氧气发生电极侧的反应流体的流路的端口A和端口B以及导致反应流路的端口C和端口D 氢生成电极侧的流体。 在水电解操作期间,端口A设置在原水供应口处,并且在燃料电池操作期间在氢气排放口处设置; 端口B在水电解操作期间设置在原水供应源和纯氧排气口处,并且在燃料电池操作期间在氢气供应口处设置; 在水电解操作期间,端口C设置在氢气排出口处,并且在燃料电池操作期间在氧化剂和产生的排水口处设置; 并且在燃料电池操作期间将端口D设置在氧化剂供给口。 在电解电解操作期间向氧气发生电极供应燃料电池操作期间的氢气; 并且在水电解操作期间向氢生成电极供应燃料电池操作期间的空气。
    • 88. 发明专利
    • Keep-out fence for mobile work bench
    • 保持移动工作台的保护
    • JP2014189343A
    • 2014-10-06
    • JP2013063505
    • 2013-03-26
    • Takasago Thermal Eng Co Ltd高砂熱学工業株式会社Daiichi Kizai Kogyo Kk大一機材工業株式会社
    • MORI KEIJIROHASHIMOTO KIYOKATSUYANAGISAWA HARUOHASHIMOTO TOMOFUMISUZUKI TOSHIO
    • B66C15/00
    • PROBLEM TO BE SOLVED: To provide a keep-out fence for a mobile work bench which is movable and allows an operator to ride and carry out high-place work.SOLUTION: A keep-out fence for a mobile work bench 1 which is movable and allows an operator to ride and carry out high-place work includes a chain and a display board 74 indicating a keep-out zone around the mobile work bench 1 and support pillars 61 and 63 which are attachable to and detachable from the mobile work bench 1, have an opening/closing part freely openable with respect to the mobile work bench and support the chain and the display board 74. During operation of the mobile work bench 1, the chain and the display board 74 supported by the support pillars 61 and 63 are located on an outer side relative to the outer periphery of the mobile work bench 1 by opening the support pillars 61 and 63 as the opening/closing part arranged on the mobile work bench to adjust the angle. During traveling of the moble work bench 1, the support pillars 61 and 63, the chain and the display board 74 are housed along the outer periphery of the mobile work bench 1 by closing the support pillars 61 and 63 arranged on the mobile work bench 1.
    • 要解决的问题:为可移动的移动工作台提供防护栏,并允许操作者骑车和执行高位作业。解决方案:可移动工作台1的防护围栏 并且允许操作者骑乘和执行高位工作,包括链条和显示板74,其指示移动工作台1周围的保持区域和支撑柱61和63,支撑柱61和63可附接到移动工作台 具有相对于移动工作台可自由打开的打开/关闭部分并且支撑链条和显示板74.在移动工作台1的操作期间,由支撑柱61支撑的链条和显示板74以及 63通过打开作为布置在移动工作台上的开/关部分的支撑柱61和63来调节角度,位于相对于移动工作台1的外周的外侧。 在移动工作台1的行进期间,支撑柱61和63,链条和显示板74沿着可移动工作台1的外周被封闭,通过关闭布置在移动工作台1上的支撑柱61和63 。
    • 90. 发明专利
    • Charge and discharge system
    • 充电和放电系统
    • JP2014072119A
    • 2014-04-21
    • JP2012219133
    • 2012-10-01
    • Takasago Thermal Eng Co Ltd高砂熱学工業株式会社
    • KATO ATSUSHI
    • H01M8/04C25B9/00H01M8/00H01M8/06H01M8/10
    • Y02E60/521
    • PROBLEM TO BE SOLVED: To reduce the amount of gas discharged to the outside of a charge and discharge system as much as possible when switching from charge operation to discharge operation, in the charge and discharge system using a cell stack including a solid polymer water electrolysis device, such as a reversible cell, and a fuel cell.SOLUTION: During water analysis operation, raw water is supplied from a cell stack 2 raw water inlet (a), and a gas liquid separation tank 41 is provided separately from a tank 21 to which water from a raw water outlet (b) is returned. During water analysis operation, hydrogen and produced water flowing out from a hydrogen outlet (c) are temporarily subjected to gas liquid separation in a gas liquid separation tank 62. Subsequently, hydrogen is sent to a hydrogen storage section HT, and the water is returned back to a tank 71. When switching from charge operation to discharge operation, solenoid valves V1, V5, V6 are closed, and it is not required to discharge gas in the gas layer part of the tanks 21, 71 to the outside of the charge and discharge system.
    • 要解决的问题:在从充电操作切换到放电操作时尽可能地减少从充放电系统外部排出的气体量,在使用包括固体聚合物水电解的电池堆的充放电系统 装置如可逆电池和燃料电池。解决方案:在水分析操作期间,从电池组2的原水入口(a)供给原水,并且与罐21分开设置气液分离槽41 从原水出口(b)返回的水。 在水分析操作期间,从氢气出口(c)流出的氢气和产生的水在气液分离罐62中暂时进行气体分离。随后,氢被输送到储氢部分HT,并且返回水 回到储罐71.当从充电操作切换到放电操作时,电磁阀V1,V5,V6关闭,并且不需要将气罐21,71的气体层部分中的气体排出到充电的外侧 和放电系统。