Abstract:
The vacuum glass cassette consists of glass housing comprising lateral glass sides (12), two glass plates (10) and a network of verical glass distance supports (14). The inner part of the cassette has been vacuumed.
Abstract:
Die Erfindung betrifft eine Vorrichtung zur Steuerung von Sonnenkollektoren mit beweglichen Lichtleitelementen (8, 14) und mit einer Betätigungseinrichtung zum Antrieb der Lichtleitelemente (8, 14). Ein besonders einfacher Aufbau wird dadurch erreicht, dass die Betätigungseinrichtung mindestens zwei Dehnelemente (2) aufweist, die in Abhängigkeit von der Stellung der Betätigungseinrichtung der Sonnenbestrahlung ausgesetzt sind und die durch eine Längenänderung eine Bewegung der Lichtleitelemente (8, 14) bewirken.
Abstract:
Die Erfindung betrifft einen Sonnenkollektor mit einem Gehäuse (1) und einem in dem Gehäuse (1) angeordneten Wärmeabsorber (4), der Fliesskanäle (5) für ein Medium aufweist. Ein besonders einfacher Aufbau kann dadurch erreicht werden, dass das Gehäuse (1) zumindest teilweise transparent ist und mit zwei Stirnprofilen verbunden ist, die das Gehäuse (1) und die Fliesskanäle (5) abschliessen.
Abstract:
A vacuum solar collector provided with an absorption plate (1) with channels (2, 3, 4) connected therewith for the supply casu quo discharge of a heat transfer medium, and with a housing substantially formed by a top cover (6) and a bottom cover (7) for forming an evacuable room at least between the top cover (6) and the absorption plate (1), whereby the top cover (6) is substantially formed by at least one wholly concave (when seen from the outside) plate having a cross-section in the shape of a segment of a circle.
Abstract:
A solar water heating apparatus (1) comprises at least one enclosed container (2) configured to hold a volume of water; an open-topped housing (3) configured to receive the or each container (2) therein, and a top cover (4) configured to close the open top of the housing (3) and to allow the transmission of solar radiation therethrough; the container (2) comprising an outer surface having a portion configured to face upwards towards the top cover (4) when the water container (2) is located in the housing (3), the container (2) and housing (3) mutually configured so that the width of at least the upwardly-facing portion of the container (2) is greater than the height of the container (2) when the container (2) is located in the housing (3).
Abstract:
A solar thermal collector for heating a fluid with absorbed solar thermal energy from solar radiations is provided. The solar thermal collector comprises an inlet configured to supply the fluid into the solar thermal collector, an outlet configured to evacuate the fluid from the solar thermal collector, and a solar absorber having an absorber plate and a base plate. The absorber plate has an absorber plate perimeter and an absorbing surface configured for absorbing the solar thermal energy from solar radiations. The base plate is connected to the absorber plate along the entire absorber plate perimeter so as to define a sealed cavity. The base plate and the absorber plate are connected at a plurality of contact points distributed so as to create an array of junctures across the sealed cavity, thereby allowing the fluid to circulate throughout the sealed cavity when flowing from the inlet to the outlet.
Abstract:
Disclosed herein is a solar thermal collector system that is particularly configured for installation on a pitched roof of a building. In accordance with aspects of a particular embodiment of the invention, the solar thermal collector system includes a solar thermal collector module having a glazing sheet at a top, exterior surface, and an absorber sheet within the module positioned below and spaced apart from the glazing sheet. At least the absorber sheet is fluidly connected to a fluid handling system, and carries a working fluid that is heated in the module by the sun and transfers such heat to thermal storage modules by the fluid handling system. The solar thermal collector module is preferably provided a thermally actuated valve that allows the working fluid to also flow through the glazing sheet, which results in self-regulation of the temperature of the module below a critical design temperature.
Abstract:
The specification discloses a solar energy water treatment device (10) for minimizing bacteria and other pathogens in treatment water supplied to the device (10), the device having an inclined metal surface (25) for receiving treatment water (34) via a supply pipe (37) at an upper end of the metal surface (25) for flow downwardly thereon in a thin surface flow, a clear or translucent solar energy transfer panel (14) being spaced above and adjacent to the metal surface (25) whereby solar energy passes to the water on the metal surface (25), and water collection means (28) at a lower end region of the metal surface (25) after passage thereon, the treatment water (34) flowing at a rate of between 0.1 and 2 litres/m 2 /min of the metal surface (25).
Abstract translation:本说明书公开了一种太阳能水处理装置(10),用于使提供给装置(10)的处理水中的细菌和其他病原体最小化,该装置具有倾斜金属表面(25),用于经由供给管 (25)的上端以薄的表面流向下方流动的金属表面(25)的上端部分(37),在金属表面(25)上方并与金属表面(25)相隔开的透明或半透明的太阳能转移板(14),由此太阳能 在金属表面(25)上的水和在金属表面(25)的下端区域之后的水收集装置(28)经过之后,处理水(34)以0.1和2之间的速率流动 升/ m 2 / min的金属表面(25)。