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FIRE AND EXPLOSION PROTECTION SYSTEM FOR TWO-STAGE DUST COLLECTION DEVICES WITH CYCLONE IN FIRST STAGE

机译:第一阶段旋风除尘器两级除尘装置的防火防爆系统

摘要

FIELD: dust collection equipment.;SUBSTANCE: invention relates to a dust collection technique. Fire and explosion safety system for two-stage dust-collecting devices with a cyclone in the first stage contains a device for the first stage of dust-collecting, which is installed in front of the dust-collecting device for fine cleaning of the dusty gas stream and is made in the form of a cyclone, comprising a housing with a dust removal pipe, straightener with screw-shaped lid, inlet and outlet nozzles, and the filter element is fixed on the outlet nozzle. Fine dust collecting device includes a frame construction with fences, a support part with a dust collecting bin and a dust collecting cart, installed on the base, as well as the inlet and outlet ducts of the filter section of the dust collector with bag-type filters, respectively, with inlet and outlet nozzles, in the entrance duct of the dust collecting device a collector with injectors of the fire and explosion safety system is installed with a control unit connected by electronic communication with a common microprocessor. Each of the injectors of the fire and explosion safety system of the device includes a case with a swirl chamber and a nozzle, the housing is made in the form of an inlet fitting with a central hole and rigidly connected to it and coaxial cylindrical sleeve with internal thread and expansion chamber, coaxially to the housing, and coaxially to the housing in its lower part is connected to the sleeve by means of a thread nozzle, made in the form of an inverted glass, in the bottom of which a turbulent swirl of liquid flow is made with at least two inclined to the axis of the nozzle inlets in the form of cylindrical holes located in the end surface of the nozzle, where the central cylindrical throttle hole is also made, connected with a mixing chamber of the nozzle, communicated in series with diffuser outlet chamber. In the diffuser outlet chamber divider is installed, made in the form of at least three spokes, each of which is fixed at one end to the outer surface of the diffuser outlet chamber perpendicular to its surface, and the other to the surface of the body of rotation, for example, a ball, the axis of which coincides with the axis of the diffuser outlet chamber, and the rotational body itself is located in the lower part behind the diffuser outlet chamber cut, to the end surface of the cylindrical sleeve coaxial with the housing, diffuser is attached coaxially to diffuser chamber, the cut surface of which lies in a plane below the surface of the body of rotation of the divider. Or the divider is made in the form of two spokes, each of which is fixed with one end to the external surface of the diffuser outlet chamber, perpendicular to the surfaces forming it, and others on the axis, on which a rotational body is installed, made in the form of a ball, the center of which lies on the axis of the diffuser outlet chamber, while the surface of the rotational body, made in the form of a ball, installed on the axis with the possibility of rotation, made perforated. To the surface of the body of rotation, made in the form of a ball mounted on an axis with the possibility of rotation, elements are installed that carry out its rotation, for example, in the form of segments of helical blades. On the inner surface of the central cylindrical throttle opening of the vortex nozzle of the spraying device located in the end surface of the nozzle, screw grooves are made for additional swirling of the fluid flow, and in the body of rotation of the nozzle, the axis of which coincides with the axis of the diffuser outlet chamber, and the body of rotation itself is located in the lower part behind the cut of the diffuser outlet chamber, resonant grooves are shaped in the form of a cylindrical surface of different diameter and length, performing the functions of Helmholtz resonators, their dimensions are determined by the necessary pulsation frequency of the liquid flow to increase the fineness of the sprayed flame.;EFFECT: technical result is an increase in the efficiency and reliability of the dust collection process.;1 cl, 5 dwg
机译:技术领域本发明涉及一种集尘技术。第一级带有旋风除尘器的两级集尘装置的防火防爆系统,包含用于第一级集尘的装置,该装置安装在集尘装置的前面,用于精细清洁含尘气体气流以旋风分离器的形式制成,包括带除尘管的外壳,带螺旋形盖的矫直机,入口和出口喷嘴,过滤元件固定在出口喷嘴上。细粉尘收集装置包括一个带有围栏的框架结构,一个安装在底座上的带有粉尘收集箱的支撑部分和一个粉尘收集车,以及袋式除尘器的过滤器部分的进风口和出风口在集尘装置的入口管道中,分别具有入口和出口喷嘴的过滤器,带有消防和爆炸安全系统的喷射器的集尘器安装有控制单元,该控制单元通过电子通信与通用微处理器连接。该设备的消防和爆炸安全系统的每个喷油器都包括一个带涡流室和喷嘴的壳体,壳体以带有中心孔的进口配件的形式制成,并与之刚性连接,同轴的圆柱形套筒带有内螺纹和膨胀腔与外壳同轴,并在外壳的下部同轴于外壳,外壳由倒置玻璃制成的螺纹喷嘴连接到套筒,在喷嘴的底部有湍流至少有两个相对于喷嘴入口轴线倾斜的液体流,其形式为位于喷嘴端面上的圆柱孔形式,在圆柱端面上也形成了中心圆柱形节流孔,并与喷嘴的混合腔相连,与扩散器出口室串联连通。在扩散器出口室中安装有至少三个辐条形式的分隔器,每个辐条的一端垂直于扩散器出口室的外表面垂直固定,而另一端与车体表面垂直。旋转,例如,一个球,其球的轴线与扩散器出口室的轴线重合,并且旋转体本身位于圆柱体套筒端面的下方,该下部位于扩散器出口室切口的下方通过壳体,扩散器同轴地连接到扩散器腔室,扩散器腔室的切割表面位于分隔器旋转体表面下方的平面中。或以两个辐条的形式制成隔板,每个辐条的一端固定在扩散器出口腔的外表面上,垂直于形成扩散器的表面,另一端固定在安装旋转体的轴上。球体制成的球体,其中心位于扩散器出口室的轴线上,而球体制成的旋转体的表面则以可旋转的方式安装在该轴线上穿孔的。在旋转体的表面上以球的形式安装,该球安装在具有旋转可能性的轴上,例如,以螺旋叶片的片段的形式安装了进行旋转的元件。在位于喷嘴端面上的喷雾装置的涡流喷嘴的中心圆柱节流孔的内表面上,制有螺纹槽,用于使流体流进一步涡旋,并且在喷嘴的旋转体中,旋转轴的轴线与扩散器出口室的轴线重合,旋转体本身位于扩散器出口室的切口后面的下部,谐振槽的形状为直径和长度不同的圆柱面,具有亥姆霍兹共振器的功能,其尺寸由液体流动所需的脉动频率决定,以增加喷射火焰的细度。效果:技术成果是提高了集尘过程的效率和可靠性。 1厘升,5载重吨

著录项

  • 公开/公告号RU2673509C1

    专利类型

  • 公开/公告日2018-11-27

    原文格式PDF

  • 申请/专利权人 KOCHETOV OLEG SAVELEVICH;

    申请/专利号RU20170136543

  • 发明设计人 KOCHETOV OLEG SAVELEVICH (RU);

    申请日2017-10-17

  • 分类号B04C9;B01D50;

  • 国家 RU

  • 入库时间 2022-08-21 11:46:33

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