Abstract:
Mischkartusche (1) für eine Sanitärarmatur (2), zumindest aufweisend: ein Kartuschengehäuse (3) mit einer ersten Längsachse (4), zumindest einem ersten Kaltwassereinlass (5) für Kaltwasser und zumindest einem ersten Warmwassereinlass (6) für Warmwasser; eine Aufnahme (7), die in dem Kartuschengehäuse (3) angeordnet ist und eine zweite Längsachse (8), zumindest einen zweiten Kaltwassereinlass (9) für das Kaltwasser und zumindest einen zweiten Warmwassereinlass (10) für das Warmwasser aufweist; ein Druckausgleichselement (11) mit einer dritte Längsachse (12), zumindest einem dritten Kaltwassereinlass (13) für das Kaltwasser und zumindest einem dritten Warmwassereinlass (14) für das Warmwasser, wobei der zumindest eine dritte Kaltwassereinlass (13) in eine Kalt-wasserkammer (15) und der zumindest eine dritte Warmwassereinlass (14) in eine Warmwasserkammer (16) münden und wobei das Druckausgleichselement (11) zum zumindest teilweisen Ausgleichen eines Kaltwasserdrucks des Kaltwassers in der Kaltwasserkammer (15) und eines Warmwasserdrucks des Warmwassers in der Warmwasserkammer (16) parallel zu der ersten Längsachse (4) des Kartuschengehäuses (3) bewegbar in der Aufnahme (7) angeordnet ist.Darüber hinaus wird eine Sanitärarmatur (2) mit einer solchen Mischkartusche (1) vorgeschlagen.
Abstract:
Es wird ein Verfahren zum Steuern von Wärmeaustauschen zwischen mehreren Energiesystemen (4) vorgeschlagen, wobei jedes Energiesystem (4) eine oder mehrere Wärmeeinheiten (40) zur Wärmebereitstellung und/oder zum Wärmeverbrauch aufweist, und die Energiesysteme (4) über eine jeweilige Abnahmestelle (41) Wärme über ein bezüglich der Energiesysteme (4) externes Wärmenetz (2) austauchen können, wobei das Steuern der Wärmeaustausche mittels einer bezüglich der Energiesysteme (4) zentralen Steuerungsplattform (1) erfolgt, die Wärmeaustausche zwischen den Energiesystemen (4) basierend auf einer Optimierung steuert. Das Verfahren ist gekennzeichnet dadurch, dass die Steuerungsplattform (4) basierend auf den mittels der Optimierung ermittelten Wärmeaustauschen die Temperaturspreizungen und die Massenströme wenigstens eines Teils der Energiesysteme (4) an der jeweiligen Abnahmestelle (41) einstellt. Weiterhin betrifft die Erfindung eine Steuerungsplattform (4).
Abstract:
This invention relates to smart, integrated, fully automated cooking and pressure oven. The oven works by electricity and comprises a pressure steam box, System of multi-layers works like a puzzle. In addition, it contains touch pad, processing unit operated by software, high temperature, high humidity, cooling systems, hot water, unique hot air and water mixing system. It cooks different foods at the same time in different drawers each drawer works as a cooking cabinet. Controlled systems according to the cooking recipe taking from the oven database, depends on the input cooking data. The invention is a multi- functional cooking oven, which can calculate nutrition and can cook all types of food in a healthy manner taken in consideration medical concerns. The oven is totally safe, secure and clean all the time during cooking processes. The invention also is characterized by ease components installation, supported with internet port and communication devices. The enclosed software can detect and inform the parts failures. It informs maintenance by mobile application for repairing. The oven software automatically manages, adjusts the cooking and safety systems through different sensors and valves. The cooking system is completely protected and automatically monitored all the time.
Abstract:
Electronic device (1) for regulating a thermo-fluidic system for a building (56), comprising a heating/cooling system (50, 54; 80, 82, 84, 85) including mixing valves (52, 52') adapted to control flows of hot/cold water within said heating/cooling system (50, 54; 80, 82, 84, 85), the device (1) comprising a control unit (2) adapted to: - receive a main signal (4) from a building management system (56); - receive a predefined reference signal (6) representative of a desired parameter for the building (56); - receive environmental signals (8) from environmental sensors placed in the building (56) and adapted to measure environmental parameters of said building (56); - issue a control signal (10) towards an actuator associated with a respective mixing valve (52, 52') in order to modify the opening or closing thereof.
Abstract:
In a freezer having an internal space therein in which a blower and an impingement plate are disposed and through which a conveyor for a food product passes, an impingement apparatus, includes a hood disposed at the internal space for coacting with the blower and the impingement plate, the hood including a sidewall defining a sub-chamber in which the blower is received; and a pipe having an end opening into the sub-chamber for introducing a pulse of cryogen to the sub-chamber for increasing a pressure in the sub-chamber and contacting the impingement plate. A related method is also provided.
Abstract:
A mixer valve ( 1) comprises a body (5) extending in a first direction between a front end and a rear end. The body (5) defines a volume (5a); a thermostatic cartridge ( 15) is received in the volume (5a), and a diaphragm valve (21) is received in the volume (5a) between the thermostatic cartridge ( 15) and the rear end of the body (5). The diaphragm valve (21) is operable in response to actuation of a push operated control member (23) to control flow of water from the mixer valve ( 1).
Abstract:
An aircraft environmental control system (4) for controlling a temperature of a fluid, the control system (4) comprising: a temperature sensor (30) configured to measure a temperature of the fluid and to generate a signal, the first signal being indicative of the measured temperature; a control signal generator (52) configured to, dependent upon the first signal, generate a control signal for controlling the temperature of the fluid; and one or more processors (64) configured to, responsive to determining that the measured temperature oscillates about a central value, decrease a gain of the control signal generator (52).
Abstract:
A thermostatic mixing valve including: a first fluid inlet; a second fluid inlet; an outlet; a thermostatic element connected to a return spring and a piston such that movement of the thermostatic element assists with moving the piston, movement of the piston controlling fluid flow from the first fluid inlet and the second fluid inlet to the outlet; a housing containing an overtravel spring, the overtravel spring configured to resist a force applied by the thermostatic element during movement thereof; and a plunger extending into the housing, the plunger configured to engage the overtravel spring, wherein rotating the plunger adjusts the resistance applied onto the thermostatic element from the overtravel spring.
Abstract:
Sistema de otimização e reaproveitamento de água em chuveiro e torneiras constituído por identificação da temperatura da água quente pela ação de sensor de temperatura de válvula solenóide (tipo de três vias e lateralmente sempre aberto) (1), colocado na tubulação de alimentação de água quente (2), que provoca o desvio da água ainda fria para o tanque de água (3) e, quando a temperatura desejada for atingida, abre-se a válvula solenóide (tipo de três vias e lateralmente sempre fechada) (4), e complementando a alimentação e mistura, pela ação da gravidade, na tubulação de entrada de água fria (5) e sendo a água quente e a água fria levadas para uma válvula misturadora (6) da torneira ou do chuveiro (7), desenvolvido para uso em edificações residenciais, comerciais e industriais, colocado antes de chuveiros e torneiras e cujo desenvolvimento visa impedir que ocorra a perda da água limpa, quando da abertura do chuveiro ou torneiras, até que a sua temperatura ideal seja atingida.
Abstract:
Cette vanne thermostatique comprend un corps (2), qui délimite un premier conduit de passage de fluide, dans lequel débouchent transversalement au moins un deuxième conduit et au moins un troisième conduit, un manchon (20), qui est mobile à l'intérieur du corps de vanne pour mettre en communication au moins l'un des deuxième et troisième conduits avec le premier conduit, un élément thermostatique, comprenant une partie fixe et une partie mobile, qui est déplaçable sous l'effet d'une variation de volume d'une matière thermodilatable contenue dans l'élément thermostatique et qui est liée en translation au manchon, un boîtier (10) de maintien de l'élément thermostatique, qui est solidaire de la partie fixe de l'élément thermostatique, qui est immobilisé à l'intérieur du premier conduit et qui coopère par contact étanche avec le manchon, et une bague (60) d'étanchéité entre le manchon et le corps de vanne. Le boîtier (10) obture une extrémité du premier conduit et la bague d'étanchéité (60) est liée fixement au boîtier (10) de maintien de l'élément thermostatique et comporte au moins une ouverture de passage du fluide dans son épaisseur.