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    • 2. 发明授权
    • Water-tube boiler
    • 水管锅炉
    • US06269782B1
    • 2001-08-07
    • US09630389
    • 2000-08-01
    • Toshihiro KayaharaAkinori KawakamiTakashi MorimatsuKoichi WakaeKanta KondouTomohiro OokuboOsamu Tanaka
    • Toshihiro KayaharaAkinori KawakamiTakashi MorimatsuKoichi WakaeKanta KondouTomohiro OokuboOsamu Tanaka
    • F22B2134
    • F22B21/065
    • Boiler efficiency is further improved and the whole boiler body is slimmed down by totally improving heat transfer surfaces confronting gas flow passages, i.e., by forming the heat transfer surface structure into three stages, and moreover by making effective use of the whole heat transfer surfaces of water tubes equipped with fully circumferentially finned water tubes. The water-tube boiler includes: an annular first water tube array made up of a plurality of water tubes and having a first opening; an annular second water tube array made up of a plurality of water tubes and having a second opening, the second water tube array being arranged outside the first water tube array; a combustion chamber provided inside the first water tube array; and a gas flow passage leading from the first opening to the second opening and defined between the two water tube arrays, wherein heat transfer surfaces confronting the gas flow passage are structured into a high-temperature heat transfer surface structure, a middle-temperature heat transfer surface structure, and a low-temperature heat transfer surface structure, as viewed from an upstream side along gas flow.
    • 锅炉效率进一步提高,整个锅炉体通过完全改善面对气流通道的传热面,即通过将传热表面结构形成三个阶段,而且通过有效利用整个传热面 配有完全圆周翅片水管的水管。 所述水管锅炉包括:由多个水管构成并具有第一开口的环形第一水管阵列; 由多个水管组成并具有第二开口的环形第二水管阵列,所述第二水管阵列布置在所述第一水管阵列的外部; 设置在第一水管阵列内的燃烧室; 以及从第一开口通向第二开口并限定在两个水管阵列之间的气体流动通道,其中面对气体流动通道的传热表面被构造成高温传热表面结构,中温传热 表面结构,以及从气流的上游侧观察的低温传热面结构。
    • 4. 发明授权
    • Quadrangular type multi-tube once-through boiler
    • 四通道多管式锅炉
    • US5199384A
    • 1993-04-06
    • US720832
    • 1991-07-22
    • Toshihiro KayaharaSeiji TaiSadayoshi Shibakawa
    • Toshihiro KayaharaSeiji TaiSadayoshi Shibakawa
    • F22B21/04F22B31/00F22B33/12F24H1/40
    • F22B33/12F22B21/04F22B31/00F24H1/40
    • A quadrangular type multi-tube once-through boiler having an arrangement in which a feed path combuation air, combuation chamber, and an exhaust gas channel passing through a flue are aligned in substantially the same plane, and provided with a burner duct (5) and a blower (4) each installed in any desired regions in lateral wall portions (S.sub.1, S.sub.2, S.sub.3 and S.sub.4) defining the width of the boiler body (1). The boiler body (1) comprises an assembly (A) of a plurality of substantially vertically disposed water tubes (10), so that combuation gas flows crosswise of the water tubes (10). A burner (3) is disposed in close adjacency to the first row (l.sub.1 of water tubes the water tube assembly (A), whereby even if fuel from the burner is ignited in a space between the first row (l.sub.1) of water tubes and the burner (3), actual combuation does not proceed to completion therebetween but the most of the unburnt gas burns completely while it flows through water tube clearances.
    • PCT No.PCT / JP89 / 01279 Sec。 371日期1991年7月22日 102(e)日期1991年7月22日PCT提交1989年12月20日PCT公布。 出版物WO90 / 07084 日期:1982年6月28日。一种四边形多管直流锅炉,其具有这样的布置,其中通过烟道的进料路径组合空气,组合腔和排气通道在基本上相同的平面内排列, 具有分别安装在限定锅炉主体(1)的宽度的侧壁部分(S1,S2,S3和S4)中的任何期望区域中的燃烧器管道(5)和鼓风机(4)。 锅炉主体(1)包括多个基本垂直设置的水管(10)的组件(A),使得组合气体横向于水管(10)流动。 燃烧器(3)靠近第一排(水管组件(A)的水管)十分紧密地设置,由此即使来自燃烧器的燃料在第一排水管和水管之间的空间被点燃, 燃烧器(3),实际组合不能完成,但是大多数未燃烧的气体在流过水管间隙时完全燃烧。
    • 6. 发明授权
    • Combustion apparatus for NOx reduction
    • 用于NOx还原的燃烧装置
    • US06793485B2
    • 2004-09-21
    • US10622460
    • 2003-07-21
    • Toshihiro KayaharaHideo FurukawaTomohisa TakedaKanta Kondo
    • Toshihiro KayaharaHideo FurukawaTomohisa TakedaKanta Kondo
    • F23N100
    • F23N3/042F23N3/082F23N2025/12F23N2025/14
    • A combustion apparatus for NOx reduction and CO reduction capable of achieving stable NOx reduction with simple means. The combustion apparatus for fulfilling NOx reduction by controlling the temperature of combustion gas derived from a burner 1 includes NOx reduction means having an excess air ratio versus NOx characteristic that generated NOx value decreases with increasing excess air ratio of the burner 1, and an excess air ratio versus CO characteristic that exhaust CO value increases with increasing excess air ratio, and excess-air-ratio control means for controlling the excess air ratio of the burner 1 to a specified excess air ratio, wherein the excess-air-ratio control means includes outside-air temperature detection means 2 and controls the excess air ratio to the specified excess air ratio based on a detection signal derived from the outside-air temperature detection means 42.
    • 用于通过简单的手段实现NOx还原和CO还原的燃烧装置能够实现稳定的NOx还原。 用于通过控制来自燃烧器1的燃烧气体的温度来实现NOx还原的燃烧装置包括具有过量空气比对NOx特性的NOx还原装置,其产生的NOx值随着燃烧器1的过量空气比的增加而减小, 排气CO值随着过量空气比的增加而增加的CO比率与CO特性;以及用于将燃烧器1的过量空气比控制到规定的过量空气比的过剩空气比控制装置,其中过剩空气比控制装置包括 外部温度检测单元2,根据来自外部空气温度检测单元42的检测信号,将过量空气比控制为规定的过量空气比。
    • 7. 发明授权
    • Method for servicing and maintaining heat supply equipment
    • 维修和维护供热设备的方法
    • US06470837B2
    • 2002-10-29
    • US09915575
    • 2001-07-27
    • Toshihiro KayaharaKazuhiro TachinoYasuo Watanabe
    • Toshihiro KayaharaKazuhiro TachinoYasuo Watanabe
    • F24D500
    • F24H9/20F22B35/008F23N5/24F23N5/265F23N2023/08F23N2023/38
    • In heat supply equipment provided with a plurality of maintenance object units, secure and prompt servicing and maintenance is implemented and a burden on a person in charge of managing the heat supply equipment is decreased. In a method for servicing and maintaining heat supply equipment based on a servicing and maintenance contract to perform specified servicing and maintenance of a maintenance object unit in heat supply equipment, which includes making a supervisory center for mediating request information from the heat supply equipment communicatable with the heat supply equipment via communication means, while making the supervisory center communicatable with service suppliers who perform the servicing and maintenance via the communication means, the method includes the steps of: receiving request information automatically transmitted from the heat supply equipment in the supervisory center; determining necessary servicing and maintenance works based on the request information received; selecting service suppliers who can perform the servicing and maintenance works; transmitting necessary information from the supervisory center to the service suppliers; and instructing the service suppliers to take measures based on the transmitted information.
    • 在设置有多个维护对象单元的供热设备中,实现安全且及时的维护和维护,并且负责管理供热设备的人的负担减少。 一种用于维修和维护供热设备的方法,该方法基于维修和维护合同,以对供热设备中的维护对象单元进行指定的维护和维护,其中包括建立一个监控中心,用于从可供与 所述供热设备经由通信装置,在使所述监控中心与通过所述通信装置进行维护和维护的服务供应商通信的同时,所述方法包括以下步骤:接收从所述监控中心的供热设备自动发送的请求信息; 根据收到的请求信息确定必要的维修保养工作; 选择可以进行维修保养工作的服务供应商; 将必要的信息从监督中心传送给服务供应商; 并指示服务提供商根据传送的信息采取措施。
    • 9. 发明授权
    • Quadrangular type multi-tube once-through boiler
    • 四边形多管直通锅炉
    • US5273001A
    • 1993-12-28
    • US41479
    • 1993-04-02
    • Toshihiro KayaharaSeiji TaiSadayoshi Shibakawa
    • Toshihiro KayaharaSeiji TaiSadayoshi Shibakawa
    • F22B21/04F22B31/00F22B33/12F24H1/40F22B5/02
    • F22B31/00F22B21/04F22B33/12F24H1/40
    • A quadrangular type multi-tube once-through boiler having an arrangement in which a feed path combuation air, combuation chamber, and an exhaust gas channel passing through a flue are alined in substantially the same plane, and provided with a burner duct (5) and a blower (4) each installed in any desired regions in lateral wall portions (s.sub.1, s.sub.2, s.sub.3 and s.sub.4) defining the width of the boiler body (1). The boiler body (1) comprises an assembly (A) of a plurality of substantially vertically disposed water tubes (10), so that combuation gas flows crosswise of the water tubes (10). A burner (3) is disposed in close adjacency to the first row (1.sub.1) of water tubes the water tube assembly (A), whereby even if fuel from the burner is ignited in a space between the first row (1.sub.1) of water tubes and the burner (3), actual combuation does not proceed to completion therebetween but the most of the unburnt gas burns completely while it flows through water tube clearances.
    • 一种四边形多管直流锅炉,其具有通过烟道的进料路径组合空气,组合室和排气通道布置在基本上相同的平面内并且设置有燃烧器管道(5)的布置, 和分别安装在限定锅炉主体(1)的宽度的侧壁部分(s1,s2,s3和s4)中的任何所需区域中的鼓风机(4)。 锅炉主体(1)包括多个基本垂直设置的水管(10)的组件(A),使得组合气体横向于水管(10)流动。 燃烧器(3)设置成与水管组件(A)的水管的第一排(11)紧密相邻,由此即使来自燃烧器的燃料在第一排水管(11)之间的空间中点燃 和燃烧器(3)之间,实际的组合不会完成,而是大部分未燃烧的气体在流过水管间隙时完全燃烧。