Abstract:
The present invention provides an apparatus (10) suitable for cooling hot condensate in a piping. The apparatus comprises the use of a vortex tube (103) together with liquid such as water. A container (101) is provided to hold the liquid where the vortex tube is disposed inside the container (101). A pipe coil (133) for conveying the hot condensate is provided around the tube (104). The apparatus (10) will generate mist for cooling the hot condensate in the piping.
Abstract:
A vaporizer heating assembly includes an airflow chamber having a proximal end, a distal end opposite the proximal end, and a glass body connecting the proximal end to the distal end. A heating chamber is located within the airflow chamber and includes an elongated glass body and a heating element located within the elongated glass body of the heating chamber. A fan is in fluid communication with the proximal end of the airflow chamber and an attachment adapter is mechanically coupled to the distal end of the airflow chamber in a sealing arrangement, where the attachment adapter forms an attachment port for a vapor receiving element.
Abstract:
Subject-matter of the present invention is an energy recovery apparatus and its use for the thermal treatment and the valorisation of a solid or fluid material, even polluted. Figure 1 shows the longitudinal section of an embodiment of the apparatus (1) according to the present invention suitable for the treatment of fluids, whereby a first hot fluid is conveyed through inlet connectors to a containment chamber (2), where a deflector (21) of elongated form creates an interspace (21 ') and heat exchange elements (3) are used to circulate a second fluid. In another embodiment, heat exchange takes place with a solid being conveyed through a rotating chamber (5).
Abstract:
Die Erfindung betrifft eine UHT-Anlage zur Wärmebehandlung von temperatursensiblen Lebensmittelprodukten, insbesondere Desserts oder dessertartigen Produkten, mit einer Vorerhitzerzone und einer sich anschließenden Hocherhitzerzone nach dem Oberbegriff des Anspruchs 1. Es ist Aufgabe der vorliegenden Erfindüng, bei einer UHT-Anlage der der gattungsgemäßen Art eine genaue und zügige Temperaturanpassung des aus der Vorerhitzerzone austretenden Lebensmittelprodukts an die Temperaturverhältnisse am Eintritt der Hocherhitzerzone zu erreichen, gleichzeitig bei gleicher Verweilzeit für alle Teilmengen des Lebensmittelprodukts eine thermisch besonders schonende Behandlung des Lebensmittelprodukts sicherzustellen und die mechanische Belastung des Lebensmittelprodukts so niedrig wie möglich zu halten. Dies wird dadurch erreicht, • dass der erste Leitungsabschnitt (L1) über einen mit einem dritten Heizmedium (M3) beheizten Trimmerhitzer (10) geführt ist, • dass von dem zweiten Leitungsabschnitt (L2) an einer Verzweigungsstelle (V1) eine Rückführleitung (LR) abzweigt, die, bezogen auf die Strömungsrichtung des ersten Heizmediums (M1) in dem ersten Leitungsabschnitt (L1), oberstromig des Trimmerhitzers (10) an einer Vereinigungsstelle (V2) in den ersten Leitungsabschnitt (L1) einmündet, • dass in der Rückführleitung (LR) eine von der Verzweigungs- (V1) zur Vereinigungsstelle (V2) fördernde zweite Fördereinrichtung (3) angeordnet ist, • und dass von den produktführenden Wärmeaustauschern der Vor- und Hocherhitzerzone (100, 100-1,...; 100+1, 100+2,...) wenigstens der erste Wärmeaustauscher der Vorerhitzerzone (100) derart ausgebildet ist, dass bei dem wenigstens einen Rohrbündel (100.i) sämtliche Innenrohre (300) kreisringförmig, auf einem einzigen Kreis (K) und in einem als Ringraum ausgebildeten Außenkanal (200*) angeordnet sind, sich in dessen Längsrichtung erstrecken und endseitig jeweils in einer Rohrträgerplatte (700, 800) abstützen.
Abstract:
A heat exchange apparatus (100, 101) for a heat pump (400, 401) has a working fluid flow path (2) arranged in a heat transfer relationship with a heat transfer fluid flow path (1). The apparatus (100) has a first heat exchange section (9) and a second heat exchange section (10), the heat transfer fluid flow path (1) and working fluid flow path (2) extending through the first and second heat exchange sections (9, 10). The apparatus (100, 101) further includes a bypass conduit (7) having a bypass inlet (8) in fluid communication with the heat transfer fluid flow path (1) in the first heat exchange section (9), wherein, in use a portion of the heat transfer fluid which flows through the apparatus (100, 101) flows through the bypass conduit (7), thereby bypassing the second heat exchange section (10). Methods and systems for heating water are also disclosed.
Abstract:
A fluidic assembly for an air conditioning circuit comprises a' first feeding line (2) for a high temperature fluid, a second feeding line (3) comprising a barrier material for a refrigerating fluid in the gaseous state, and a casing (16) defining a first inlet (24) and a first outlet (25) connected to the second line (3); a chamber (31) having an elongated shape and a minimum upper cross dimension as compared to the first inlet and second outlet (24, 25); a second inlet (22) and a second outlet (23) connected to the first line (2); the fluidic assembly comprising a radiating body (26) adapted to be crossed by the high temperature fluid and fluid- tightly connected to the casing (16) between the second inlet and the second outlet (22, 23) within the chamber (31) for defining an integrated silencer- exchanger assembly (12).
Abstract:
La presente invención consiste en un calentador de agua de almacenamiento o de rápida recuperación, que contiene al menos un tubo de humo y en el interior del tubo, contiene un recuperador de calor desmontable, el cual contiene un tubular cuadrado o rectangular en el centro y en él se fijan con puntos de soldadura, una lámina ondulada en cada lado del mismo y las cuatro láminas tienen cada una al menos tres ondulaciones y pueden tener las ondulaciones en posición transversal o con un ángulo intermedio entre la posición transversal y la posición alineada respecto al eje axial del tubo de humo. El presente recuperador de calor se puede construir sin el tubular cuadrado o rectangular y puede contener solo dos láminas onduladas; también puede contener tres, cinco, seis, u ocho láminas onduladas, las cuales se fijan entre si con puntos de soldadura; también puede estar constituido por un tubo cilindrico, el cual tiene las ondulaciones formadas en la pared del mismo.
Abstract:
This invention relates to an airconditioning system which uses a plurality of absorption chiller-cells (10-1, 10-2...), for refrigerating an antifreeze fluid for fan-coil units of an airconditioning system being circulated in each cell structure in a consecutive order for lowering the temperature of an antifreeze fluid gradually. More particularly, it relates to an absorption chiller-cell system having a plurality of evaporators (17-1, 17-2...) by employing a multi-refrigerant circulation circuits in an absorption cycle to produce sufficient refrigerant for the airconditioning system and it enables to make the physical size of the system smaller for replacing the conventional electric airconditioning unit for home applications. In further aspects, this invention provides an airconditioning system which comprising a plurality of absorption chiller-cells to produce various kinds of capacity of the system by combining more or less number of chiller-cell, and it provides also an easier and more simple solution for maintenance by replacing chiller-cell.
Abstract:
A heat exchanger (1) is provided for use in extracorporeal blood oxygenation systems. The heat exchanger (1) includes a housing (2), a core (8) disposed within the housing (2), and a baffle (10) disposed within the core (8). A blood passage chamber (9) is defined by the outer surface of the core (8) and the inner surface of the housing (2). Blood flows from the blood inlet (3), through the blood passage chamber (9), to the blood outlet (4). Heat exchange fluids flow from a fluid inlet (5), into an inlet chamber (11), around the baffle (10), into an outlet chamber (12), and to a fluid outlet (6).