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    • 43. 发明公开
    • BUBBLE REMOVER
    • BLASENENTFERNER
    • EP3098535A4
    • 2017-06-14
    • EP14876312
    • 2014-12-25
    • YAMAGUCHI DOKEN KOGYO CO LTD
    • KASAMATSU MORIO
    • F24H9/00B01D19/00F24H1/18
    • B01D19/02B01D19/0042B01D19/0057F24H1/18
    • The present invention provides a bubble remover with which bubbles in hot water are absorbed into the hot water in a hot-water storage tank and naturally disappear. According to the present invention, a hot-water feeding pipe is attached to a hot-water storage tank and feeds hot water to the hot-water storage tank. The leading portion of the hot-water feeding pipe is curved downward to form a vertical first main pipe, with the leading end of the vertical first main pipe further extending therefrom. A vertical second main pipe is provided parallel to and sideward of the vertical first main pipe. A plurality of supply piping spans between the vertical first main pipe and the vertical second main pipe at a predetermined interval. The respective base ends of the supply piping are attached so as to open to the vertical first main pipe, and the respective leading ends of the supply piping extend to the vertical second main pipe. Portions of the supply piping neighboring said leading ends are curved so as to be parallel to the vertical second main pipe. The lower end of the vertical second main pipe is formed into an opening. The upper leading portion of the vertical second main pipe curves near the upper portion of the hot-water storage tank and serves as a horizontally extending pipe. A first spiral drum is attached to the horizontally extending pipe. The leading portion of the horizontally extending pipe is vertically curved so as to form a vertically extending pipe, and a second spiral drum is attached to the vertically extending pipe. A hot-water suctioning pipe is provided upright in the hot-water storage tank, and the bottom-end opening of the hot-water suctioning pipe is located near the lower portion of the hot-water storage tank. The upper end of the hot-water suctioning pipe is extended and curved such that the upper-end opening of the hot-water suctioning pipe faces in the direction of the flow of hot water.
    • 本发明提供一种气泡去除器,通过该去气器,热水中的气泡被热水储存槽内的热水吸收而自然消失。 根据本发明,将热水供给管安装在热水贮存罐上,向热水贮存罐供给热水。 热水供给管的前端向下弯曲形成垂直的第一主管,垂直的第一主管的前端进一步从其延伸。 垂直的第二主管平行于垂直的第一主管并在其旁边设置。 多个供应管道以预定间隔横跨在垂直的第一主管道和垂直的第二主管道之间。 供给配管的各自的基端被安装成朝向垂直的第一主管开口,供给配管的各自的前端延伸至垂直的第二主管。 邻近所述前端的供应管道的部分是弯曲的,以便与竖直的第二主管平行。 竖直的第二主管的下端形成为开口。 竖直的第二主管的上部引导部分在储热水箱的上部附近弯曲并且用作水平延伸管。 第一螺旋鼓连接到水平延伸的管。 水平延伸管的引导部分垂直弯曲以形成垂直延伸管,并且第二螺旋鼓附接到垂直延伸管。 在储热水箱内竖立设置有热水抽吸管,热水抽吸管的下端开口位于储热水箱的下部附近。 热水抽吸管的上端延伸并弯曲,使得热水抽吸管的上端开口朝向热水流动的方向。
    • 45. 发明公开
    • STORAGE WATER HEATER
    • HEISSWASSERSPEICHER
    • EP3147583A1
    • 2017-03-29
    • EP14892601.7
    • 2014-05-23
    • Mitsubishi Electric Corporation
    • SHIBAZAKI, NaokiSAKUMA, ToshiyukiWATANABE, NaokiKURITA, Satoshi
    • F24H1/18
    • F24H1/18F24D17/0078F24D17/02F24D19/1012F24D19/1054F24D2200/12Y02B30/745
    • A storage water heater capable of ensuring hot water supply temperature stability even if there is fluctuation in hot water supply-side flow rate is provided. The storage water heater includes: a hot water supply heat exchanger 52 for performing heat exchange between hot water in the hot water storage tank 8 and supply water; a hot water supply heat source conduit 46 that guides water from an upper portion of the hot water storage tank 8 to a lower portion of the hot water storage tank 8 via the hot water supply heat exchanger 52; a hot water supply heat source pump 48 that circulates water in the hot water supply heat source conduit 46, and a control section 36. In a hot water supply operation of heating supply water using a heat source that is the hot water in the hot water storage tank 8, the control section 36 performs PID control to calculate an output of a hot water supply heat source pump 48, the output bringing a heat source-side flow rate Fl, which is a flow rate of hot water flowing in the hot water supply heat source conduit 46, to a target flow rate Ftgt, for each control interval ΔTc. Here, the control section 36 sets the control interval ΔTc to be equal to the monitoring interval ΔTf when a hot water supply-side flow rate Fk is stable, and sets the control interval ΔTc to a control interval ΔTcmin, which is shorter than the monitoring interval ΔTf, when the hot water supply-side flow rate Fk rapidly fluctuates.
    • 提供一种能够确保热水供应温度稳定性的蓄热式热水器,即使在热水供给侧流量发生波动。 蓄热式热水器包括:热水供给用热交换器52,用于在热水储存箱8中的热水与供水之间进行热交换; 热水供给热源管道46,其经由热水供给热交换器52将水从热水储存罐8的上部引导到热水储存箱8的下部; 在热水供给热源管道46中循环水的热水供给热源泵48以及控制部36.在使用作为热水中的热水的热源供热水的供热运转 储存罐8中,控制部36进行PID控制,计算热水供给用热泵48的输出,该热水供给热源泵48的输出作为在热水中流动的热水的流量的热源侧流量F1 为每个控制间隔“Tc”将热源管道46提供给目标流量Ftgt。 这里,当热水供给侧流量Fk稳定时,控制部36将控制间隔“Tc设定为等于监视间隔”Tf,将控制间隔“Tc设定为控制间隔”Tcmin 短于监测间隔“Tf,当热水供应侧流量Fk迅速波动时。