HOMOGENEOUS COMBUSTION SYSTEM

TR202415518BActive Publication Date: 2026-06-22VIESSMANN MANISA ISI TEKNOLOJILERI SAN & TIC LTD STI
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Patent Information

Authority / Receiving Office
TR · TR
Patent Type
Patents
Current Assignee / Owner
VIESSMANN MANISA ISI TEKNOLOJILERI SAN & TIC LTD STI
Filing Date
2024-11-08
Publication Date
2026-06-22

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Abstract

The invention relates to the homogeneous combustion system (A) which ensures that gas and air are mixed homogeneously from the fan (30) and directed to the burner (20) during the operation of the combi boiler (10).
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Description

1 TARIFF HOMOGENEOUS COMBUSTION SYSTEM TECHNICAL AREA 5 The invention involves the homogeneous mixing of gas and air by the fan during the operation of the combi boiler. It is related to the homogeneous combustion system that directs the combustion to the burner. PREVIOUS TECHNIQUE Combi boilers use natural gas or LPG (liquefied petroleum gas) to heat spaces and These are heating devices that heat domestic water using the same appliance. Combi boilers have 10... Combustion inside the boiler to provide space heating and domestic hot water heating. In the chamber, combustion of gas and oxygen-rich air takes place. In combi boilers... Energy is the amount of heat energy released in relation to the amount of fuel consumed in a combustion process. This is important in order to ensure savings. The combustion process in the combustion chamber To achieve this, the first step is to ignite the air and gas in the burner. 15 In the known state of the technology, air and gas are transferred to the aforementioned burner via a closed channel. This is provided by an element in its structure called the burner fan cover. To ensure efficient combustion, the air and gas must be mixed homogeneously. Mixing is required. In the known state of the art, the transfer of air and gas to the burner. The homogeneous mixing of air and gas is ensured by the burner fan cover. 20 It is unable to provide this. The inability to ensure a homogeneous mixture of air and gas prevents combustion. the amount of harmful gases (carbon monoxide, nitrogen oxides) produced during the process This leads to an increase in homogeneous combustion processes, causing damage to the environment. Another advantage of not being able to achieve this is the efficient combustion process. Because this cannot be achieved, less energy is obtained by using more fuel, and this 25 This situation is causing fuel costs to increase. In conclusion, all the problems mentioned above necessitate innovation in the relevant field. It has brought it to this state. 2 THE PURPOSE OF THE INVENTION The present invention aims to eliminate the aforementioned problems and provide technical solutions in the relevant field. It is introduced with the aim of creating an innovation. 5 The main purpose of the invention is to ensure a homogeneous distribution of gas and air from the fan during the operation of the combi boiler. a homogeneous combustion system structure that ensures the mixture is directed to the burner to reveal. Another aim of the invention is to ensure homogeneous mixing of air and gas, thereby preventing combustion. reducing the amount of harmful gases (carbon monoxide, nitrogen oxides) produced during the process. provides. Another aim of the invention is to produce heat with higher efficiency thanks to a homogeneous air-gas mixture. By enabling this production, the boiler can produce more energy while consuming less fuel. to provide. Another aim of the invention is to produce more energy using less fuel through efficient combustion. By enabling this, the user saves energy and reduces fuel costs. The goal is to bring it down. A BRIEF DESCRIPTION OF THE INVENTION All the purposes mentioned above and those that will emerge from the detailed explanation below. The present invention, intended to be realized, is a homogeneous combustion system. 20 A preferred configuration of the invention involves the fan releasing gas during the operation of the combi boiler. Homogeneous combustion ensures that air is mixed homogeneously and directed towards the burner. This is the system. Thus, the air and gas conveyed from the aforementioned fan to the burner are distributed homogeneously. the aforementioned air and gas move in a spiral manner to ensure the mixture. the helical line providing, the primary surface on which the aforementioned helical line is positioned, 25 to ensure the preservation of the aforementioned helical line perpendicular to the aforementioned primary surface. The secondary and tertiary surfaces that are connected to the primary surface in such a way as to form an angle, as mentioned to prevent dust accumulation on the helical track on the aforementioned primary surface a quaternary surface connected to the secondary surface in a parallel manner with the tertiary surface It is characterized by its inclusion. 30 3 In the preferred configuration of the invention, to retain the mentioned burner (20) and to prevent dust accumulation on them, primary, secondary, tertiary and interconnected It contains a quaternary surface. 5 The scope of protection for the invention is specified in the claims, and this is absolutely concise and detailed. The explanation cannot be limited to what is given for illustrative purposes. A technically expert person... the person, without deviating from the main theme of the invention, in light of what has been described above, similar It is clear that these structures can emerge. BRIEF DESCRIPTION OF THE FIGURES 10 Figure 1 shows the homogeneous combustion system and the appearance of the boiler. Figure 2 shows the top view of the homogenous combustion system. Figure 3 shows the homogeneous combustion system and the helical line within the homogeneous combustion system. A top view is provided. Figure 4 shows a perspective view of a homogenous combustion system. 15 Figure 5 shows a cross-section of the helical line from a side view. The drawings are not intended to limit the scope of protection defined in the claims. and to interpret the scope defined in those claims, the present invention referring to these in isolation without resorting to the technical explanation in the statement. should not be included. The drawings in question clarify and define the invention. 20 It aims to... 4 EXPLANATION OF REFERENCE NUMBERS IN THE FIGURES A. Homogeneous combustion system 10. Combi 5 20. Burner 21. Primary surface 22. Secondary surface 23. Tertiary surface 24. Quaternary surface 10 30. Helical line 40. Fan DETAILED DESCRIPTION OF THE INVENTION In this detailed description, the subject of the invention, the homogeneous combustion system (A), is only a more detailed explanation of the subject. To ensure a good understanding, it is explained with examples that do not create any limiting effects. 15 During the operation of the combi boiler (10) which is the subject of the invention, the gas and air are homogeneously distributed from the fan (30). with a homogeneous combustion system (A) which ensures that the mixture is directed to the burner (20). It is related. The invention is presented as having the following elements:  The air and gas transmitted from the mentioned fan (40) to the burner (20) are homogeneous. to ensure the aforementioned air and gas are mixed in a spiral manner helical line (30) that enables it to travel in this way,  The primary surface (21) where the aforementioned helical line (30) is located,  To ensure the preservation of the aforementioned helical line (30) the primary surface (21) will form a right angle with the mentioned primary surface (25) Secondary and tertiary surfaces (22,23) connected to the surface (21),  To prevent dust accumulation on the aforementioned helical track (30) the secondary surface will be parallel to the mentioned primary surface (21) quaternary surface connected to the surface (22) and the tertiary surface (23) (24), The elements constituting the invention and their functions within the invention are given above. 5 The relationship and working principles of the elements mentioned are explained below. It has been given. In Figures 1 and 2, the combi boiler (10) is shown, the burner (20) connected to the combi boiler (10) is shown, and the helical line (30) is shown. and fan (40) are available. Combi boiler (10) natural gas or LPG (liquefied petroleum gas) 10 that perform both space heating and domestic hot water heating with the same device. They are heating devices. The combi boiler (10) is used to produce hot water and provide heating. (10) Combustion process in the combustion chamber (not shown in the figures) This happens. The gas in question is natural gas or LPG, while air refers to oxygen (O2). It is air rich in gas. The fan (40) directs the gas and air to the burner (20). It ensures that the air and gas conveyed by the helical line (30) fan (40) are homogeneous. It ensures that the air and gas are mixed and transferred to the burner (20). The mentioned burner (20) mixes the air and gas. It is the part where it ignites and starts to burn. The helical line (30) mentioned in Figures 3, 4 and 5 There is a primary surface (21) on which the aforementioned helical line (30) is located. to ensure its protection, it will form a right angle with the aforementioned primary surface (21) In the figure, there are secondary and tertiary surfaces (22,23) connected to the primary surface (21). 20 The aforementioned secondary surface (22) and tertiary surface (23) will be parallel to each other. It connects to the primary surface (21). Dust accumulation on the aforementioned helical line (30) Secondary surface (22) which will be parallel to the primary surface (21) mentioned in order to prevent it There is a quaternary surface (24) that is connected to the tertiary surface (23). primary surface (21) secondary surface (22) tertiary surface (23) and quaternary surface (24) 25 a channel structure that will encircle the helical line (30) by connecting them to each other This ensures the preservation of the helical line (30), protecting it from external factors. This prevents it from being affected and prevents dust and dirt from accumulating on it. From the gas pipe inside the combi boiler (10) (not shown in the figures) to the gas fan (40) reaches. At the same time, the fan (40) reaches 30 from the air inlet of the combi boiler which is connected to the outside environment. (Not shown in the figures.) It draws in oxygen-rich air. Fan (40) gas and It directs the air to the burner (20). Gas and air from the mentioned fan (40) The transmission to the burner (20) is provided by a helical line (30) with a helical structure. The aforementioned air and gas are supplied to the helical line (30) by the fan (40). Helical line (30) Air and gas entering the said helical path (30) spirally inside it 35 6 It ensures the homogeneous mixing of air and gas. In the aforementioned helical line (30) The homogeneously mixed air and gas are transferred to the burner (20). The transferred air and gas are transferred to the burner (20). It is the part where the gas ignites and starts to burn. In the mentioned burner (20) ignites and 5 The combustion chamber is the section where the combustion process continues for the air and gas that has begun to burn. (Not shown in the figures.) The combustion chamber mentioned contains the air ignited by the burner and This allows the gas mixture to continue burning, producing heat energy. In the aforementioned combustion chamber, air and gas are mixed homogeneously and then burned. The heat energy produced is transferred to the heat exchanger. The mentioned combustion chamber is the burner (20) and the heat exchanger 10 (Not shown in the figures.) It is located between them. Homogeneous combustion is ensured by the homogeneous mixing of air and gas, thus producing more High-efficiency heat production and the boiler generating more energy while consuming less fuel. This is achieved by obtaining more energy while consuming less fuel. Fuel costs are reduced, resulting in energy savings for the user. At the same time, air and gas are 15% cheaper. Thanks to its homogeneous mixing, the harmful gases produced during combustion are... This helps reduce the amount of carbon monoxide and nitrogen oxides. The scope of protection of the invention is specified in the claims attached hereto, and these details are strictly adhered to. The explanation cannot be limited to those given for illustrative purposes. Because a technically skilled person... The person, without deviating from the main theme of the invention, can create similar 20 based on the above-mentioned points. It is clear that these structures can emerge.

Claims

7 REQUESTS 1. The invention relates to the homogeneous distribution of gas and air from the fan (40) during operation of the combi boiler (10). homogeneous combustion system that ensures the mixing and directing to the burner (20) 5 (A) and its characteristic is;  The air and gas transmitted from the mentioned fan (40) to the burner (20) are homogeneous. to ensure the aforementioned air and gas are mixed in a spiral manner helical line (30) that enables it to travel in this way,  The primary surface (21) where the aforementioned helical line (30) is located, 10  To ensure the preservation of the aforementioned helical line (30) to form a right angle with the mentioned primary surface (21) secondary and interconnected structures arranged in parallel tertiary surface (22,23),  To prevent dust accumulation on the aforementioned helical track (30) 15 the secondary surface will be parallel to the mentioned primary surface (21) quaternary surface connected to the surface (22) and the tertiary surface (23) (24), It is characterized by its inclusion.