Abstract:
A fresh airflow (L1) is conducted from a supply air chamber (10) through nozzles (60) into a ring-shaped mixing chamber (20). A circulated airflow (L2) is conducted from a room space into a cylindrical suction chamber (40) inside a ring-shaped heat exchanger (30). From the suction chamber (40) the circulated airflow (L2) travels through the heat exchanger (30) into the mixing chamber (20). The nozzles (60) are located in the upper part of the mixing chamber (20) at a distance from each other on the periphery of at least one circle, whereby the mid-point of the circle is located on the vertical central axis of the supply air terminal device. The horizontal component of the direction vector of the fresh airflow (L1) discharging from each nozzle (60) forms an angle ², which is in a range of 45-135 degrees; with the radius of said at least one circle, and the direction vector is directed downward, in relation to the horizontal plane at an angle ±, which is in a range of 15-75 degrees, whereby a rotating airflow directed downward is formed in the mixing chamber (20).
Abstract:
Humidifying apparatus includes a body and a nozzle mounted on the body. The nozzle has a first air inlet, a first air outlet, and a first interior passage for conveying air from the first air inlet to the first air outlet. The nozzle also has a second air inlet, a second air outlet, and a second interior passage for conveying air from the second air inlet to the second air outlet. The nozzle defining a bore through which air from outside the humidifying apparatus is drawn by air emitted from the air outlets. The body includes a base and a water tank mounted on the base. The base comprises flow generating means for generating a first air flow through the first interior passage and a second air flow through the second interior passage, a reservoir for receiving water from the water tank, a transducer for atomizing water located in the reservoir, a first air passageway for conveying the first air flow to the first air inlet, and a second air passageway for conveying the second air flow over the reservoir and to the second air inlet.
Abstract:
A fan assembly includes a nozzle and a body on which the nozzle is mounted. The nozzle has a rear section having at least one first air inlet, at least one first air outlet, and a first interior passage for conveying air from the at least one first air inlet to the at least one first air outlet; and a front section having at least one second air inlet, at least one second air outlet, and a second interior passage for conveying air from the at least one second air inlet to the at least one second air outlet. A first air flow through the first interior passage and a second air flow through the second interior passage are each generated within the body. At least one of the temperature, humidity, and electrical charge of the second air flow is changed before it enters the second interior passage.
Abstract:
The present invention relates to an air conditioning system including a control apparatus which can access to an air conditioner easily for determining and controlling an operation state of the air conditioner visually. The air conditioning system stores and manages data received from the air conditioner, and displays visually, to display a change of the operation state of the air conditioner with a time flow, enabling the user to determine a state of the air conditioner easily to recognize a trouble of the air conditioner instantly and to determine a flow on a whole structure and general operation of the air conditioner easily, thereby permitting to have an advantage of improving user's convenience, significantly. (Fig.1)
Abstract:
A fan assembly (10) comprising: a body (12) comprising an air inlet (22), an air outlet (18), and means (80) for generating an air flow through the body, the body comprising a lower body section (52) and an upper body section (50), the upper body section housing the means for generating the air flow and the lower body section housing a control circuit (62) for controlling the means for generating the air flow; and a nozzle (16) for receiving the air flow from the body and for emitting the air flow, wherein the lower body section comprises an outer wall (53) and an inner wall (55), the outer wall and inner wall defining an outer cavity (57) surrounding an inner cavity (59), and wherein the control circuit (62) is located within the inner cavity surrounded by the inner wall.
Abstract:
Offenbart ist ein Verfahren zum Klimatisieren eines Raums mittels eines Deckensegels (1) umfassend eine Trägerplatte (2) mit einer Länge (L) und einer Breite (B) und einen oberhalb der Trägerplatte (2) angeordneten Verteilkanal (9), wobei der Verteilkanal (9) parallel zu einer Längsachse (3) der Trägerplatte (2) verläuft und zu zwei gegenüberliegenden Seiten hin mit Austrittsöffnungen (12) versehen ist, so dass Zuluft parallel zu der Trägerplatte (2) und senkrecht zu der Längsachse (3) der Trägerplatte (2) zu beiden Seiten hin aus dem Verteilkanal (9) strömt, wobei beidseitig des Verteilkanals (9) jeweils ein Wärmetauscher (13) angeordnet ist und zwischen der Trägerplatte (2) und dem Verteilkanal (9) sowie zwischen der Trägerplatte (2) und den Wärmetauschern (13) ein Abstand (a) besteht, der einen freien Luftraum (7) oberhalb der Trägerplatte (2) definiert. Um die möglichen Kühl- oder Heizlasten zu steigern wird vorgeschlagen, dass die aus dem Verteilkanal (9) strömende Zuluft die Raumluft in den freien Luftraum (7) induziert, die dann in die Wärmetauscher (13) gelangt, temperiert wird und sich anschließend mit der Zuluft zu einem Mischluftstrom vermischt.
Abstract:
A vertical air-conditioner includes an indoor unit, the indoor unit including a front panel (102), a rear panel (103), a left panel and a right panel. An internal air duct of the indoor unit is defined by the front panel (102), the rear panel (103), the left panel and the right panel. A mixed air outlet (1021) is formed on the front panel (102); a non-heat-exchanged air inlet (1031) is formed on the rear panel (103) at a position corresponding to the mixed air outlet (1021); and a baffle (104) configured to open/close the non-heat-exchanged air inlet (1031) is disposed at the non-heat-exchanged air inlet (1031).