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    • 2. 发明申请
    • INCLINED LAYERED SOLID-FILLING MINING METHOD IN ULTRATHICK COAL LAYER
    • 在ULTRATHICK煤层中采用层叠式固体填充采矿方法
    • US20160102553A1
    • 2016-04-14
    • US14891288
    • 2014-01-22
    • CHINA UNIVERSITY OF MINING AND TECHNOLOGY
    • Jixiong ZhangNan ZhouQiang ZhangJiwei GuoXiaoming ShenFeng JuHaiqiang Jiang
    • E21F15/02E21C41/16
    • E21F15/02E21C41/04E21C41/16E21D23/0481
    • An inclined layered solid-filling mining method in an ultrathick coal layer is applicable to exploitation in a “three-unders” ultrathick coal layer. In this method, the number of inclined layers is determined based on a principle of layered thickness from 2.5 m to 4.5 m, and a layered-exploitation downward-filling exploitation order is adopted. Tunnels and equipment are arranged according to a conventional solid-filling mining method. A cyclic order of mining, layout of metal meshes (14) and bamboo fences (24), and filling is adopted, so as to accomplish filling and exploitation of a first mining face and a first layer (21). Meanwhile, 4 months after the working face of this layer is finished, at a corresponding position in a second layer (22), under the cover of an artificial ceiling formed by the first layer (21), exploitation is performed by using the same filling mining method; such a cycle is repeated, and exploitation in a current layer is performed under the cover of an artificial ceiling fabricated by an upper layer, until the entire ultrathick coal layer is finished. When this method is adopted to exploit “three-unders” ultrathick coal layer resources, strata movement and earth surface subsidence may be effectively controlled; the method has a high extraction rate, high production efficiency, and low cost.
    • 超薄煤层倾斜层状固体填充开采方法适用于“三低”超薄煤层的开采。 在该方法中,倾斜层的数量根据层叠厚度为2.5μm〜4.5μm的原理确定,采用层叠剥离向下填充开采顺序。 隧道和设备根据常规的固体填充开采方法进行排列。 采用循环采矿顺序,金属网格(14)和竹栅栏布置(24),填充,完成第一采矿面和第一层的灌装开采(21)。 同时,在该层的工作面完成4个月后,在第二层(22)的相应位置,在由第一层(21)形成的人造天花板的盖下,利用相同的填充物 采矿方法; 重复这样一个循环,并且在由上层制造的人造天花板的盖子下进行当前层的开采,直到整个超薄煤层完成。 采用这种方法开发“三低”超薄煤层资源时,可以有效控制地层运动和地表沉降; 该方法提取率高,生产效率高,成本低。