A chimney exhaust system that prevents flue gas buildup by ensuring circulation in the chimney.
Patent Information
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- HALIT TOSUN
- Filing Date
- 2026-06-06
- Publication Date
- 2026-06-22
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Abstract
Description
1 TAR I FNAME Chimney exhaust system that prevents flue gas buildup by ensuring circulation in the chimney. The mechanism The invention relates to the combustion of fuels in fireplaces, ovens, stoves, boilers or steam boilers. waste gas and particulate mixtures (flue gases) resulting from industrial processes mounted on the chimney or pipe from which it exits, In a chimney discharge system consisting of a body, suction pipes, cap and cap connection plates, As cool air from the suction pipes travels through the suction pipe and the casing, friction increases. heating due to According to the laws of physics, when air is heated, its molecules expand by moving further apart. Its rise due to an increase in volume and a consequent decrease in density, High-density cold air entering the suction pipes mixes with low-density warm air. As a result of pushing, 15 Preparing the environment for the flue gas to exit the fuselage easily and ensuring the flue gas inside the fuselage preventing accumulation Also, when the wind is blowing strongly and from the opposite direction; Water coming from the sides of the hat and trying to enter the body, partially warming up inside the body, 20 air with decreasing density, Pushed by colder air, which has a higher density, coming from the suction pipes by returning the flue gases to the atmosphere / external environment, thus preventing flue gas poisoning. It is related. State of the art: Air leakage into the chimney from the outside due to wind can cause combustion gases to enter the chimney. It can accumulate in the environment, leading to poisoning and increasing the risk of fire. This situation can cause loss of life. and can result in fires that may cause property damage. Air leakage, indoor air This can lead to a deterioration in quality. 30 To ensure the chimney draws well and doesn't backfire, regular chimney cleaning and roof cleaning are essential. measures such as raising the chimney level and installing a suitable chimney cap / cap is being received. 2 However, strong winds / southerly winds blowing from different directions can allow air to enter the chimney. It can cause blockages and poisoning. Carbon monoxide poisoning is particularly common. The purpose of the invention is; 5 The chimney exhaust system, which has suction pipes in its body and a cap on top, discharges gases. by being mounted on the chimney or pipe from which it exits, Ambient air from the suction pipes passes through the suction pipes and the shell. heating by creating friction, The heated air continues to pass through the intake pipes, high-density cold air 10 by being pushed outwards and creating a circulation environment inside the chimney, Preventing flue gas accumulation, Even with the hat, dust from the atmosphere can enter the fuselage and partially penetrate it. The warming air is pushed by the high-density cold air coming through the intake pipes, 15 being released back into the atmosphere, thus preventing gas poisoning (especially carbon monoxide) The aim is to prevent poisonings. The characteristic of the invention is; 1- The chimney exhaust system consists of a body, suction pipes and a cap, 20 The suction pipes are mounted into the holes drilled in the body. The cap is mounted to the body using cap mounting brackets. 2- Cold air is drawn from the outside environment through the suction pipes and circulated inside the suction pipe and casing. by heating it and reducing its density, 3- High-density cold air coming from the suction pipes mixes with low-density hot air 25 by receiving and sending it to the outside environment, 4- In strong winds, air that enters the fuselage and is partially warmed, comes from the intake pipes. being sent back to the outside environment / atmosphere by high-density cold air, Ensuring circulation within the chimney and evacuating the gases coming from the chimney, It is the process of sending air that tries to enter the fuselage from the outside environment back to the outside environment. 30 5- The chimney exhaust system must be made of metal, or preferably plastic, cement, or ceramic. It is made of wood. 3 6- The chimney exhaust system body should be cylindrical in shape, or preferably square or rectangular. They are manufactured in different geometric shapes. The following figures have been prepared to help better understand this invention: Figure 1 - Front view of the disassembled parts forming the chimney exhaust system, 5 Figure 2 - Perspective view of the chimney exhaust system. Figure 3 - Bottom perspective view of the chimney exhaust system. Figure 4 - Top perspective view of the chimney exhaust system. Figure 5 - Cross-sectional view of the chimney exhaust system. Figure 6 - Front view of the chimney exhaust system in disassembled position with the chimney, 10 Figure 7 - Perspective view of the chimney exhaust system in its disassembled state with the chimney. Figure 8 - Perspective view of the chimney exhaust system mounted to the chimney. Figure 9 - Cross-sectional view of the chimney and chimney exhaust system in the assembled position. Figure 10 - Front perspective view of air circulation in the chimney and chimney exhaust system. Figure 11 - Horizontal front view of the chimney and chimney exhaust system, 15 Figure 12 - Horizontal perspective of circulation from the chimney and chimney exhaust system. appearance, Figure 13 - Perspective of a chimney exhaust system with a conical geometric shape. appearance. To better understand this invention, each part in the prepared figures is examined separately. Each numbered part is described as follows: 1- Chimney exhaust system, 1.1-Body, 1.1.1-Suction pipe connection hole, 25 1.1.2-Chimney inlet chamber, 1.2-Suction pipe, 1.3-Hat, 1.4-Hat connector, 2-Chimney. 30 Burning fuels in fireplaces, ovens, stoves, boilers or steam boilers, or industrial settings. the exit of waste gas and particle mixtures (flue gases) resulting from processes mounted on the chimney (2) or pipe, 4 By preventing strong winds from the outside (especially southerly winds) from entering the chimney. chimney that releases flue gases into the atmosphere and provides circulation within the chimney (2) discharge assembly (1); body (1.1), suction pipe (1.2), cap (1.3) and cap connection It consists of (1.4) lamellae. Front view of the disassembled parts forming the chimney exhaust system (1) Figure 1 5 It has been given. Suction pipe connection holes (1.1.1) and chimney inlet chamber (1.1.2) on the body (1.1) It has a reservoir. The cap (1.3) is mounted to the body (1.1) with cap mounting plates (1.4). The perspective view of the chimney discharge system (1) is shown in Figure 2. The bottom perspective view of the chimney discharge system (1) is shown in Figure 3. The top perspective view of the chimney discharge system (1) is shown in Figure 4. The cross-sectional view of the chimney discharge system (1) is given in Figure 5. Suction pipes (1.2) are mounted through the suction pipe connection holes (1.1.1) on the shell (1) 15 It has been done. The casing (1) is connected to the chimney (2) or the pipe through which the gas exits from the chimney inlet chamber (1.1.2) It is assembled. The front view of the chimney discharge system (1) in disassembled position with the chimney (2) is shown in Figure 6, 20 The perspective view of the chimney discharge system (1) in its disassembled position with the chimney (2) is shown in Figure 7. Perspective view of the chimney discharge system (1) mounted with the chimney (2) is shown in Figure 8. The cross-sectional view of the chimney (2) and chimney discharge system (1) in the assembled position is shown in Figure 9. It has been given. To prevent strong winds (especially southwesterly winds) from outside from entering the chimney (2). by preventing flue gases from being released into the atmosphere and air inside the chimney (2) ensuring circulation: Front perspective view of air circulation in the chimney (2) and chimney discharge system (1) It has also been given. 30 The desired number of suction pipes (1.2) are mounted on the body (1.1) at different angles. The wind The suction pipe(s) (1.2) in the direction it blows take the air from outside into it. Friction in the suction tube (1.2) and the housing (1.1) as it moves upwards / outwards Because of this, the fresh air gets warmer. According to the laws of physics, when air is heated, its molecules expand by moving further apart. It rises due to the increase in its volume and the consequent decrease in its density, and the body (1.1) it advances by entering inside. By advancing, it relieves the exit of the chimney (2), and the air coming from the chimney (2) The environment is prepared for the easy exit of the flue gas from the body (2). Also, when the wind blows strongly and from the opposite direction, cool air comes from the sides of the hat (1.3), The air inside the housing (1.1) comes into contact with the heated air, which becomes lighter and moves forward. Suction Cold air, which is denser and comes from the tubes (1.2), inside the shell (1.1) It pushes warm / warm air upwards / outwards. In Figure 10, the air coming from the suction pipes (1.2) is represented by straight arrows, and the air coming from the sides of the cap (1.3) is represented by straight arrows. The air being expelled outwards again is indicated by lined arrows. The pipe (2) and flue discharge assembly (1) can be in a vertical or horizontal position. In Figure 10, it is in a vertical position. This is shown in the horizontal position in Figure 11 and Figure 12. The front view of the chimney (2) and chimney discharge system (1) in horizontal position is shown in Figure 11. Circulation from the perspective of the flue (2) and flue discharge assembly (1) in the horizontal position Its appearance is given in Figure 12. In Figure 12, the air coming from the suction pipes (1.2) is drawn from the outside environment to the shell (1.1) with straight arrows. The air trying to enter and being pushed out is shown with dashed arrows. 20 The chimney discharge system (1) body (1.1) is compatible with the geometric structure of the chimney (2). It has a cylindrical appearance. Preferably, it can be in different geometric shapes such as square, rectangular, or conical. it could be. Perspective view of the chimney discharge system (1) with a conical geometric shape (1.1) 25 This is given as an example in Figure 13. The chimney exhaust system (1) is made of metal. Preferably, ceramic, concrete or plastic. It can be done.
Claims
REQUESTS 1. Burning fuels in fireplaces, ovens, stoves, boilers or steam boilers, or industrial applications. the exit of waste gas and particle mixtures (flue gases) resulting from processes mounted on the chimney (2), 5 Consisting of the body (1.1), suction pipes (1.2), cap (1.3) and cap connection plates (1.4) The chimney discharge system is (1) and its feature is; Cool air from the suction pipes (1.2) passes through the suction pipe (1.2) and the shell (1.1) heating up due to friction as it moves, According to the laws of physics, when air is heated, its molecules expand by moving further apart. Its rise due to an increase in volume and a consequent decrease in density, High-density cold air entering the suction pipes (1.2) mixes with low-density warm air. as a result of pushing, Preparing the environment for the easy exit of flue gas from the shell (1.1) and inside the shell (1.1) Preventing the accumulation of flue gas, 15 Also, when the wind is blowing strongly and from the opposite direction; Coming from the sides of the cap (1.3) and trying to enter the body (1.1) and inside the body (1.1) air that has partially warmed and become less dense, Pushed by the cold air, which has a higher density, coming from the suction pipes (1.2) 20 by returning the flue gases to the atmosphere / external environment, thus preventing flue gas poisoning. It is the characterization of the situation.
2. The chimney exhaust system mentioned in Request 1 is (1), and its feature is; the chimney exhaust system (1) 25 consisting of body (1.1), suction pipes (1.2), cap (1.3) and cap connection plates (1.4) It is the fact that.
3. The chimney discharge device (1) mentioned in Request 2 is characterized by its suction on the body (1.1). It contains suction pipe connection holes (1.1.1) into which the pipes (1.2) enter.
4. The chimney discharge device (1) mentioned in Request 2 or 3 is; its feature is; the bottom of the body (1.1) The part contains the chimney inlet chamber (1.1.2) which encloses the chimney (2). 1 5. The chimney exhaust system mentioned in Request 1 is (1), and its feature is; the chimney exhaust system (1) It should be made of metal, but preferably ceramic, concrete, or plastic.
6. The chimney exhaust system mentioned in Request 1 is (1), and its feature is; chimney exhaust system (1) its body (1.1) has a cylindrical appearance, preferably in different shapes such as square, rectangular or conical. The reason is that they are in geometric shapes. 15 25 2