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    • 1. 发明授权
    • Method of operating a blast furnace
    • 操作高炉的方法
    • US4248625A
    • 1981-02-03
    • US63969
    • 1979-08-06
    • Sakae TamuraKyoji OkabeTsuyoshi FukutakeSeiji TaguchiTamotsu NagaiMitsuo SainoTadaaki Iwamura
    • Sakae TamuraKyoji OkabeTsuyoshi FukutakeSeiji TaguchiTamotsu NagaiMitsuo SainoTadaaki Iwamura
    • C21B5/00G05B13/02
    • G05B13/0265C21B5/006
    • A method of operating a blast furnace comprising the steps of selecting sight factors mathematically and statistically as effective in determining the operating condition of a blast furnace, sensing the eight factors as sample data, converting the sample data into variable factors, comparing the sample data and the variable factors with predetermined limiting factors, generating numerical non-dimension values corresponding to the level of satisfaction between the sample date or variable factors and the corresponding limiting values, multiplying the numerical non-dimensional values by predetermined corresponding weight allocation indices, summing separately the results of the multiplication for the sample data and the variable factors to form a numerical factor grand addition output and a variable factors grand addition output, summing the numerical factors grand addition output and the variable factors grand addition output to form an overall grand addition output and taking appropriate action to control the furnace based upon the values of the overall grand addition output, numerical factors and variable factors grand addition outputs and the numerical non-dimensional values.
    • 一种操作高炉的方法,包括以下步骤:数学和统计学上选择视觉因子,以确定高炉的运行状况,感测八个因素作为样本数据,将样本数据转换为可变因子,比较样本数据和 具有预定限制因素的可变因子,产生对应于采样日期或可变因子之间的满意程度的数值非维值与相应的限制值,将数值非维值乘以预定的对应权重分配指数,分别相加 样本数据乘积和可变因子的结果形成数值因子大加法输出和可变因子大加法输出,总和加法输出的数值因子和可变因子大加法输出,形成总体大加法输出, 适当地 基于总体大加法输出值,数值因子和可变因子大加法输出值和数值无量纲值来控制炉的作用。
    • 2. 发明授权
    • Process for blast furnace operation
    • 高炉操作过程
    • US4466825A
    • 1984-08-21
    • US518311
    • 1983-07-29
    • Mikio KondoKyoji Okabe
    • Mikio KondoKyoji Okabe
    • C21B5/00
    • C21B5/008C21B5/006
    • A process for operating blast furnaces is disclosed, which comprises assuming a plurality of reference spaces, each of which serves as a stacking space for burden material and is defined by a plurality of line segments having inclination angles .theta..sub.1 and .theta..sub.2 with respect to a horizontal line on a surface of a previously stacked burden, before a predetermined volume of the burden material is charged from a charging equipment; settling a newly stacked surface of the burden in one of the standard spaces in such a manner that the newly stacked surface consists of two line segments having inclination angle .theta..sub.1 and .theta..sub.2 with respect to the horizontal line and intersecting with a falling trajectory of the burden so that a space defined between the newly stacked surface and the previously stacked surface corresponds to the predetermined volume of the burden material; and then charging the predetermined volume of the burden material from the charging equipment up to the position of the newly stacked surface on the previously stacked surface.
    • 公开了一种用于操作高炉的方法,其包括假设多个参考空间,每个参考空间用作负载材料的堆叠空间,并且由具有相对于一个或多个的倾斜角度θ1和θ2的多个线段限定 在从充电设备对预定体积的负荷材料进行充电之前,预先堆叠的负担的表面上的水平线; 在一个标准空间中将堆叠的新堆叠的表面沉积在新的层叠表面中,使得新堆叠的表面由具有相对于水平线的倾斜角度θ1和θ2的两个线段组成,并与 使得在新堆叠的表面和先前堆叠的表面之间限定的空间对应于负荷材料的预定体积; 然后将预定体积的负荷材料从充电设备充电到预先堆叠的表面上的新堆叠表面的位置。