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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。