A BOILER WITH A REPLACEABLE BODY AND COIL.

TR202417096A2Pending Publication Date: 2026-06-22TANPERA TEKNOLOJI VE ENDUSTRIYEL URUNLER SANAYI VE TICARET ANONIM SIRKETI
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Patent Information

Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
TANPERA TEKNOLOJI VE ENDUSTRIYEL URUNLER SANAYI VE TICARET ANONIM SIRKETI
Filing Date
2024-11-28
Publication Date
2026-06-22
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Abstract

The invention relates to a boiler (A) with a replaceable casing and serpentine coil, which has a casing that can be removed from the tank via a sleeve to allow the temperature of the fluid coming from the second inlet to be changed in order to carry out fluid movement through a fourth part and cavity with a first inlet and connected inlet hole and a first outlet and connected outlet hole, thus preventing losses of cost, labor, time and space due to corrosion and deformation.
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Description

1 TARIFF A BOILER WITH A REPLACEABLE BODY AND COIL. TECHNICAL FIELD The invention relates to the first inlet and the inlet hole connected to it, and the first outlet and the outlet hole connected to it. through the fourth part and the gap it possesses, the heat of the fluid coming from the second inlet is 5 It relates to a boiler with a replaceable casing and serpentine coil, which allows for its replacement. PREVIOUS TECHNIQUE A boiler stores hot water obtained from various heat sources and distributes it as needed. A boiler is a mechanical plumbing element used to save time. A boiler is also used for heating. They are also defined as devices used to prepare water. Auxiliary heat 10 It heats the hot water from the source in a very short time. From various sources using the heat energy it receives to provide hot water for both economical and hygienic use. It provides. Boilers fall under the category of heat exchangers. Boilers provide hot water to buildings, support heating systems, and are used in industrial settings. It is used for various purposes in applications such as heating water. Villas, apartments, tourism and 15 accommodation facilities, hospitals, gyms, factories, construction sites, residential complexes, detached houses, and It is used in all areas where hot water is needed, such as boiler rooms. The increasing population in our country and in the world is creating a significant demand for energy. This For these reasons, the demand for heat exchangers used in heating systems is increasing. It is increasing day by day. 20 Boilers designed for heating systems feature a shell-type replaceable coil. Serpentine coils (pipes) are used to facilitate heat transfer and increase system efficiency. It is used for. The serpentine boiler is fixed inside the tank and cannot be replaced. This configuration... This shortens the tank's lifespan, prevents maintenance in case of a malfunction, and the tank's 25 This leads to the complete replacement. This results in extra costs, time, and effort. This leads to losses of power. 2 Serpentine boilers are configured with steel and / or copper materials. Due to the type of material used, corrosion and deformation can occur in serpentine coils over time. It is coming. Due to its immutable nature, a new purchase is required, and this situation causes costs. This leads to losses of time and labor. In serpentine boilers, the welding fluid is single-pass. 5 with single-pass configuration. Due to this, the heat transfer rate is low. This results in savings in energy, time, and comfort. This leads to losses. In serpentine boilers, the velocity of the fluid passing through the serpentines is low. This velocity needs to be increased. However, when the dimensions of the serpentine coil are increased, the configuration becomes heavy and takes up too much space. It covers an area. This situation necessitates that the installation area be made extra durable. 10 This leads to the construction being excessively large. This results in increased costs, wasted space, and wasted time. This leads to situations such as loss. The temperature of the welding fluid in serpentine structures is uniform across the entire surface of the serpentine. It is not distributed evenly. This leads to uneven temperature distribution and energy losses. This is the reason. 15 Considering the problems mentioned above, in heating systems In the serpentine boiler configuration used, energy, labor, and time costs are reduced. Serpentine boiler with ergonomic configuration that prevents loss of comfort. Configuration is required. In conclusion, all the problems mentioned above necessitate an innovation in the relevant field. It has brought it to this state. 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. The aim of the invention is to provide serpentine tubes with an ergonomic and interchangeable configuration. 25 This situation involves deformation occurring in one or more pipes. This makes it easy to address corrosion or maintenance needs of the tank. By eliminating the cost of complete renovation, energy, time, labor and renovation costs are saved. It offers an advantage in terms of costs. 3 The purpose of the invention is to make the serpentine tube material a water and usage resistant material. By selecting the geometry, corrosion and deformation can be prevented, and extra energy can be obtained. Time and labor costs have been eliminated. The invention aims to provide multiple passages thanks to the serpentine tube configuration. This configuration prevents energy, time, and comfort losses. It has been passed. The aim of the invention is to create a serpentine tube configuration from small diameter pipes. Maximum heat transfer has been achieved, preventing losses. A BRIEF DESCRIPTION OF THE INVENTION All the objectives mentioned above and those that will emerge from the detailed explanation below are 10 The present invention is a boiler with a replaceable casing and serpentine coil. The invention relates to the first inlet and the inlet hole connected to it, and the first outlet and the outlet hole connected to it. possessing a fourth part and a gap to achieve bidirectional fluid motion. In order to allow the temperature of the fluid coming from the second inlet to be changed, the shell In its detachable configuration via a sleeve, corrosion and deformation 15 preventing resulting costs, labor, time and land losses It is a boiler with a replaceable casing and serpentine coil, providing the following feature: coming from the first inlet. stainless steel, positioned to provide heat transfer via a hot fluid. Thanks to its structure made of this material, it does not corrode or deform. At least one pipe located inside the aforementioned body with the specified configuration, 20 To ensure that the fluid coming from the aforementioned first inlet is conveyed to the pipe in the direction it will go. The first part is configured as follows, with the number of pipes mentioned in the aforementioned first part. to be configured according to the geometry and positioning of the pipe In the configuration, the first hole is the slot configured in the first part mentioned, The first part mentioned is configured to provide a screw connection to the tank. 25 At least one second hole is made, connecting the aforementioned body to the tank via the first part. The second part, configured to provide a screw connection, is the aforementioned second part. configured in the space within the part, between the inlet and outlet fluids. The third piece, which connects to the second piece mentioned to serve as a wall, is connected to the first one. The third hole has the same number of holes as the second hole, which allows the part to be screwed to the sleeve. 30 In the threaded configuration of the aforementioned second part and the mentioned sleeve, the fluid... 4 spiral configured to prevent leakage and potential losses. The sealing element with winding capability, on the other side of the body of the mentioned pipe. the fifth, configured to ensure parallelism by being linked by The part is to be configured according to the number of pipes mentioned in the fifth part mentioned. The fourth hole is in a configuration suitable for the geometry and positioning of the pipe, 5 at least one leg that allows the mentioned tank to be configured on the ground, mentioned configured to provide a screw connection between the hull and the tank via a sleeve. The fifth hole that was made is to be used for connecting the aforementioned hull to the tank. The screw passing through the second hole and the third hole, the screw in question 10 Not damaging the second part during connection and tightening without gaps Washers corresponding to the number of screws configured for making the aforementioned body and tank screws. It includes nuts that connect to the screws, in a number equal to the number of screws, in order to provide its configuration. To be characterized, the hot fluid entering from the first inlet passes through multiple pipes. Thanks to its movement inside, the mains water entering from the second inlet first passes through the body. 15 It is configured to provide protection and can be replaced in case of corrosion and deformation. Thanks to this feature, extra costs, labor, and time losses are prevented. This relates to boilers with replaceable casings and serpentine coils. BRIEF DESCRIPTION OF THE FIGURES Figure 1 shows a complete perspective view of a boiler with a replaceable casing and serpentine coil. 20 It has been given. Figure 2 shows a perspective view of the serpentine coil of a boiler with a replaceable casing and serpentine coil. Its appearance is given. EXPLANATION OF REFERENCE NUMBERS IN THE FIGURES A. A boiler with a replaceable casing and serpentine coil 25 1. Serpentine 11. Pipe 12. Part one 121. First hole Nest 122 123. Second hole 13. Second part 131. Third part 132. Third hole 5 14. Sealing element 15. Fourth part 16. First Introduction 17. First exit 18. Fifth part 10 181. Fourth hole 2. Tank 21. Second entry 22nd Leg 23. Sleeve 15 231. The fifth hole 3. Screw 4. Stamp 5. Nut DETAILED DESCRIPTION OF THE INVENTION 20 This detailed description refers to a boiler with a replaceable casing and serpentine coil, which is the subject of the invention. (A) will not create any limiting effect, merely to facilitate a better understanding of the subject. This is explained with examples. 6 The invention consists of the first inlet (16) and the inlet hole (G) to which it is connected, and the first outlet (17) and the hole to which it is connected. bidirectional fluid through the fourth part (15) with outlet hole (C) and gap (B) to carry out the movement, the heat of the fluid coming from the second inlet (21) To ensure its replacement, the serpentine (1) is connected to the tank (2) via the sleeve (23) In its demountable configuration, costs due to corrosion and deformation, labor, 5 a modifiable system that prevents losses of time and living space. It is related to the shell and serpentine boiler (A). The invention is a boiler (A) with a replaceable casing and serpentine coil, as shown in Figure 1. serpentine (1), tank (2), second inlet (21), foot (22), sleeve (23) and fifth hole (231) It consists of 10 elements. The invention is a boiler (A) with a replaceable casing and serpentine coil, as shown in Figure 2. serpentine (1), pipe (11), first part (12), first hole (121), socket (122), second hole (123), second part (13), third part (131), third hole (132), sealing element (14), fourth part (15), first entrance (16), first exit (17), fifth part (18), fourth hole (181), screw (3), washer (4), nut (5), spacer (B), inlet hole (G), outlet hole 15 It consists of (C) elements. The invention is a boiler with a replaceable serpentine coil (A), and the tank (2) as shown in Figure 1. The sleeve (23) and the sleeve are welded together. The welded connection to one surface of the sleeve (23) There is a second inlet (21). The second inlet (21) allows the mains water to enter the body. In this way, the mains water passes through the body (1) and is stored in the tank (2). Tank (2) 20 It is connected to the ground by means of a removable foot (22). The tank (2) and the foot (22) are connected to each other. It is connected by a source. The fifth hole (231) is for screw connection of the serpentine (1). is configured in the sleeve (23). The invention is a boiler (A) with a replaceable casing and serpentine coil, as shown in Figure 2. There are several tubes (11) inside the serpentine (1). This tube has 25 (11) The material is made of stainless steel. This pipe (11) is inserted into the inlet hole. Hot water is supplied from the first inlet (16) connected to source (G). Inlet to pipe (11) The water that makes the third part located in the space (B) which is configured in the second part (13) (131) enters only the pipes (11) in a specific area. These pipes (11) also the method of passing into the first hole (121) configured in the first part (12) 30 It is connected to the third part (131) which is in the slot (122) configured in the first part (12). It is connected by a passing method. The third part (131) acts as a wall for the entrance and exit. 7 It separates the two lines. In short, the incoming fluid only enters the third part. It can switch to the pipe line (11) up to (131). Located in serpentine (1). pipes (11), fourth configured in serpentine (1) configuration and geometry connected to each other by means of the interlocking method with the fifth part (18) which has a hole (181). Parallelism is thus ensured. 5 In summary, as can be seen in all figures; the source at a certain flow rate from the first inlet (16), Hot fluid enters. The third part (14) is connected to the socket (122) in the first part (12). The flow direction is determined by means of and the fluid is directed into the pipes (11). Here, any leaks that may occur between the second part (13) and the first part (12) A sealing element (14) is used to prevent leakage. Alignment of pipes (11) and 10 to protect their structures, the fourth hole (181) in the fifth part (18) and the first part (12) provides through the first hole (121). After the source fluid starts to enter the pipe (11), the mains water inlet is from the second inlet. (21) is done. Here, water passes through the sleeve (23) as it starts to fill the tank (2). During this transfer, the water comes into contact with the surface of the serpentine tubes (11) and heat transfer occurs. The process takes place. In this way, the water heats up as it starts to fill the tank (2). Result The differences in temperature values ​​of the water in the tank (2) were eliminated. The water temperature inside the tank (2) is an average value at every point. has. The welding fluid inside the serpentine tubes (11) makes two passes. The first pass is 20 minutes from the inlet. (16) is doing. After completing this round, the second pass is made with serpentine U tubes (11). It does so. From the outlet (17) it discharges the source fluid. Pipes Because it is made of stainless steel, it successfully fits inside the serpentine (1). It works. In case of corrosion or damage, the assembly is disassembled and the pipe (11) is replaced. It is done. 25

Claims

8 REQUESTS 1. The invention consists of the first inlet (16) and the inlet hole (G) to which it is connected, and the first outlet (17) and through the gap (B) with the fourth part (15) which has the outlet hole (C) to which it is connected. to perform bidirectional fluid motion coming from the second inlet (21) To enable the change of the fluid temperature, the serpentine (1) sleeve (23) 5 via the tank (2) in its demountable configuration, corrosion and deformation preventing resulting costs, labor, time and land losses It is a boiler (A) with a replaceable casing and serpentine coil, and its feature is;  To provide heat transfer via the hot fluid coming from the first inlet (16). Positioned on it, thanks to its stainless steel structure, 10 the mentioned configuration is resistant to corrosion and deformation. at least one pipe (11) located inside the serpentine (1),  The pipe in the direction the fluid coming from the first inlet (16) will go (11) The first part (12) configured to ensure transmission,  In the first part mentioned (12), the pipe (11) is configured in 15 to be made suitable for the geometry and positioning of the pipe (11). first hole in configuration (121),  The socket (122) configured in the first part (12) mentioned above,  The first part mentioned (12) is connected to the tank (2) by screws. at least one second hole configured to provide (123), 20  The mentioned serpentine (1) is screwed to the tank (2) via the first part (12). second part (13) configured to enable connection  In the space within the second part mentioned (13) (B) is configured It acts as a wall / separator between the inlet and outlet fluids. The third part connected to it (131), 25  The second part (13) and the first part (12) are screwed to the sleeve (23). The second hole (123) which provides the connection, the third hole (132),  The second part (12) and the sleeve (23) mentioned are screwed together. in this configuration, fluid leakage, potential losses and leaks Spiral winding feature configured to prevent leakage 30 element (14),  By connecting the mentioned pipe (11) to the other side of the serpentine (1) The fifth part (18) is configured to ensure parallelism, 9  In the fifth part mentioned (18), the pipe mentioned (11) is configured to be made suitable for the geometry and positioning of the pipe (11). fourth hole in configuration (181),  The minimum required to ensure that the mentioned tank (2) remains stable on the ground. one foot (22), 5  Through the mentioned sleeve (23) the serpentine (1) and the tank (2) second hole (123) configured to provide connection and the fifth hole in its position (231),  To be used in connecting the mentioned serpentine (1) with the tank (2) in the second hole (123) number, 10 passing through the second hole (123) and the third hole (132). screw (4),  The screw (4) mentioned may damage the second part (12) during connection. to ensure that it does not give way and tightens without any gaps, to the screw (4) linked stamp (5),  To ensure the screw configuration of the mentioned serpentine (1) and tank (2) 15 nut (5) connected to each screw (4) It is characterized by its inclusion. 25