摘要:
The invention relates to a method for the generation of steam, in particular for a cooking device, whereby a fluid within a steam generator container is brought to the boil, by the heating of at least one heatable wall surface (12) of the steam generator container. Said fluid is set in rotation by the heating and thus pressed against the heatable wall surface (12), due to centrifugal forces arising from the rotation. The steam generated as a result of the evaporation of at least a part of the fluid escapes from the steam generator container through a steam outlet and droplets of fluid entrained in the steam are separated out by at least one first rotor (8), rotatably mounted in the steam generator container, whereby the fluid is set in rotation by said rotor. The invention further relates to a device using the above method.
摘要:
The invention relates to a heat exchanger comprising a casing (4, 4a-b, 11-12) having an inner cavity, with a heat transfer element (1, 2a-b). This consists of an inclined wall (1) with connected fins (2a-b) on a heat output side (2b) and on a heat supply side (2a). The inclined wall (1) provides cavities on the heat output side and the heat supply side which grow in cross-sectional area in the flow direction and are adapted for an expanding gas. The large surface of the fins provides an efficient heat transfer. Fluid supply to the heat output side goes through a nozzle (6) to the cavity (3b). The supply of heat to the heat supply side takes place through a burner nozzle (5) to the cavity (3a). The output of fluid from the heat exchanger goes through the output outlet opening (7). Typically, the inlet on the heat output side is disposed above the inlet on the heat supply side to optimize the heat transfer through a countercurrent flow.
摘要:
Système (100) d'alimentation en ergol d'un allumeur, comprenant - un réservoir (10) présentant une admission (11) et un refoulement (12), - une ligne d'alimentation en ergol liquide reliée à l'admission (11) du réservoir (10), - une ligne de refoulement d'ergol reliant un refoulement (12) du réservoir (10) à un allumeur (40), caractérisé en ce que ledit réservoir (10) présente un volume interne rempli de sphères de stockage (20) de chaleur, lesdites sphères de stockage (20) étant adaptées pour stocker de la chaleur, et la transmettre à un fluide traversant ledit réservoir (10), de manière à vaporiser un ergol liquide traversant ledit réservoir (10).
摘要:
An integrated fluid delivery system (IFDS)(15) is provided for delivering fluid streams such as high purity fluid streams to a processing destination, such as a wafer processing chamber. The delivery system includes a first modular manifold for internally channeling the high purity fluid streams along seamless slots(18). The first modular manifold receives each of the high purity fluid steams at a corresponding porting aperture(30). At least one fluid device(12) from a group consisting of a flow controller, a valve, a filter and a pressure transducer is provided. The at least one fluid device(12) is in fluidic communication with a corresponding one of the high purity liquid streams of the first modular manifold to dispense the high purity fluid streams from the integrated liquid delivery system to the wafer processing chamber.
摘要:
Provided is a superheated steam boiler. The superheated steam boiler, in this embodiment, includes an inner tank system, the inner tank system including a first wet tank and a second dry tank separated from one another by an isolation member, an outer sleeve at least partially surrounding the inner tank system, wherein one or more wet tank fluid openings proximate a lower surface of the first wet tank allow the first wet tank to be in fluid communication with the outer sleeve, and further wherein one or more dry tank steam openings in the second dry tank allow the second dry tank to be in steam communication with the outer sleeve, and a burner system located primarily within the inner tank system. The burner system, in this embodiment, includes a combustion/expansion chamber having one or more spherical surfaces located in and fluidly isolated from the first wet tank, a distribution chamber located in and fluidly isolated from the second dry tank, a plurality of heat tubes extending through the isolation member between the combustion/expansion chamber and the distribution chamber; and an exhaust tube extending from the distribution chamber and out of the inner tank system to exit the superheated steam boiler.
摘要:
An integrated fluid delivery system (IFDS) (15) is provided for delivering fluid streams such as high purity fluid streams to a processing destination, such as a wafer processing chamber. The delivery system includes a first modular manifold for internally channeling the high purity fluid streams along seamless slots (18). The first modular manifold receives each of the high purity fluid streams at a corresponding porting aperture (30). At least one fluid device (12) from a group consisting of a flow controller, a valve, a filter and a pressure transducer is provided. The at least one fluid device (12) is in fluidic communication with a corresponding one of the high purity liquid streams of the first modular manifold to dispense the high purity fluid streams from the integrated liquid delivery system to the wafer processing chamber.
摘要:
An atomizer is provided for combining a precise mass of atomized liquid into a gas stream. The atomizer includes a mixing slot formed in a face of a base member. The mixing slot comprises a throat in fluid communication with a gas inlet side having a smoothly decreasing cross-sectional area and a mixture outlet side having a smoothly increasing cross-sectional area. A gas stream enters the mixing slot via gas inlet side and a liquid enters the mixing slot via a liquid inlet in fluid communication with the throat of the mixing slot. The mixing slot is sealed by a sealing member abutting the face of the base member with the mixing slot in it. The liquid is atomized and combined with a gas stream by venturi effect.
摘要:
The invention relates to a steam generator for obtaining superheated steam from heated gases. The aim of the invention is to improve the heat transfer and to reduce the space needed for construction. To this end, thermoconducting structural bodies (4) are arranged in a pressure pipe (1). Said structural bodies (4) are connected to one another and to the wall in a thermoconducting manner. Structural bodies (10) which are flown through by a superheated gas are melt on the outer wall of the pressure pipe.
摘要:
The invention relates to a device (1) for generating steam. The device (1) comprises a first plate (2) being inclined at a positive first angle (AO) compared to the horizontal direction (H) to define a first upper end (2a) and a first lower end (2b), a heating element (3) to heat the first plate (2) to a predetermined temperature being at least above water evaporation temperature, a water inlet arrangement (4) for dispensing water onto the first plate (2), a second plate (5) being inclined at a negative second angle (BO) compared to the horizontal direction (H) to define a second upper end (5a) and a second lower end (5b), the second upper end (5a) adjoining the first lower end (2b), and a container (6) extending at least below said first lower end (2b), said container (6) being arranged for collecting scale flakes falling from the first plate (2). This solution allows creating a larger volume for the collection of scale, thus increasing the operating life of the device (1).
摘要:
Langzeitwärmespeicher zur langfristigen Speicherung der Solarenergie und anderer Energie-Arten bei dem Wärmespeichermasse eine Gesteinsschüttung (1), insbesondere vulkanischer Herkunft, wie Diabas, Basalt, Granit sowie Gneis genutzt wird. Die Gesteinsschüttung bildet vorzugsweise eine polydisperse Schüttung, insbesondere indem das Lückenvolumen der Gesteinsschüttung (Granulat) einer ersten Korngröße oder Korngrößenverteilung ein Granulat einer zweiten Korngröße oder Korngrößenverteilung aufnimmt. Die Gesteinsschüttung (1) kann, vorzugsweise allseitig oder überwiegend, insbesondere unter Zwischenfügen einer Hülle aus geformten Steinen (2, 6, 17), von einer Pulverschüttung (5, 16), insbesondere von einer Ascheschüttung eingehüllt sein. Die Gesteinsschüttung (1) kann allseitig oder überwiegend, zumindest seitlich, von einer, insbesondere zylindrischen, Hülle aus geformten Steinen (2, 6, 17), insbesondere von einem, Mauerwerk (2) eingehüllt sein.