AT31722B - Method for utilizing the heat of a fuel air flow in hot gas steam boilers connected to hot gas machines, especially turbines. - Google Patents
Method for utilizing the heat of a fuel air flow in hot gas steam boilers connected to hot gas machines, especially turbines.Info
- Publication number
- AT31722B AT31722B AT31722DA AT31722B AT 31722 B AT31722 B AT 31722B AT 31722D A AT31722D A AT 31722DA AT 31722 B AT31722 B AT 31722B
- Authority
- AT
- Austria
- Prior art keywords
- hot gas
- utilizing
- heat
- air flow
- fuel air
- Prior art date
Links
Landscapes
- Engine Equipment That Uses Special Cycles (AREA)
Description
<Desc/Clms Page number 1>
EMI1.1
EMI1.2
<Desc/Clms Page number 2>
EMI2.1
<Desc/Clms Page number 3>
EMI3.1
könnte) zurückgewonnen.
Es ist zweckmässig, möglichst hohe Kompressionsdrücke in Anwendung zu bringen, um ein grosses Temperaturgefälle in der Gasmaschine zu haben. Da nun aber beim Kom-
EMI3.2
zwar die Luftpumpenarbeit wieder gewonnen werden kann, praktisch jedoch ein kleiner Verlust zu erwarten ist.
Der Erfinder legt nun bei vorliegender Erfindung Wert darauf, dass diese Erfindung nur dort in Frage kommt, wo es sich um Maschinen handelt, welche so gebaut sind, dass sie allermindestens die geleistete Luftkompressionsarbeit wieder zurückgeben. Es ist also ein besonderes Kennzeichen der vorliegenden Erfindung, dass die Luftkompressionsarbeit zum mindesten im Gasprozess zurückgewonnen wird, und sind zu diesem Zweck brauchbar
1. die Dampfturbinen als Gasturbinen oder Dampfgasturbinen angewandt, welche infolge
EMI3.3
haben, während das Turbineninnoro nur von fast expandierten kälteren Gasen getroffen wird ;
2. kämen in Frage solche zylindermaschinen, die nach Art der Gasmotoren in allen Einzelheiten so gekühlt sind, dass sie Überhitzungen aushalten, die einen Arbeitsgewinn gegenüberdergeleistetenLuftkompressionsarbeitgestatten.
Naturgemäss dürfte in allen Fällen die Gasturbine die zweckmässigste, einfachste und betriebsichorste Anordnung solcher Anlagen darstellen. Es mag jedoch ausdrücklich betont worden, dass auch auf Zylindermascllinen, soweit sich die eben charakterisierten Merkmale ergeben, verwendet werden können.
Die Erfindung gestattet nun verschiedene Anwendungsarten. Beispielsweise kann. wie die Zeichnung zeigt, eine gesonderte Gasturbine und eine gesonderte Dampfturbine An- wendung finden, welche beide auf eine Dynamomaschine 20 (Fig. 1) arbeiten. Die, An-
EMI3.4
<Desc/Clms Page number 4>
EMI4.1
<Desc / Clms Page number 1>
EMI1.1
EMI1.2
<Desc / Clms Page number 2>
EMI2.1
<Desc / Clms Page number 3>
EMI3.1
could) recovered.
It is advisable to use compression pressures that are as high as possible in order to have a large temperature gradient in the gas engine. But since the Com-
EMI3.2
Although the air pump work can be regained, in practice a small loss can be expected.
With the present invention, the inventor attaches importance to the fact that this invention only comes into question where it is a question of machines which are built in such a way that they at least return the air compression work performed. It is therefore a special characteristic of the present invention that the work of air compression is at least recovered in the gas process, and can be used for this purpose
1. the steam turbines applied as gas turbines or steam gas turbines, which as a result
EMI3.3
have while the Turbineninnoro is only hit by almost expanded colder gases;
2. Cylinder machines come into consideration which, like gas engines, are cooled in every detail so that they can withstand overheating, which allows a gain in work compared to the air compression work performed.
Naturally, in all cases, the gas turbine should represent the most expedient, simplest and most operationally safe arrangement of such systems. However, it may be expressly emphasized that cylinder Mascllines can also be used to the extent that the features just characterized can be used.
The invention now allows various types of application. For example, can. As the drawing shows, a separate gas turbine and a separate steam turbine are used, both of which work on a dynamo machine 20 (FIG. 1). The, to
EMI3.4
<Desc / Clms Page number 4>
EMI4.1
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| AT31722T | 1904-09-28 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| AT31722B true AT31722B (en) | 1908-02-10 |
Family
ID=3546440
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| AT31722D AT31722B (en) | 1904-09-28 | 1904-09-28 | Method for utilizing the heat of a fuel air flow in hot gas steam boilers connected to hot gas machines, especially turbines. |
Country Status (1)
| Country | Link |
|---|---|
| AT (1) | AT31722B (en) |
-
1904
- 1904-09-28 AT AT31722D patent/AT31722B/en active
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| DE2847028C2 (en) | Internal combustion engine system | |
| DE1476903A1 (en) | Process for the mixed gas and steam operation of a gas turbine system as well as system for practicing the process | |
| DE2929995A1 (en) | METHOD FOR CONVERTING LOW HEATING ENERGY TO MECHANICAL ENERGY IN A TURBINE FOR FURTHER USE AND SYSTEM FOR IMPLEMENTING THE METHOD | |
| DE821733C (en) | Steam and gas turbine plant | |
| AT31722B (en) | Method for utilizing the heat of a fuel air flow in hot gas steam boilers connected to hot gas machines, especially turbines. | |
| DE755525C (en) | Steam power plant with the release of steam for heating and cooking purposes | |
| DE2953840A1 (en) | Steam-and-gas turbine plant | |
| DE19535318A1 (en) | Method and arrangement for preheating the feed water of a steam generator in power plant processes | |
| DE632897C (en) | Process for generating mechanical work with the help of the expansion of fluids | |
| AT44035B (en) | Working method for engines that are operated with highly superheated steam. | |
| DE1601654B2 (en) | DEVICE FOR PROTECTING AT LEAST TWO-WELL CLOSED GAS TURBINE SYSTEM | |
| DE1401469C (en) | Steam power plant | |
| DE1050609B (en) | A thermal power plant comprising a gas turbine and a steam turbine plant | |
| DE522718C (en) | Deflagration combustion power turbine, on whose impeller, which is acted upon by the combustion gases, at the same time, steam generated from the turbine waste heat is conducted | |
| DE3903570A1 (en) | METHOD FOR GENERATING MECHANICAL ENERGY IN THE NH (ARROW DOWN) 3 (ARROW DOWN) OXIDATION IN ENT (ARROW DOWN) 3 (ARROW DOWN) PROCESS | |
| AT102478B (en) | Evaporative cooling device for internal combustion engines. | |
| DE615159C (en) | Process for the operation of gas power engines and thus thermally coupled steam power plants | |
| DE420008C (en) | Steam turbine system with multi-stage preheating of the feed water by extraction steam | |
| DE454034C (en) | Steam power plant for portable systems | |
| DE952446C (en) | Steam power plant with once-through steam generator | |
| DE2460561A1 (en) | THERMAL POWER PLANT WITH STEAM CIRCUIT | |
| AT242444B (en) | Thermal power plant | |
| DE900939C (en) | Steam engine system with reheating | |
| DE538832C (en) | Steam power plant, especially for vehicles | |
| DE304025C (en) |