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    • 4. 发明申请
    • GASIFIER COOLING STRUCTURE, GASIFIER, AND GASIFIER ANNULUS PORTION ENLARGEMENT METHOD
    • 燃气冷却结构,气化器和气化器部件放大方法
    • US20170009161A1
    • 2017-01-12
    • US15114224
    • 2014-12-24
    • MITSUBISHI HITACHI POWER SYSTEMS, LTD.
    • Tetsuya KIZUOsamu SHINADAMasashi KITADA
    • C10J3/76
    • C10J3/76C10J2300/1884Y02E20/18
    • Provided is a gasifier cooling structure allowing the complexity of the furnace wall structure to be reduced to a minimum, allowing the configurability of headers and connecting pipes to be improved while maintaining as much as possible the ability to cool raw syngas. In the gasifier cooling structure, the raw syngas from a gasified carbonaceous solid fuel flows through the interior of a furnace wall formed inside a pressure vessel having a circular cross section, and the raw syngas is cooled by heat exchange with a fluid flowing inside a heat exchanger tube from a heat exchanger, whereof a plurality is provided within the furnace wall. The furnace wall has a polygonal structure wherein mutually orthogonal faces are linked by an oblique face in between, and whereof the cross sectional shape is such that the edge of the oblique face is shorter than the edges of the mutually orthogonal faces.
    • 提供了一种气化器冷却结构,其允许将炉壁结构的复杂性降低到最小,从而提高了集管和连接管的可配置性,同时尽可能地保持冷却原始合成气的能力。 在气化器冷却结构中,来自气化的碳质固体燃料的原料合成气流过形成在具有圆形横截面的压力容器内的炉壁的内部,原料合成气通过与在热量内流动的流体进行热交换而冷却 来自热交换器的换热器管,其中多个设置在炉壁内。 炉壁具有多边形结构,其中相互正交的面通过其间的倾斜面连接,并且其横截面形状使得倾斜面的边缘比相互正交的面的边缘短。