Abstract:
An electro-kinetic air conditioner for removing particulates from the air creates an airflow using no moving parts. The conditioner includes an ion generator that has an electrode assembly including a first array of emitter electrodes, a second array of collector electrodes, and a high voltage generator. Preferably, a third or leading or focus electrode is located upstream of the first array of emitter electrodes, and/or a trailing electrode is located downstream of the second array of collector electrodes. The device can also include an interstitial electrode located between collector electrodes, an enhanced collector electrode with an integrally formed trailing end, and an enhanced emitter electrode with an enhanced length in order to increase emissivity.
Abstract:
A casing containing a strip of ferromagnetic material has a pair of ceramic magnets at each end thereof associated with one of each pair of magnetics is a ferromagnetic shoe member that provides an angled pole face that bears against the outside of the pipe. These components are contained within the casing by a means of a potting compound.
Abstract:
The present invention relates to a filter assembly (1,10,100) comprising a filter body (2) which defines an internal cavity, a supply duct (5), in fluid communication with the cavity of the filter body (2), intended to feed the filter body (2) with a fluid, a discharge duct (6), in fluid communication with said cavity of the filter body (2), intended to allow the outflow of the fluid from the body wherein in the filter body (2) a cyclone separator (3) and a permanent magnet (4) are housed placed along a circuit for the passing through of the filter body from the supply duct (5) to the discharge one (6) by the fluid, wherein said filter assembly (1,10,100) comprises a connection flange (8) for the fluid connection with ducts of a heating plant or similar, said flange (8) comprising a first (81) and a second (82) inlet fitting and an outlet fitting (83), said first and second inlet fittings (81, 82) being in fluid communication with the supply duct (5), said outlet fitting (83) being in fluid communication with the discharge duct (6), said first and second inlet fitting (81, 82) being oriented differently relative to the body (2).
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 magnetic filter 10 includes first and second separation chambers 10, 12. The separation chambers 10, 12 each have an inlet and an outlet, and the separation chambers 10, 12 are joined together such that the inlets of the first and second chambers are adjacent, and the outlets of the first and second chambers are adjacent. An inlet port arrangement 28 connects both inlets to a single inlet pipe, and an outlet port arrangement 30 connects both outlets to a single outlet pipe.
Abstract:
A telescopic fitment is provided for connection of a magnetic filter into a central heating system circuit, telescopic fitment including a first connector and a second connector, each of the first and second connectors including a filter connection end for connecting with the magnetic filter and a circuit connection end for connecting with the central heating system circuit, at least one of the first and second connectors including an inner pipe and an outer pipe, the filter connection end being provided on one of the inner or outer pipes and the circuit connection end being provided on the other of the inner or outer pipes, the inner pipe being slideable within the outer pipe for adjusting the position of the circuit connection end with respect to the filter connection end, whilst maintaining a sealed fluid path between the circuit connection end and the filter connection end.
Abstract:
A magnetic separation device (1) for separating ferrous material contained in a liquid circulating in a heating circuit, comprising: a first container (2) comprising an inlet (20), an outlet (21), a discharge (22); a magnet (4); a second container (3) arranged internally of the first container (2) and comprising a plurality of openings (30); a casing (5) for containing the magnet (4) arranged at least partially internally of the second container (3), so as to be accessible from outside the magnetic separation device (1). The magnetic separation device (1) is designed so that it can assume a use configuration (A), in which the inlet (20) is in fluid communication with the outlet (21) and the magnet (4) is inserted in the casing (5), and a washing configuration (B), in which the inlet (20) is in fluid communication with the discharge (22) and the magnet (4) is extracted from the casing (5). The openings of the plurality of openings (30) of the second container (3) are reciprocally arranged so that when the device is in the use configuration (A), the liquid crosses the second container (3) and strikes the casing (5) so that the magnet (4) attracts the ferrous material contained in the liquid, and so that when the device is in the washing configuration (B), the liquid crosses the second container (3) drawing the ferrous material towards the discharge (22).