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    • 42. 发明专利
    • Heat exchanger and hot water device having the same
    • 热交换器及其热水器具
    • JP2013047575A
    • 2013-03-07
    • JP2011185365
    • 2011-08-27
    • Noritz Corp株式会社ノーリツ
    • TAKEDA NOBUHIROYOSHIDA AKIRA
    • F24H9/00F24H1/16F28F9/00
    • PROBLEM TO BE SOLVED: To provide a heat exchanger that is small in the total number of part items and can reduce manufacturing costs more than before.SOLUTION: In the heat exchanger HE, a case C has a square cylindrical case body 5 having a plurality of walls 50a to 50d surrounding upper and lower entire peripheries of heat transfer tubes T1, T2, and air feed ports 51a, 51b for heating air for heating the heat transfer tubes T1, T2 and an exhaust outlet 52 are formed at the case body 5. The case body 5 is formed by bending one piece of a plate material 5' having regions equivalent to the plurality of walls 50a to 50d into a square cylindrical shape, a protrusion 56 having a form in which a portion of the regions protrudes outwardly rather than the peripheral regions is integrally formed at one of the walls out of the plurality of walls 50a to 50d of the case body 5, and the exhaust outlet 52 is formed at the tip face region of the protrusion 56.
    • 要解决的问题:提供一种总成本小的热交换器,并且可以比以前更多地降低制造成本。 解决方案:在热交换器HE中,壳体C具有方形圆柱形壳体5,其具有围绕传热管T1,T2和空气供给口51a,51b的上下整个周边的多个壁50a至50d 用于加热用于加热传热管T1,T2和排气出口52的空气。壳体5通过弯曲具有与多个壁50a相当的区域的一块板材5'而形成 至50d成为正方形圆柱形状,具有其中一部分区域向外突出而不是周边区域的形式的突起56一体地形成在壳体5的多个壁50a至50d中的一个壁 ,并且排气口52形成在突起56的顶端区域。版权所有(C)2013,JPO&INPIT
    • 44. 发明专利
    • Heat source machine
    • 热源机
    • JP2011033227A
    • 2011-02-17
    • JP2009177752
    • 2009-07-30
    • Noritz Corp株式会社ノーリツ
    • YOSHIDA SATORUDAITO TAKESHITAKEDA NOBUHIROHIROTSU MAKOTOHAMADA TETSUO
    • F24H9/00F24H1/14F24H9/02
    • PROBLEM TO BE SOLVED: To provide a heat source machine capable of minimizing an increase of exhaust resistance and suppressing the imbalance of exhaust resistance at first and second water channel sides even if an installation position of a secondary heat exchanger is deflected to one side in the horizontal direction in a one-can two-water channel type heat source machine. SOLUTION: A burner 31, a primary heat exchanger 32, a collective exhaust section 34 and a communication hole 33 for the first water channel, and a burner 41, a primary heat exchanger 42, a collective exhaust section 44 and a communication hole 43 for the second water channel are partitioned by a partitioning member 5, and the secondary heat exchangers 35, 45 are partitioned by a partitioning wall 232. A secondary heat exchange section 23 incorporating the secondary heat exchangers 35, 45 is deflected by S1 to one side in the horizontal direction, and a part of the collective exhaust sections 34, 44 of the partitioning member 5 is formed as an inclined partitioning section 52 inclined by an amount corresponding to the deflection. The other side of a collective exhaust pipe 22a has an inclined wall 222a. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供一种能够最小化排气阻力的增加并且抑制第一和第二水道侧的排气阻力的不平衡的热源机,即使二次热交换器的安装位置偏转到一个 侧水平方向在一罐双水通道式热源机中。 解决方案:用于第一水道的燃烧器31,主热交换器32,集合排气部分34和连通孔33,以及燃烧器41,主热交换器42,集合排气部分44和通信 用于第二水道的孔43由分隔构件5分隔开,并且二次热交换器35,45由分隔壁232分隔。结合次级热交换器35,45的二次热交换部23被S1偏转到 水平方向一侧,分隔构件5的集合排气部34,44的一部分形成为倾斜了与偏转量对应的量的倾斜分隔部52。 集体排气管22a的另一侧具有倾斜壁222a。 版权所有(C)2011,JPO&INPIT
    • 45. 发明专利
    • Hot water supply device
    • 热水设备
    • JP2010101524A
    • 2010-05-06
    • JP2008271452
    • 2008-10-21
    • Noritz Corp株式会社ノーリツ
    • TAKEDA NOBUHIROYOSHIDA SATORU
    • F24D3/08F24H1/14
    • PROBLEM TO BE SOLVED: To provide a hot water supply device capable of reducing pressure loss of a hot water supply circuit as a whole while maximizing heat efficiency in a hot water supply circuit applying a combustion burner as a heat source and constituted to receive heat distribution through a circulation circuit. SOLUTION: This hot water supply device includes a first auxiliary heat exchanger 31 performing liquid-liquid heat exchanger while applying the water of high temperature of a heating circuit 2 heated by the combustion burner 52 as a heat source, and a second auxiliary heat exchanger 32 recovering latent heat from a combustion exhaust gas in a main heat exchanger 21. The water supplied from a water supply pathway 33 is distributed to the first auxiliary heat exchanger through a first branched water supply pathway 33a and to the second auxiliary heat exchanger through a second branched water supply pathway 33b in parallel, the supplied water preheated by the second auxiliary heat exchanger is joined to a hot water supply pathway 34 at a downstream side of the first auxiliary heat exchanger. A flow rate adjustment valve 36 is disposed in a hot water supply connection pathway 35 so that a distribution ratio can be changed and adjusted. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供一种热水供应装置,其能够整体上减少热水供应回路的压力损失,同时使施加燃烧器作为热源的热水供应回路的热效率最大化,并且构成为 通过循环回路接收热量分配。 解决方案:该热水供给装置包括:第一辅助热交换器31,其施加液体热交换器,同时施加由燃烧器52加热的加热回路2的高温的水作为热源;以及第二辅助热交换器 热交换器32从主热交换器21中的燃烧废气中回收潜热。从供水路径33供给的水通过第一分支水供给路径33a分配到第一辅助热交换器,并且分配到第二辅助热交换器 通过第二分支供水通道33b并联,由第二辅助热交换器预热的供应水在第一辅助热交换器的下游侧连接到热水供应通道34。 流量调节阀36设置在热水供给连接路径35中,使得可以改变和调节分配比。 版权所有(C)2010,JPO&INPIT
    • 46. 发明专利
    • Heat exchanger and water heating system
    • 热交换器和水加热系统
    • JP2009008287A
    • 2009-01-15
    • JP2007168074
    • 2007-06-26
    • Noritz Corp株式会社ノーリツ
    • TOMIYAMA KAZUNOBUHIROTSU MAKOTOTAKEDA NOBUHIRO
    • F28F9/013F24H1/14F24H9/00F28D1/06F28D7/02F28D7/10
    • PROBLEM TO BE SOLVED: To provide a heat exchanger capable of reducing the exhausting resistance of a mounting part of a spacer when a combustion gas is made to advance in the direction of extending heat exchanging tubular portions.
      SOLUTION: A plurality of projecting portions 40 of the spacer 4 are divided into first and second groups separated in the direction of extending the plurality of tubular portions 30a, the projecting portions 40 of the first group are inserted only a part of a plurality of clearances 39 of the tubular portions 30a, and the projecting portions 40 of the second group are inserted into the other part of the plurality of clearances 39. Preferably, the heat exchanger comprises first and second spacers 4A, 4B independently formed, and their projecting portions are applied as the projecting portions 40 of the first and second groups.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种当使燃烧气体在延长热交换管状部分的方向前进时,能够降低间隔件的安装部分的排气阻力的热交换器。 解决方案:间隔件4的多个突出部分40被分成沿着延伸多个管状部分30a的方向分开的第一和第二组,第一组的突出部分40仅插入一部分 管状部分30a的多个间隙39和第二组的突出部分40插入多个间隙39的另一部分中。优选地,热交换器包括独立形成的第一和第二间隔件4A,4B,并且它们 作为第一组和第二组的突出部分40施加突出部分。 版权所有(C)2009,JPO&INPIT
    • 47. 发明专利
    • Heat exchanger and water heating apparatus
    • 热交换器和水加热装置
    • JP2008151473A
    • 2008-07-03
    • JP2006342494
    • 2006-12-20
    • Noritz Corp株式会社ノーリツ
    • TOMIYAMA KAZUNOBUTAKEDA NOBUHIRO
    • F24H1/10F24H1/16F24H9/00F28D1/047F28F9/013F28F17/00
    • PROBLEM TO BE SOLVED: To provide a heat exchanger capable of efficiently and appropriately preventing freezing in heat transfer tubes with simple constitution.
      SOLUTION: The heat exchanger B comprises the heat transfer tubes P through which hot and cold water flows, a case 7 having a wall part surrounding the heat transfer tubes P and supplied with a heating gas inside, and antifreezing heaters H provided at an outer surface part of the wall part of the case 7. Heat conducting members 6 are provided in the case 7 so that a part of each heat conducting member 6 contacts a part, heated by the heater H, of the wall part of the case 7 and that another part contacts the heat transfer tubes P. The heat of the heaters 6 can thereby be transferred to the heat transfer tubes P through the wall part of the case 7 and the heat conducting members 6. The heat conducting members 6 are preferably support bodies for supporting the heat transfer tubes P.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够以简单的结构有效且适当地防止传热管中的冷冻的热交换器。 解决方案:热交换器B包括热水和冷水流过的传热管P,具有围绕传热管P并在其内部供应有加热气体的壁部的壳体7和设置在其中的防冻加热器H 壳体7的壁部的外表面部分。导热构件6设置在壳体7中,使得每个导热构件6的一部分接触由加热器H加热的部分,壳体的壁部分 并且另一部分与传热管P接触。因此,加热器6的热能够通过壳体7的壁部和导热部件6传递到传热管P.导热部件6优选为 用于支撑传热管的支撑体P.版权所有(C)2008,JPO&INPIT
    • 48. 发明专利
    • Heat exchanger and hot water supply device
    • 热交换器和热水供应装置
    • JP2007093123A
    • 2007-04-12
    • JP2005283710
    • 2005-09-29
    • Noritz Corp株式会社ノーリツ
    • TAKEDA NOBUHIRO
    • F24H9/00F24H1/14F28F9/00F28F13/18
    • PROBLEM TO BE SOLVED: To provide a latent heat recovery heat exchanger with an evaporation sound preventing means having simple construction advantageous in manufacturing cost and space formation, and to provide a hot water supply device adopting the same. SOLUTION: The latent heat recovery heat exchanger 1 for the hot water supply device comprises a storage case, a water pipe group stored in the storage case, a water inlet side header portion and a water inlet 4a, a hot water outlet side header portion and a hot water outlet 5a, a combustion gas inlet 10, and a combustion gas outlet 11. For preventing the generation of drain evaporation sounds, a radiating part 13 with a radiating coat layer 13a is provided in at least part of a portion of the bottom wall of the storage case where drain drops from water pipes. The radiating coat layer 13a is formed of a special radiating coat. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种潜热回收热交换器,其具有具有制造成本和空间形成有利的简单结构的蒸发隔音装置,并提供采用该热交换器的热水供应装置。 解决方案:用于热水供应装置的潜热回收热交换器1包括储存箱,存储在存储箱中的水管组,进水侧集管部分和进水口4a,热水出口侧 集管部分和热水出口5a,燃烧气体入口10和燃烧气体出口11.为了防止排放蒸发声的产生,具有辐射涂层13a的辐射部分13设置在部分的至少一部分中 的储水箱的底壁,排水从水管中滴落。 辐射涂层13a由特殊的辐射涂层形成。 版权所有(C)2007,JPO&INPIT
    • 50. 发明专利
    • Combustion device
    • 燃烧装置
    • JP2006125688A
    • 2006-05-18
    • JP2004311835
    • 2004-10-27
    • Noritz Corp株式会社ノーリツ
    • KAWAGUCHI YUTAKAMATSUDA MASAAKIKAMEYAMA SHUJIHATA SHUSUKETAKEDA NOBUHIRO
    • F23L5/00F23D14/08F23L7/00
    • PROBLEM TO BE SOLVED: To provide a combustion device capable of supplying the combustion air without generating noise and vibration, and being miniaturized.
      SOLUTION: Air blowing means 5, 6 utilizing corona discharge are mounted for an air blower fan. A needle tip of a needle electrode 51 is faced to a cylindrical opening portion 22 at an upstream side of a combustion tube 2. A needle electrode 61 is mounted in a state of being faced to a through hole 381 of an intermediate bottom plate 38 on a lower side of the combustion tube from the lower side. The combustion tube and the intermediate bottom plate are earthed as a counter electrode of the needle electrode, and discharge voltage is applied to the needle electrode to generate corona discharge. The primary air is supplied to the cylindrical opening portion and the secondary air is supplied from the intermediate bottom plate to an upper flame hole 23 by airflow generated by the corona discharge. By implementing ON/OFF control of application of voltage, an air blowing quantity (air supply quantity) can be varied and adjusted within a range lower than an air blowing quantity variable range by variation of voltage.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够提供燃烧空气而不产生噪声和振动并小型化的燃烧装置。

      解决方案:为鼓风机风扇安装利用电晕放电的吹风装置5,6。 针状电极51的针尖在燃烧管2的上游侧与圆筒形开口部22相对。针状电极61以与中间底板38的通孔381相对的状态安装 燃烧管的下侧从下侧。 燃烧管和中间底板作为针电极的对电极接地,并且向针电极施加放电电压以产生电晕放电。 一次空气被供给到圆筒形开口部分,二次空气由电晕放电产生的气流从中间底板供应到上部火焰孔23。 通过实施电压施加的ON / OFF控制,可以通过电压变化在不低于送风量可变范围的范围内改变和调节送风量(空气供给量)。 版权所有(C)2006,JPO&NCIPI