Abstract:
Die Erfindung betrifft eine Wärmespeicheranordnung enthaltend einen inneren Speicherbehälter, eine den inneren Speicherbehälter zumindest bereichsweise umgebende innere Wärmedämmschicht, eine auf der dem inneren Speicherbehälter abgewandten Seite der Wärmedämmschicht angeordnete Vorrichtung zur Übertragung eines durch die innere Wärmedämmschicht tretenden Verlustwärmestroms des inneren Speicherbehälters auf ein Wärmeträgerfluid und eine einen Verdampfer enthaltende Wärmepumpe, wobei die Vorrichtung mit dem Verdampfer der Wärmepumpe hydraulisch verbindbar ist.
Abstract:
Rational exploitation of primary energy provided from fossil fuels and solar radiation while taking into account the protection of the environment. The exploitation of maximum calorific values of fossil fuels comprises a combustion chamber (e), a combustion air conditioning (t) and the exploitation of heat from burned gas to heat the heat material (h), the fuel (w) and air (t). A water bath (q) is used to eliminate noxious substances from burned gases. A thermopump (5) is used to exploit heat from residual burned gas as well as to exploit all low service power current in a plant, in a factory or in a building. Movable window solar collectors (25) and roof collectors are provided to exploit solar energy. The excess of heat is stored (40, 41) in thermal walls and in thermal accumulation walls with movable heat-insulating layers.
Abstract:
Heating or cooling device enclosed in a housing, provided with a compression heat pump and an absorption heat pump which may be actuated either by a combustion engine (1) or by an electrical motor (6). The housing is provided as a double heat accumulator (17). A heat conveying medium is accumulated between the outer and inner walls of the heat accumulator (17) and is conveyed therefrom to the lubricant cooler of the combustion engine (1) for the circulation of the refrigerant of the compression heat pump and for the dual circulation of the fluids of the absorption heat pump which are arranged inside the trough-shaped heat accumulator (17).
Abstract:
Constituido a partir de una bandeja que soporta unido a ella solidariamente los siguientes elementos: Un depósito de acero en cuyo interior permanece un condensador frigorífico en forma de serpentín. El depósito están acopladas dos tuberías provista cada una de una llave grifo unidas dos latiguillos, uno de entrada y otro des salida. El depósito incorpora también un termostato. Un condensador y un evaporador auxiliar exterior y cuatro electro-válvulas de dos vías o bien dos electroválvulas de 3 vías (según mercado) conmutadas entre sí y conectadas al resto de los elementos que soporta el frigorífico a través de tuberías de cobre. El mecanismo incorpora un circuito electrónico o cuadro eléctrico, que dispone de una etapa de control regulada por los termostatos del frigorífico y del deposito acumulador de agua y de una etapa de potencia que proporciona corriente eléctrica al compresor y a las electroválvulas mediante conexiones eléctricas. Este calentador de agua a partir de un frigorífico no dispone de resistencia de apoyo
Abstract:
본 발명은, 제1열원을 이용하여 제1열에너지를 저장하고, 주거용 또는 상업용으로 이용되는 제1수요처에 상기 제1열에너지를 공급하는 제1열기지와, 제2열원을 이용하여 제2열에너지를 저장하고, 산업용으로 이용되는 제2수요처에 상기 제2열에너지를 공급하는 제2열기지를 포함하고, 상기 제1열기지와 상기 제2열기지는 열에너지 네트워크의 기저부하를 담당하며, 상기 제1열기지와 상기 제2열기지 사이에서 상기 제1열에너지 및 상기 제2열에너지가 필요에 따라 전달되는 열에너지 네트워크 시스템을 제공한다. 따라서, 상기 제1열기지 및 상기 제2열기지가 상기 제1수요처 및 상기 제2수요처에 각각 필요한 열에너지를 공급할 수 있고, 상기 제1열기지와 상기 제2열기지 사이의 양방향 열에너지 이동이 가능하므로 열에너지의 이용도가 향상된다.
Abstract:
The invention relates to a storage tank device (600) for an energy storage system (500), comprising at least one storage tank (10) which has a housing (12) and contains a storage medium (30) and at least one first heat exchanger arrangement (10) in contact with the storage medium (30), wherein the storage medium (30) undergoes a phase change with latent heat, wherein the at least first heat exchanger arrangement (100) has a first heat carrier medium (102) and within the housing (12) there is arranged a second heat exchanger arrangement (200) with a second heat carrier medium (202) and at least one third heat exchanger arrangement (300) with a third heat carrier medium (302). The second heat exchanger arrangement (200) and the third heat exchanger arrangement (300) surround the first heat exchanger arrangement (100) at least in regions. The invention also relates to an energy storage system (500) having a storage tank device (600).
Abstract:
An electric power generating plant with an electric motor (11) driven by an internal combustion engine (4) is arranged in a chamber enclosed in a housing (1) surrounded by an insulating material (13) via a water jacket. A heat exchanger through which the exhaust gases (18) of the internal combustion engine flow is arranged inside this water jacket.
Abstract:
The heat pomp is driven by a Diesel engine. The air or water supply of a house hold apparatus is set into heat exchange relationship with the pressurized part of the refrigerating fluid circuit of the heat pump, with the cooling water of the Diesel engine and/or with the exhaust gases of the Diesel engine. The portion under vacuum of the refrigerating fluid circuit of the heat pump may be in heat exchange relationship with a water thermal accumulator wherein is immersed the condensor of a refrigerating apparatus.