UA94508C2 - Device for catching highly dispersed dust - Google Patents

Device for catching highly dispersed dust

Info

Publication number
UA94508C2
UA94508C2 UAA200910361A UAA200910361A UA94508C2 UA 94508 C2 UA94508 C2 UA 94508C2 UA A200910361 A UAA200910361 A UA A200910361A UA A200910361 A UAA200910361 A UA A200910361A UA 94508 C2 UA94508 C2 UA 94508C2
Authority
UA
Ukraine
Prior art keywords
gas flow
honeycomb lattice
honeycomb
along
lattice
Prior art date
Application number
UAA200910361A
Other languages
Russian (ru)
Ukrainian (uk)
Inventor
Сергей Игнатьевич Приемов
Игорь Николаевич Рыжов
Владимир Игоревич Рыжов
Original Assignee
Сергей Игнатьевич Приемов
Игорь Николаевич Рыжов
Владимир Игоревич Рыжов
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Сергей Игнатьевич Приемов, Игорь Николаевич Рыжов, Владимир Игоревич Рыжов filed Critical Сергей Игнатьевич Приемов
Priority to UAA200910361A priority Critical patent/UA94508C2/en
Publication of UA94508C2 publication Critical patent/UA94508C2/en

Links

Landscapes

  • Filtering Of Dispersed Particles In Gases (AREA)

Abstract

The invention relates to the devices for catching highly dispersed dust. A device for catching highly dispersed dust comprises a body with inlet and outlet pipes, inside which a fan-type liquid sprayer is mounted with possibility of rotation and a turbulence generator located upstream of the active area and made of rods in the form of a honeycomb lattice. The device further comprises one or two of turbulence generators located upstream of the active area in the body, each of which is made of rods in the form of a honeycomb lattice. And the honeycomb lattices of turbulence generators are installed in maximum three rows above the fan-type liquid sprayer, the distance L, at which the honeycomb lattices are installed, and the distance L, at which the second or third lattice is installed along the gas flow from the inlet into the active area in the body, are equal to each other and are equal to the length of the initial portion of formation of a turbulent field downstream of the corresponding honeycomb lattice. The width of the bars band bor band bof corresponding honeycomb lattice of the first and second turbulence generators or second and third turbulence generators mounted along the gas flow is 0.01 ...0.05 m, and the cell size Mof the first honeycomb lattice along the gas flow is 0.1and the size of cell Mof the second honeycomb lattice along the gas flow is 0.8 Mand cell size Mof the third honeycomb lattice along the gas flow is 0.6 M.The invention provides improved catching dust fractions with particle size less than 5 microns with high overall degree of purification of gas flow.
UAA200910361A 2009-10-13 2009-10-13 Device for catching highly dispersed dust UA94508C2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
UAA200910361A UA94508C2 (en) 2009-10-13 2009-10-13 Device for catching highly dispersed dust

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
UAA200910361A UA94508C2 (en) 2009-10-13 2009-10-13 Device for catching highly dispersed dust

Publications (1)

Publication Number Publication Date
UA94508C2 true UA94508C2 (en) 2011-05-10

Family

ID=50832958

Family Applications (1)

Application Number Title Priority Date Filing Date
UAA200910361A UA94508C2 (en) 2009-10-13 2009-10-13 Device for catching highly dispersed dust

Country Status (1)

Country Link
UA (1) UA94508C2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2808021C1 (en) * 2023-04-06 2023-11-22 Общество с ограниченной ответственностью "Объединенная Компания РУСАЛ Инженерно-технологический центр" Wet type gas purification device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2808021C1 (en) * 2023-04-06 2023-11-22 Общество с ограниченной ответственностью "Объединенная Компания РУСАЛ Инженерно-технологический центр" Wet type gas purification device

Similar Documents

Publication Publication Date Title
MY185231A (en) Device for exhaust purification
GB2485090A (en) Debris catcher with retention within screen
ATE519103T1 (en) PARTICLE COUNTER
EP2759335A3 (en) Fluid distribution and mixing grid for mixing gases
RU2013131447A (en) DEVICE AND METHOD FOR ABSORPTION OF INDIVIDUAL COMPONENTS IN GAS
UA94508C2 (en) Device for catching highly dispersed dust
CN204193798U (en) Water inlet flow guide net, water purification membrane group, roll type reverse osmosis membrane element and water purification equipment
CN103939927A (en) Smoke duct and three-in-one collecting pipe thereof
CN104353362B (en) Water inlet flow guide net, water purification membrane group, roll type reverse osmosis membrane element and water purification equipment
Kazemi et al. PIV measurements and flow characteristics downstream of mangrove root models
CN207756010U (en) A kind of ozone static mixing device
CN103939928A (en) Smoke duct and four-in-one collecting pipe
CN202199225U (en) Efficient low-resistance air washing and absorption device
CN202036924U (en) Vortex type ammonia injection grille
CN203869067U (en) Smoke and air flue and four-in-one flow collecting pipe thereof
CN205208590U (en) 60 pi type boiler air preheater flue gas exit structure and coal -fired unit below ten thousand grades
RU2011140562A (en) VORTEX DISCHARGE
WO2012016750A3 (en) Forced-flow steam generator
CN203303766U (en) Room air purifier
Duong et al. Gap vortex streets and turbulence in time-dependent streams
CN204143282U (en) A kind of mining solution increases device
Agrawal et al. Spanwise correlation in the wake of circular cylinder and normal plate placed inside a pipe
Barros et al. Structural Aspects of Flow Over Highly Irregular Roughness Revealed from Wall-Normal-Spanwise Plane Stereo PIV Measurements
Kamin et al. On the intermittent route to resonance for flow through an orifice in a duct
Omidyeganeh et al. Numerical simulation of the flow over Barchan dunes