Abstract:
A portable airborne pathogen control apparatus and system. Aspects of the present disclosure provide for a portable airborne pathogen control apparatus configured to be selectively positioned within an interior room and configured to enable a floor-to-ceiling flow of air within the interior room. The portable airborne pathogen control apparatus may comprise a housing with an air intake disposed at a lower area of a base housing and an air outlet disposed at an upper area of an elongated duct extending from the base housing. A blower fan housed within an interior chamber of the housing may be configured to direct a floor-to-ceiling flow of air through the interior chamber from the air intake to the air outlet. A volume of air directed through the interior chamber of the housing may be disinfected using one or more UV-C emitters and/or cold plasma generator(s) housing in the interior chamber of the housing.
Abstract:
본 발명은 빗물유입 방지 및 미세먼지 차단 기능을 갖는 자연환기창에 관한 것으로, 보다 상세하게는 중앙부에 미늘판이 형성된 본체를 다수 결합하고, 본체의 측면에 지지대를 결합하고, 상부와 하부에 고정구를 결합하여 환기창을 만들고, 상기 환기창을 방충망 틀 또는 창문 틀 등에 설치하고, 상기 미늘판과 다른 재질의 미세먼지필터를 장착하는 것을 특징으로 한다. 이러한 본 발명은, 비가 내릴 때 창문을 열어놓으면 실내로 빗물 유입이 방지되며 환기가 되고, 실외의 미세먼지 농도가 높을 때에도 창문을 열어 놓으면 미세먼지필터를 통하여 미세먼지가 차단되어 자연환기를 할 수 있는 효과가 있으며, 본체를 다수 연결하였음에도 일체화되어 전후좌우상하로 분리되지 않으며, DIY용으로 소형화하여 배송할 수 있는 효과가 있다.
Abstract:
This invention relates to intake ventilator provided with a flow channel, an air intake and an air outlet, characterized in that it comprises a thick-walled shell (1) made of a resilient material having good thermal insulation properties, arranged at the bottom in the form of a concavity (2), consisting of an air-intake cavity (3), an air-outlet cavity (4) and a recess (5) of the flow channel and said recess has a rib (6), in the same time the upper part of the thick- walled shell (1) forms a plate (7) provided with openings (8) in which profiled ribs (8') are arranged, moreover, said shell has two side walls (9) and a closure (10) of the air intake and a closure (11) of the air outlet, and said four elements surround the concavity (2) from four sides, in the same time the recess (5) of the flow channel is closed from the bottom with a horizontal partition 15 having a slanting fault (16) and said horizontal partition (15) via seals (18) abuts on the upper surface of a window rail (19), while on the upper surface of the partition (15) from the side of the air-intake cavity (3) a pressure throttle (20) is located, furthermore, inside the air-intake cavity (3) a thermal air-flow controller (24) is situated and said thermal air-flow controller consists of two profiled guides (25) and (26) connected to the yokes (29) and (30) having arms (42) and (43) respectively, with openings (44) and they are assembled by means of screws (45) to the brackets (46) and (47) respectively, equipped with mounting sleeves (46') and (47') respectively, each of the guides has a longitudinal groove (27) and two longitudinal slots (28) and the grooves (27) are provided with two movable lamellar throttles (31) and (32) having openings (33) and binders (34) between said openings, while in the slots (28) of the guides (25) and (26) two pairs of bars (35) and (36) are placed and the yokes (29) and (30) which have arms (42) and (43) respectively, with holes (44) and they are assembled by means of screws (45) to the brackets (46) and (47) respectively, equipped with mounting sleeves (46') and (47*) respectively, moreover, the air-intake cavity (3) is covered from the bottom with a flap (48) provided with two guides (49), in which the side closures (50) and (51) of the flap are located and said closures are provided with ribs (52) and (53) with axles of rotation (54) and furthermore the air-outlet cavity (4) is covered from the bottom with a masking frame (60) provided with two guides (64) in which there are catches (65) of the side closures (61) and (62) of the masking frame and said closures (61) and (62) have ribs (66) and (67) with transverse openings (68) in which the axles of rotation (69) and (70) of the throttle (14) are mounted.
Abstract:
The present invention relates to a frame (1) for a window, by which an interior of a building is separated from the exterior, wherein the frame (1) comprises at least one ventilation opening (11) directed to the interior, and at least one ventilation opening (12) directed to the exterior, wherein the ventilation opening (11) directed to the interior and the ventilation opening (12) directed to the exterior are connected to one another via a ventilation channel (13), and at least one ventilation device (2) arranged between the ventilation opening (11) directed to the interior and the ventilation opening (12) directed to the exterior is integrated in the frame (1), wherein the ventilation device (2) comprises a ventilation housing (21) and at least one means (22) for generating airflows arranged in the ventilation housing (21), wherein the ventilation housing (21) comprises a rotatable separating element (23) by which the ventilation channel (13) is divided into an inner section (14) connected to the ventilation opening (11) directed to the interior (11), and an outer section (15) connected to the ventilation opening (12) directed to the exterior, wherein the means (22) for generating airflows is arranged in a first rotational position of the separating element (23) in such a manner that the flow direction in the ventilation channel (13) points from the inner section (14) to the outer section (15), and in a second rotational position of the separating element (23), the means (22) for generating air flows is arranged in such a manner that the flow direction in the ventilation channel (13) points from the outer section (15) to the inner section (14); and the invention also relates to a ventilation device (2) that is suitable for use in such a frame (1).
Abstract:
Dispositif de commande (10) d'un dispositif de fermeture (100) d'un bâtiment, le dispositif de fermeture comprenant un panneau mobile (20) et un moyen de ventilation (40), caractérisé en ce que le dispositif de commande comprend un chariot (55) mobile relativement au panneau mobile, le chariot: entraînant le panneau mobile quand le chariot est immobilisé relativement au panneau mobile et commandant un changement d'état du moyen de ventilation quand le chariot se déplace par rapport au panneau mobile.
Abstract:
The invention is designed for the actual needs of the sufficiently efficient ventilation device, which will on the hand allow being minimised to the extent where during the first installation or the replacement of windows in the event of renovation of buildings, it can be installed either into the window frame (91) or optionally mounted into the building wall directly near this frame (91), and will on the other hand efficiently contribute to the substantial improvement of the energy balance of the respectively ventilated building. In general, this type of ventilation device comprises the housing (1) with the counter-flow heat exchanger, comprising the primary part, which is connected with the outer inlet (11) for the supply of air into the housing (1) and the inner inlet (13), which is intended for the supply of air from the device into the respectively ventilated room, and the secondary part, connected to the inner outlet (14) for the discharge of air from the room into the device and also to the outer outlet (12) for the discharge of air from the device into the surroundings of the respectively ventilated building.
Abstract:
The invention relates to a window construction. The window construction comprising profiled frames (12). The profiled frames (12) including ventilation air channels (10). The window construction having adjustable ventilation arrangement for ventilating indoor air without opening the window.
Abstract:
The invention relates to a multifunctional window, door or facade element having a wide casement/leaf frame which, following an electrical or mechanical command, is capable of performing a number of functions, such as opening/closing the casement/leaf, providing shade, providing illumination, providing gas filling in the interspace between the panes or ventilating, wherein a groove in the frame element contains a closing mechanism, and at least the casement/leaf element comprises partially light-impermeable or covered transparent material with optical waveguides, wherein a ventilating channel which can be changed in cross section by the closing mechanism is provided between the frame element and the casement/leaf element, and at least one light source and at least one filter element is provided in the casement/leaf element and/or in the frame element.
Abstract:
The invention relates to a ventilation device for windows, doors and the like, especially for integrating into facade configurations in order to effectively utilize energy and to increase the level of comfort in rooms located behind said device. According to the invention, the use of an additional frame part is avoided in that the ventilating device is provided in only one frame. The device is comprised of a sash frame (1), a sash (2), seals (3), a glazing glass (4), a glass strip (5), an all-glass sash (6), a coppered glass strip (7), fastening elements (9), a ventilation gap (10), and ventilation openings (11). The all-glass sash (6) is provided with a ventilation gap (10) which is preferably arranged in the upper section of the all-glass sash (6). Via openings (11), an air channel is arranged between the ventilation gap (10), the area which is situated between the glazing glass (4) and the coppered glass strip (7), the glass strip (7), the sash (2), and the sash frame (1). The outgoing air flows into the room via the ventilation gap (10) between the all-glass sash (6) and the glazing glass (4). The air is carried away via the openings (11) which are situated in the coppered glass strip (7), the glass strip (5), the sash (2) and in the sash frame (1). As a result, the air is conducted via the space between the window panes in a controlled and energy efficient manner while increasing the level of comfort in order to control ventilation of the room located behind the ventilation device.
Abstract:
A security unit (700) protects a glazing unit supported by a window frame (101). The window frame (101) defines a void (107) that is in communication with an air space (16) through external air vents (140). The window frame (101) has a side panel that defines side panel holes. The security unit (700) includes a security panel (130) that is spaced apart from the glazing unit (114) to define an air cavity (102) and is secured to a vertical tubular U-channel bar (720) that is secured to a side panel of the window frame (101). The vertical tubular bar (720) defines a passage (111) therethrough in communication with the air cavity (102) through air cavity vents (714) and defines passage holes (115) aligned the side panel holes (117).