Abstract:
본 발명은 스팀발생장치 및 그 수위제어방법에 관한 것으로서, 더욱 상세하게는 소정 지름을 갖는 수직원통과, 이 수직원통의 외주면에 밀착되게 감겨져서 수직원통을 가열하는 히터와, 상기 수직원통의 하단에 설치되어 저수조에서 공급되는 물을 수직원통의 하단으로 공급하는 물주입포트와, 상기 수직원통의 상단에 설치되어 수직원통 내부의 수면에서 발생하는 수증기를 외부로 배출시키는 스팀배출포트와, 상기 수직원통의 외주면에 밀착되게 설치되어 수직원통의 온도를 측정하는 온도측정기와, 상기 온도측정기에서 측정된 온도에 따라 상기 히터로 공급되는 전원을 단속하는 스위치를 포함하여 구성된다.
Abstract:
The invention relates to a device for generating steam comprising a heating element for evaporating water. The invention also relates to a heating element for use in a device according to the invention. The invention further relates to a method for generating steam by means of a device according to the invention.
Abstract:
An apparatus for determining a density-compensated liquid level in a vessel containing a mixture of liquid and vapors comprises a temperature sensor which produces a signal that is proportional to the temperature of the mixture; and a processing apparatus (50) that includes one or more pressure sensors (52,54) that allow for a measurement of an operating pressure and a differential pressure between the mixture in athe vessel (30) and a constant reference leg. The processing apparatus further includes an integral microprocessor (56) for calculating the respective gravities of the liquid and vapor portions of the mixture based on the operating pressure, and then computing the density-compensated liquid level in the vessel based on such calculations of specific gravity and the differential pressure.
Abstract:
The present invention relates to a method of determining a liquid level in a boiler (12) of an apparatus (10) having a temperature sensor (24) for sensing a temperature (T) which is indicative of a temperature of the liquid inside the boiler (12), comprising the steps of: inducing a temporary deflection of the temperature (T) sensed by the temperature sensor (24); determining an evaluation temperature (T ev ) sensed by the temperature sensor (24) after inducing the deflection; and determining the liquid level from at least the evaluation temperature (T ev ). Advantageously, the invention provides that the evaluation temperature (T ev ) is determined by monitoring the deflection and by defining an extreme value (T max , T min ) of the deflection as the evaluation temperature (T ev ). Further, the present invention relates to an steam generating apparatus adapted for executing such a method, a domestic appliance having such a steam generating apparatus.
Abstract:
The invention relates to a steam generator used in a machine such as a clothes washing machine, a clothes drying machine, a clothes washing and drying machine, and the like and a level sensor used in the same. In more particularly, the present invention relates to a level sens integrally formed by molding and conveniently assembled in the steam generator. The steam generator includes a case having a space for storing water and formed with a level sensor insertion hole, and a level sensor. Here, the level sensor includes a conductor having a detector positioned in the space for storing the water and a connector electrically connected to the exterior, and a level sensor housing inserted into the level sensor insertion hole and integrally formed with the conductor by insert molding.
Abstract:
본 발명에 따른 유기 랭킨 사이클 시스템과 그 제어 장치 및 제어 방법은 증발기와 터빈 사이에 기액분리기를 마련하되, 상기 기액분리기에 레벨 센서를 마련하여 기액분리기 내부 포화액의 수위를 모니터링하고, 제어부를 마련하여 상기 레벨 센서의 수위에 따라 증발기의 운전 조건을 조절함으로써, 상기 터빈으로 지속적으로 포화증기 상태의 유기작동 유체가 공급될 수 있도록 하는 것을 특징으로 한다.
Abstract:
Die Erfindung betrifft ein Haushaltsgerät (10) mit einem befüllbaren Dampfkessel (20) mit einem von Begrenzungswänden (22, 24, 26, 28, 30) umschlossenen Innenraum (46), wobei in wenigstens einer Begrenzungswand (22) ein Einlass (40) für eine Flüssigkeit (74) vorgesehen ist. Der Einlass (40) ist so in Bezug auf einen Sensor (50) zur Erfassung eines Füllstands im Dampfkessel (20) angeordnet, dass ein aus dem Einlass (40) in den Dampfkessel (20) eintretender Flüssigkeitsstrahl (72) zuerst auf einen Koppelbereich (54) des Sensors (50) mit dem Dampfkessel (20) trifft, wenn der Einlass (40) Flüssigkeit (74) in den Innenraum (46) des Dampfkessels (20) abgibt, bevor sich die Flüssigkeit (74) im Dampfkessel (20) sammelt.