Abstract:
A magnetic particle separator (10) suitable for separating magnetic and non-magnetic particles from a thermal fluid flowing in a heating system. The magnetic particle separator (10) comprises a hollow body (10A, 10B) configured with an upper particle separation chamber (11) and for circulation of the thermal fluid between an inlet and an outlet port (12, 13), and a quieting chamber (15) beneath the particle separation chamber (11) for accumulation of the particles separated from the fluid: an annular support element (21) for permanent magnets (18) being removably fastened outside the quieting chamber (15) of the separator (10).
Abstract:
A separator (10) comprises a housing (12) and a separator chamber (24) contained within the housing, an inlet (26) and outlet (28) to the separator chamber and a dividing member (34) for substantially dividing the separator chamber into a first chamber (30) and a second chamber (32). A flow path (38) is provided between the first and second chambers for allowing flow to circulate between the first and second chambers, and guide means (56) for creating opposing flow paths in the second chamber (32) for slowing flow through the second chamber (32).
Abstract:
L'invention porte sur un dispositif (100) de récupération de particules magnétiques (20) piégées sur un bouchon magnétique (1), ledit bouchon magnétique (1) comportant un barreau magnétique (3) destiné à retenir les particules magnétiques (20) entraînées par un liquide dans lequel est plongé ledit bouchon magnétique (1). Le dispositif (100) comporte une coiffe (4) comportant un tube (6) amagnétique comportant une extrémité proximale munie d'une ouverture apte à assurer l'introduction du barreau magnétique (3) dans le tube (6) et une extrémité distale fermée, le tube (6) étant apte à recouvrir le barreau magnétique (3) lorsque le barreau magnétique (3) est introduit dans le tube (6). Le dispositif (100) comporte en outre des moyens aptes à assurer le maintien entre la coiffe (4) et le barreau magnétique (3) lorsque le barreau magnétique (3) est introduit dans le tube (6), des moyens d'extraction (5) munis d'une ouverture apte à assurer l'introduction du tube (6) dans les moyens d'extraction (5), les moyens d'extraction (5) étant aptes à recouvrir le tube (6) lorsque le tube (6) est introduit dans les moyens d'extraction (5) et à recevoir les particules (20) piégées sur le tube (6) lorsque le barreau magnétique (3) est retiré du tube (6) et des moyens aptes à assurer le maintien entre les moyens d'extraction (5) et le tube (6).
Abstract:
본 발명은 공기중의 먼지와 음식조리 중에 발생하는 기름이 함유된 연기 및 공장가동시 발생하는 매연을 제거하는 집진필터 및 이를 구비하는 전기집진장치에 관한 것으로서, 전하가 방출되는 방전봉이 형성된 방전전극과 먼지가 부착되는 집진전극으로 크게 구성되고 집진전극은 플레이트에 끼워져 일정한 규격을 갖도록 구성된다. 이러한 구성에 의하여 소형화에 따라 높은 정화효율을 갖고, 기계적 강도가 높으며, 파손된 부위만 수선 또는 교체가 가능하고, 집진유닛과 방전유닛을 분리하여 관리가 용이한 장점이 있다. 그리고 집진필터의 규격화에 의하여 설치용량에 따라 집진필터를 복수, 또는 다층으로 장착할 수 있어 손쉽게 다양한 장소에 적응이 가능하며 대형화시키는 설계변경이 가능하다. 또한, 필터의 작동상태를 항상 점검할 수 있으며, 전기 접속구가 도어의 내면에 형성되어 도어의 개폐에 따라 자동으로 집진필터와 전원공급부가 스위칭된다.
Abstract:
The disclosed electrostatic precipitator cartridge for a tower air cleaner in accord with the present invention is low-cost, because constructed of injected molded plastics material and stamped and extruded metal components. It is easy to clean, not only because it's constitutive metal parts and plastic components are machine washable but also because the cartridge as a whole is machine washable, the pieces and components are designed and arranged to prevent intracartridge fluid buildup or retention after washing, thereby eliminating any electrical shorting or arcing or other undesirable phenomena resulting therefrom that could interfere with the operation of the electrostatic filter cartridge. It is mechanically stable and has high particulate collection efficiency because it's ionizer bars have a predetermined preferably air foil shape that provides improved ionization efficiency and that imparts improved torsion stability rendering it possible to provide taller electrostatic filter cartridges and/or greater cleaning power.
Abstract:
A cleanout system and method for removal of metal debris from a fluid flow, such a flow of re-circulated drilling mud employs one or more magnetic unit positioned in the path of the fluid for collecting metal particles from the flow. The magnetic unit has a removable magnet core positioned in a non-magnetic sleeve. When the core is removed from the sleeve the attracted metal particles are allowed to drop from the sleeve under gravity to facilitate their collection and disposal. A fluid deflector is positioned upstream from each magnetic unit, protecting the magnetic unit from direct impact by the strong flow. The magnetic units are allowed to pivot from side-to-side and adjust their position in the flow.
Abstract:
An improved ventilating range hood includes a sheet metal collecting hood, vented to the outdoors; a variable speed, electronically controllable fan, mounted in such a way as to draw air from a cooking area and out through said vent of said collecting hood; a plurality of air quality sensors capable of detecting both comfort factors and the presence of hazardous substances in the air; an embedded control algorithm which examines the composite output of said discrete air quality sensors, as well as, the trend information and determines from said information an instantaneous ventilation requirement, and a control signal, derived from said algorithm to regulate the fan speed level such that every combination of discrete air quality sensor conditions will have a unique associated fan speed level based on said ventilation requirement. The air quality sensors may include sensors for temperature, humidity, carbon monoxide, smoke, etc.
Abstract:
An air transporter-conditioner device comprising: an elongated housing having a bottom, a top and an elongated side wall, the housing having an inlet located adjacent to the bottom and an outlet located adjacent to the elongated side wall; an emitter electrode and a collector electrode; a high voltage generator operably connected to both electrodes; an impeller to draw air into the housing through the inlet and direct the air along the elongated housing; and a baffle to direct air from the fan toward the outlet. The housing includes a second elongated side wall and the baffle includes a plurality of deflectors positioned along the second elongated side wall. The baffle includes a plurality of elongated columns of varying lengths, wherein each column includes a deflector. The device further comprises a second inlet located adjacent to the elongated side wall and a germicidal lamp located inside the elongated housing.
Abstract:
A sleeve 26 for a magnet assembly 28 of a magnetic separator for use in a central heating system comprises first and second sleeve members 29, 30, and a connection 31 for connecting respective ends of the first and second sleeve members 29, 30 together.
Abstract:
A drainage processing apparatus that processes drainage expelled from a scrubber apparatus is provided. The drainage processing apparatus includes: a magnetic powder adding unit that adds magnetic powders to the drainage; a transfer unit that transfers the drainage; and an adsorbing unit that: is provided in the transfer unit; adsorbs bound matter that is contained in the drainage and contains at least a process-target substance and the magnetic powders; and retains the bound matter in the transfer unit. In one example, the adsorbing unit is able to re-release adsorbed bound matter into the transfer unit. In one example, the adsorbing unit has a permanent magnet provided to be directly insertable into and removable from within the transfer unit, and the permanent magnet adsorbs the bound matter by being inserted into the transfer unit, and re-releases the bound matter into the transfer unit by being removed from within the transfer unit.