The invention relates to a spray apparatus, and more particularly to a spin annular slit spray nozzle with ability of fineness control and a spray apparatus comprising the same, which belongs to the technical field of fire control and spraying.
The spray head is an essential element for spraying, and the spraying quality has an essential influence on water mist fire suppression, wet dust removal, spray drying, and combustion performance of liquid fuel.
The spray head has small round orifice(s) in general. At present, some spray heads with small round holes depend on the spin flow generated by the spin flow cores of rotors to spray; for example, Chinese Patent Application Nos. 01253101.4 and 200380103103.0 disclose a type of pressure spray heads with small round holes. The spray heads of this type cannot properly control spray fineness and the orifices are very small and cannot be made large. When other spray nozzle parameters are unchanged, the size of the spray drops can rapidly increase along with the increase of the diameter of the orifice, so that the spray quality deteriorates, which means the round orifice need to become smaller to spray finer mist. However, the spray flow is in direct proportion to the square of the hole diameter; at the same pressure, the smaller the hole is, the smaller the flow is, so that the spray concentration and density cannot meet requirements. Chinese Patent Application No. 200410012959.3 discloses a double-layer nozzle, which can increase spray flow and overcome the defect of small orifices. However, in order to uniformly and finely spray, the gap between the annular slits of the fixed double-layer nozzle must be made small and uniform. Such a fixed double-layer nozzle requires high mutual concentricity and high neutrality, is difficult to manufacture and is easily blocked. Thus, the filtering difficulty and manufacturing and application cost of the system are increased.
The existing spray head with a rotary disk depends on a thin liquid film formed thereon by the centrifugal force of high-speed rotation to perform centrifugal spray. Although the rotary centrifugal spray head can finely spray, it has a hollow zone and cannot spray further. The periphery of the rotary disk of such a spray head is often provided with an annular air spray opening, such as a spray head shown in Chinese Patent Application No. 200410036938.5. However, the annular air spray opening is not used for spraying liquid but for spraying air so as to break the liquid film rotated out by the rotary disk. The spray head belongs to gas-liquid two-phase atomization, requires additional air source, and has a complicated structure.
Many spray processes require high-quality spray, which require fine spray of the spray drops sprayed by the spray apparatus, and also require dense spray, high flow, good directivity of spray space distribution or wide space distribution, and good dispersivity. Some of the aims of fine spray are for flash evaporation. The evaporation rate is nearly in inverse proportion to the square of the spray drop diameter, namely the evaporation rate is accelerated about 100 times when the diameter is reduced to 1/10. Therefore, in the field of spray drying, water mist total flooding application for fire control, and oil spray combustion, rapid and massive evaporation is a key for increasing working efficiency. Thus, it is necessary to develop a high-flow superfine spray nozzle. However, the spray fineness of the existing nozzle is not uniform, the spray drop diameter is difficult to control, and particularly, the existing single nozzle cannot synchronously perform fine spray and high-flow spray. In addition, the water mist spray head for fire control is specially required to have a small volume, simple structure, and reliable operation. The existing spray head for fire control hardly meets the aforementioned comprehensive requirements, and particularly, it is more difficult to resolve the contradiction between the spray flow and fine spray.
In view of the above-described problems, it is one aim of the invention to provide a spin annular slit spray nozzle capable of spraying uniformly and finely and capable of spraying at high flow rate, and to give several spin annular slit spray nozzles with different structures for application at different occasions.
Another aim of the invention is to provide a spray nozzle and a control method capable of simultaneously and easily controlling spray drops and spray flow, so as to resolve the difficulty of taking account of both spray flow and fine spray.
To use and benefit from the advantages of the spin annular slit spray nozzle, and to expand and enhance spray space dispersivity, directivity, and other spray performance, the invention further gives a spray apparatus combined with the spin annular slit spray nozzle, so as to meet various spray process requirements, and strengthen the specific spray performance of the spray apparatus such as quick superfine spray evaporation, etc.
The aim of the invention is also to provide a nozzle structure which is clog resistant and capable of self-cleaning, and the structure can be made into a self-closing dust-proof spray nozzle and spray apparatus so as to improve the quality and reliability of fine spray, and can be used for spraying single-fluid water mist and multi-phase flow superfine spray.
The purpose of the invention is achieved by the following technical schemes.
The invention relates to a spin annular slit spray nozzle, comprising a core seat, a spin core, and a spin annular slit orifice; wherein the core seat has a core chamber, an inlet and an outlet communicated with the core chamber are provided on the core seat, and the inlet of the core seat is communicated with a pressurized flow source; the spin core is limited and sheathed in the core chamber which is concentric with the spin core and rotates with respect to each other, spin-actuating channels are formed on the spin core or on the core chamber wall; the spin power from the spin-actuating channels make the spin core and the core chamber rotate with respect to each other, a core head on the outer end of the spin core extends into the outlet of the core chamber, the spin annular slit orifice is formed between the core head and the outlet end of the core chamber, the cross-section of the orifice is nearly a circular ring, the gap of the ring mainly decides the spray fineness, the diameter of the ring mainly decides the spray flow, and the fineness and flow required by the pressure spray of the spray nozzle can be obtained by respectively setting the gap and the diameter of the ring.
The axial shape of the spin annular slit orifice is a short and round or conical tube-shaped annular slit, and an inlet gap of the annular slit orifice is not less than an outlet gap thereof. The annular slit orifice close to the outlet can be provided with a spray opening with the minimum annular slit gap.
The spin core is in the shape of a stepped column; the peripheral surface of the spin core is provided an oblique or spiral tooth/groove-shaped spin-actuating channel, and the front end of the spin core is contracted into a small conical or small cylindrical core column head; the core column head penetrates into the outlet hole of the core seat and forms the spin annular slit orifice together with the outlet hole of the core seat, and the front end ring surface of the spin core, used as a rotary thrust limit surface, mutually slides with the front end wall of the core chamber.
The output end ring surface of the spin core is uniformly distributed with at least two sections of wedge oblique surfaces or wedge ring surfaces; the opening angle of the wedge surfaces is 2 to 15°; the opening of the wedge surface faces the rotation direction of the spin core, and the wedge surfaces produce buoyance to the spin core during rotation so as to reduce friction.
The spin core is provided with a center hole communicated with the inlet of the core chamber and extended to the outlet end of the spin core; the tube wall of the outlet end of the spin core is uniformly distributed with radial small holes and/or oblique small holes; the center hole of the spin core supplies pressure to the annular slit orifice through each small hole, to help the spin core suspend in the center and reduce friction.
The peripheral surface of the core column head or the outlet hole wall of the core chamber is distributed with a short section of annular dense textures to enhance the turbulence fluctuation and fine spray effects of the rotary liquid film at the spray opening.
The annular slit spray opening of the spray nozzle is sealed by the outer end of the spin core to prevent dust, and the inner end of the spin core is provided with elastic element(s) capable of internally pulling or externally pushing the spin core, so that the conical surface or cambered surface of the outer end of the spin core leans against the outlet hole wall of the core chamber; the elastic element is an elastic washer/gasket or spring whose weak elastic force does not disturb the hydraulic pressure spin spray of the annular slit spray opening and is favorable to atomization.
The core seat is of combined type, a concentric subsidiary core seat is arranged in the core chamber of the core seat; the disk-shaped peripheral wall of the subsidiary core seat is provided with a spin flow groove/tooth-shaped spin-actuating channel; the spin core is positioned between the core chamber and the subsidiary core seat and uses a top center hole of the subsidiary core seat as a bearing hole to perform rotation and partial axial limit; the column head of the spin core concentrically penetrates into the contracted conical outlet hole of the core seat to form a reversed conical tube-shaped annular slit orifice.
The spin core is of complex type; the spin core is provided with an outer core chamber and an inner core chamber which are communicated with the inlet of the core seat and concentric with each other; the outer core chamber wall is provided with outer spin flow passage(s); the inner core chamber is positioned at the center of the outer core chamber, and provided with an inner core element; the inner spray hole wall formed by contracting the inner core chamber inserts in the center of the outlet hole of the outer core chamber to form a spin annular slit orifice with a central spray hole, and the core seat or the core seat cover and the outer core chamber wall are provided with spin flow passage(s) used as spin-actuating channel(s) of the spin core.
The spin-actuating channel(s) is arranged on the spin core and/or the core seat; the spin-actuating channels of the spin core can be oblique or spiral grooves/teeth/leaves; the spin-actuating channel(s) of the core seat is arranged on the wall of the core chamber or the close cover of the core seat and is a spin flow groove/hole.
The spray fineness and flow are respectively controlled by the spin annular slit spray nozzle; the average spray drop diameter is controlled within the range of narrow size: if the average drop diameter required by spray fineness is T, suppose the hole diameter at the minimum gap of the annular slit spray opening is D and the diameter of the core column head at the minimum gap is d, (D−d)≦T×K, and K is a correlation coefficient of 1-3; the spray flow can be estimated by the formula Q=fΔPπDδ3/12 μL to determine the value of D and d, wherein f represents a coefficient (0.3<f<1) related to the spin flow rate of the spin annular slit and the eccentricity of the annular slit, ΔP represents a pressure difference, μ represents viscosity, D represents a hole diameter, L represents a hole length of annular slit, and δ represents an average slit width.
A spray apparatus of the invention comprises a spray head body and a spray nozzle; the spray nozzle is arranged on the spray head body; the spray head body is provided with a spray head body chamber; its inlet end is connected with a pressurized flow source, and its outlet end is communicated with the spray nozzle; the spray nozzle comprises a spin annular slit spray nozzle.
A spray apparatus of the invention: the spray head body is provided with a spray head body chamber of which each end is provided a central through hole, the spray head body is rotatably and fixedly sheathed on a steeped inlet tube connecting a pressurized flow source by its central through holes; a rotary sealing element is arranged between the spray head body and the inlet tube, and the wall of the inlet tube is provided with a hole/groove communicated with the spray head body chamber; the sealing head is used for sealing a lower through hole of the spray head body chamber and performing rotary thrust positioning for the spray head body, and the spray nozzle is arranged in the sealing head; the periphery of the spray head body is provided with a truncated cone or polyhedral cone body overlapped with a cross body, and the spray nozzles arranged on four side surfaces of the cross body opposite to the rotation direction produce equidirectional torque; each spray nozzle arranged on the spray head body is communicated with the spray head body chamber, comprising the spin annular slit spray nozzle.
A spray apparatus of the invention, comprises: a joint, a spray head body, a core seat, spin core(s), and a spray head cover; the joint connected with a pressurized flow source is in threaded connection with an upper part of the spray head body; the spray head body is provided with a spin annular slit spray nozzle group comprising a core seat and at least three spin cores; at least three spin core chambers are arranged in the core seat; each spin core chamber is communicated with the joint inlet of the spray head body; each spin core chamber is rotatably and fixedly sheathed with a spin core to form a spin annular slit spray nozzle, and the outlets of all spray nozzles are gathered at the outlet of the core seat to spray; alternately, the outlet of the core seat is additionally provided with a Venturi tube-shaped spray head cover and the peripheral wall at the outlet of the core seat is provided with multiple suction holes; each suction hole is communicated with a mixing chamber between the outlet of the core seat and the spray head cover; the sprayed mist of each spray nozzle is mixed with air by the mixing chamber and foamily sprayed by the spray head cover.
A spray apparatus of the invention comprises a spray head body, a core seat, and spin core(s). The core seat is rotatably arranged in the spray head body chamber; the spray head body chamber is provided with spin flow passage(s); the core seat is driven to rotate by the spin flow of the passage(s); the outlet end of the peripheral surface at the outlet of the core seat penetrates into the outlet hole of the spray head body chamber to form the spin large annular slit spray nozzle; the core seat is further provided with a spray nozzle comprising a spray nozzle with a spin core, namely a composite spin annular slit spray head is formed; the spray head body chamber is communicated with a pressurized flow source and each spray nozzle.
The technical problems solved by and advantages of the invention are summarized below:
1. Aiming at overcoming the defect of the existing mist spray head and solving the technical problem that the mutual contradictions between increasing spray head hole diameter and flow and increasing atomization degree are irreconcilable, the invention provides the technical scheme of using spin annular slit to spray. The diameter of such spin annular slit can be made large and the gap can be made very small. Thus, the sprayed mist is uniform and fine and the flow area and the spray flow are large, thereby solving the technical problem that it is difficult to take account of increasing spray flow and increasing atomization degree. The existing nozzle with a small round spray hole has the defect that the diameter of the small round spray hole must be small enough to ensure good atomization, so that its spray flow is greatly limited. However, the flow area of the annular slit spray opening is much larger than that of the spray opening with a small round hole having the same gap, the flow is nearly in direct proportion to the flow area. Thus, under the same gap and pressure difference condition, the spray flow of the annular slit spray opening is much higher than that of the spray opening with a small round hole. In addition, the annular slit gap for deciding spray fineness and the hole diameter for deciding flow can be respectively set independently as required. Thus, the spray fineness may be not controlled by flow, namely the annular slit and spray drop size can be small, while the annular slit hole diameter and flow can be large.
2. The mist sprayed by the spin annular slit orifice has the obvious advantage of easier superfine spray than that sprayed by the existing orifice. The flow in the annular slit close to the movable round wall surface, and the flow close to the fixed round wall surface and the middle layer have different velocity gradient because of pressure and rotation, to form turbulence of high turbulence intensity with multi-direction components at different speed, so that the turbulence kinetic energy causing the liquid drops to be crushed for the second time after causing the liquid film jet to be smashed and divided is greatly increased, thereby accelerating superfine spray. The existing annular liquid film jet is atomized mainly depending on crushing caused by the fluctuation produced by friction disturbance between the outlet liquid ring and the air, while the spin annular slit orifice is provided with atomization factors for rotary centrifugal force growing film and high turbulence intensity fluctuation in addition to annular liquid film crushing mechanism, thereby greatly increasing its superfine spray capacity.
3. The spin annular slit orifice of the invention has the advantages of fine spray, easy control of liquid drop size, and uniform distribution as compared to the existing small round spray orifice. The spray drop size of the existing small round spray orifice is difficult to control and the spray liquid drop size is not uniform; the invention uses the spin small gap of annular slit to greatly increase the once atomization uniformity of the spray opening, and controls the spray liquid drop size and distribution by setting the annular slit gap.
4. The invention has the obvious advantage of being clog resistant. The existing fixed annular slit orifice is easy to be clogged because of small fixed gap, and the annular slit is in the rotation state when the spin annular slit orifice sprays. The core column head is moved relatively to the outlet hole wall of the core chamber, and has the functions of aligning during rotation, thereby preventing deviation and automatically cleaning obstructions. Therefore, even if the annular slit gap is very small, the spin annular slit spray opening is difficult to be blocked.
5. The spin annular slit spray nozzle has the advantage of good dust-proof property. The nozzle structure can easily be made into dust-proof closed type, namely the spray opening is externally closed usually, so that it has good dust-proof property. Even if the spray nozzle structure is not made into the dust-proof closed type, the spin annular slit spray nozzle can prevent dust in general because the exposed gap of the spin annular slit spray nozzle is much smaller than that of the spray nozzle with a round hole of the same section area, which is favorable to dust prevention.
6. The invention further has the obvious advantages of having a diverse structure and large size of the spin slit spray nozzle and the spray apparatus, thereby providing appropriate diverse spray equipment for different places. The time required for liquid drop evaporation is nearly in direct proportion to drop diameter square, so fine spray at high flow rate means spray evaporation rate is accelerated at large scale and square level. Therefore, when being used in the occasions of water mist fire control, spray drying, spray combustion and the like where spray flash evaporation is required, the invention can obviously increase gasification speed and working efficiency.
The invention will further be described in detail in accordance with the figures and the specific embodiments.
As shown in
The axial shape of the spin annular slit orifice is short and round or conical tube-shaped annular slit, and the annular slit orifice close to the outlet can be provided with a spray opening with the minimum annular slit gap.
The periphery of the reversed cup-shaped ring wall of the subsidiary core seat 163 is provided with at least two tangential spin flow grooves 167; the column central section surface of the spin core 161 positioned in the flow core chamber 168 is provided with a section of twill or knurling to promote the spin flow to drive the spin core to rotate. The spin core is provided with a center hole 166; the periphery of the core column head inside the dust-proof ring surface 016 is uniformly distributed with at least four pairs of small holes 165. Fluid with pressure enters from the hole of the spray head body and then enters the spin flow core chamber 168 through the spin flow grooves 167 to rotate, and drives the spin core 161 to rotate in a floating mode, so that the pressure fluid overcomes the dust-proof weak elastic force and is rotatably extruded and sprayed from the conical circular seam spray opening. Uniform superfine spray can be obtained because of the actions of elastic vibration and spin annular slit.
As shown in
The spray head body 7 is in a shape of a composite body of peripheral cross body with a truncated cone or polyhedral cone body. The periphery of the truncated cone body 5 or the polyhedral cone body is provided with spray nozzles such as P9, Pg, and Pg is a fixed spray nozzle with a spray opening. Four side surfaces in the opposite rotation direction of the four support arms of the cross body are provided with spray nozzles such as P11 or Pg, and all the end surfaces of the four support arms are provided with spray nozzles such as P7, P10. Preferably, there is an eccentric distance between the axis of P7, P10 and the axis of the spray head body. Sprayed mist of each spray nozzle on the cross body of the spray head body produces rotary driving force in the same direction to the spray head body. All spray nozzles are internally provided with spin flow passages, the spray nozzles P9, P11, and Pg are not provided with core covers and directly penetrate into the spray head body chamber 6, wherein the guide hole 8 used in the wall of the spray head body chamber and the spin flow passage 210 in the core seat 209 of the spray nozzle P9 are communicated with the spin core 109 (see
The spray head body 7 in the embodiment can be in other shape; the inlet tube 2 can be shortened to the result that the upper central through hole 3 of the spray head body chamber 6 is used as a bearing hole, and a filter 10 can be arranged in the inlet tube 2.
All the spray nozzles arranged on the spray head body 7 in the embodiment can use self-closing dust-proof spray nozzles of P7 type, and the spray head becomes dust-proof spin annular slit spray head.
As shown in
In the above embodiment, if the spray head cover 023 is removed, and the suction through holes 230 in the outlet end wall of the core seat 213 are also removed, the spray head body is in threaded connection with the core seat 213 to form a rotor type spin annular slit spray gun or spray head; alternately, such a combined spray nozzle with multiple spin cores shown in
As shown in
Such a composite rotary spray of the spin annular slit spray nozzle/head can cause violent air agitation, intensify the friction and collision between spray drops and air, promote fine spray, greatly increase specific surface area of spray drops, favor to the complete mixing of the spray drops with air to accelerate flash evaporation of transmission media and transmission heat or accelerate the mixing and reaction with other media, thereby obviously increasing spray operation and technology efficiency.
The spray apparatus with a spin annular slit spray nozzle can be formed as long as the spin annular slit spray nozzle of the invention is arranged on the spray head body or the core seat of the spin annular slit spray nozzle is connected with the spray head body, and then the spray head body is communicated with a pressurized flow source.
The invention is described in detail in accordance with the above contents with several embodiments. However, this invention is not limited to the specific embodiments because the structures of spin core, core seat, core chamber, and spray head body are various, and the spin annular slit atomizing apparatuses combined by the spin core, the core seat, the core chamber, and the spray head are various, namely the equivalent changes and equivalent modifications which are made by using the application scope and the contents of specification of the invention should be considered to belong to the protection scope of the invention.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN09/74480 | 10/16/2009 | WO | 00 | 3/9/2012 |