首页> 外国专利> METHOD FOR DETERMINING COAL WALL RIB SPALLING OF LARGE MINING-HEIGHT FULLY-MECHANIZED MINING FACE OF SHALLOW COAL SEAM

METHOD FOR DETERMINING COAL WALL RIB SPALLING OF LARGE MINING-HEIGHT FULLY-MECHANIZED MINING FACE OF SHALLOW COAL SEAM

机译:浅埋煤层大采高综采工作面煤壁肋压降的确定方法

摘要

#$%^&*AU2020100227A420200326.pdf#####1 ABSTRACT The present invention discloses a method for determining coal wall rib spalling of a large mining-height fully-mechanized mining face of shallow coal seam. The method includes: establishing a "support-coal wall-roof' structure model of a large mining-height fully-mechanized mining face of shallow coal seam; establishing a mechanical model of periodic fracture of a main-roof key stratum, and determining a determining condition for tensile fracture of a voussoir beam of the main-roof key stratum; when tensile fracture of the main-roof key stratum occurs in advance, establishing a mechanical model of an elastic foundation beam of an equivalent immediate roof, and determining a discriminant for tensile fracture of an equivalent immediateroof stratum; and when tensile fracture of the equivalent immediate roof occurs in advance, determining a condition for coal wall rib spalling of the large mining-height working face of the shallow coal seam. Coal wall rib spalling of the large mining-height working face of the shallow coal seam is organically combined with roof movement and support control to comprehensively and accurately reflect a stress state of a coal wall, reveal the mechanism of coal wall rib spalling of the large mining-height working face of the shallow coal seam, and determine a determining condition of coal wall rib spalling, so as to provide a scientific basis for controlling stability of the coal wall and conducting safe mining.1/6 DRAWINGS Establish a structui model "support-coal wall-roof' of a large mining-height fully-mechanized S1 mining face of shallow coal seam based on step voussior beam structures of an equivalent immediate roofand amain-roofkey stratum of the largemining-height working face of the shallow coal seam Establish, according to the structure model "support-coal wall-roof'of the large mining-height fullymechanized mining face of the shallow coal seam, a mechanical model of periodic fmcture ofthe S2 main-roofkey stratum bas ed on a phase in which aroof key stratum of the large mining-height working face of the shallow coal seam is periodically fractured Determine adetenmining condition for tensile fracture of a voussior beam of the main-roofkey stratum based on formula (1) according to the mechanical model of periodic fracture ofthe main-roof S3 key stratum When tensile fmctur of themain-roofkey stratum occurs in advance, establish, according to the determiningconditionfortensilefacturofthevoussiorbeamofthemain-roofkeystratumandthe structum model "support-coal wall-roof'of the large mining-height fully-mechanized mining face of S4 the shallow coal seam, a mechanical model of an elastic foundation beam ofthe equivalent immediate roof based on the phase in which the roofkey stratum of the large mining-height working face of the shallow coal seam is eriodically fractured Determine adiscriminant for tensile fracture of an equivalent immediate-roof stmtum based on S5 formula (2) according to the mechanical model of the elastic foundation beam ofthe equivalent immediate roof When tensile fmctur of the equivalent immediateroof occurs in advance, determine a condition for S6 coal wall rib spalling of the large mining-height working face of the shallow coal seam based on formula (3) according to the discriminant for tensile fracture ofthe equivalent immediate-roof stmtum FIG. 1
机译:#$%^&* AU2020100227A420200326.pdf #####1个抽象本发明公开了一种确定大型煤墙肋剥落的方法浅煤层的采高综采工作面。该方法包括:建立大型综采高采煤“顶棚”结构模型浅煤层的开采工作面;建立钢筋混凝土周期性断裂的力学模型主屋顶关键层,并确定大体积拉伸断裂的确定条件主屋顶关键层的梁;当主屋顶关键层发生拉伸断裂时前进,建立等效的弹性基础梁的力学模型立即屋顶,并确定等效拉伸立即断裂的判别式屋顶地层当等效的立即屋顶的拉伸断裂提前发生时,确定煤层大采高工作面煤壁肋剥落的条件浅煤层。浅层大采高工作面的煤壁肋剥落煤层与顶板运动有机结合,支护控制全面准确反映煤壁应力状态,揭示煤壁肋剥落的机理浅煤层大采高工作面的确定,并确定壁肋剥落的条件,为控制煤层的稳定性提供科学依据煤壁并进行安全开采。1/6图纸建立大型采煤高度综采S1的“支煤墙顶”结构模型等效当量阶跃矢量的浅层煤层开采面浅煤层大采高工作面的顶板和主顶层根据结构模型充分建立大型采高的“支煤墙顶”浅煤层的机械化开采工作面,S2周期性构造的力学模型主屋顶关键层基于一个阶段,在该阶段中,采矿高度较大的屋顶关键层浅煤层的工作面定期破裂确定主天窗后梁的拉伸断裂的确定条件主屋顶S3周期性断裂的力学模型基于公式(1)的地层关键层当主屋顶层的拉力提前发生时,根据确定主屋顶关键层和梁的各种梁的拉伸条件S4大型采高综采工作面“支煤墙顶”结构模型浅煤层,等效当量弹性基础梁的力学模型顶板是基于大采高工作面的顶板关键层的阶段浅层煤层破裂基于S5确定等效的即时屋檐的拉伸断裂的判别式根据等效弹性基础梁的力学模型计算公式(2)直接屋顶当预先产生等效立面的拉伸力时,确定S6的条件基于GIS的浅埋煤层大采高工作面煤壁肋片裂。式(3)根据等效判别为等效的即时屋檐结构图。 1个

著录项

  • 公开/公告号AU2020100227A4

    专利类型

  • 公开/公告日2020-03-26

    原文格式PDF

  • 申请/专利权人 XIAN UNIVERSITY OF SCIENCE AND TECHNOLOGY;

    申请/专利号AU20200100227

  • 发明设计人 HUANG QINGXIANG;

    申请日2020-02-16

  • 分类号E21C41/18;E21F15;

  • 国家 AU

  • 入库时间 2022-08-21 11:11:39

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