Mobile house equipped with lightweight pipe hypocaust
Patent Information
- Application Number
- KR1020250208210
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2025-12-23
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2045-12-23
Smart Images

Figure 112025146094421-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a mobile home equipped with lightweight pipe heating devices, wherein the heating path of the floor surface, which is the heating area of the mobile home, is implemented as a straight structure using multiple pipes, and the heat flowing into the heating area simultaneously flows along a short straight path, thereby minimizing the temperature difference along each straight path forming the floor surface of the mobile home, which is the heating area, and reducing the installation weight. Background Technology
[0003] Generally, mobile homes, which are camping vehicles, are constructed with a single, hollow box-shaped structure that provides an interior space for lodging and cooking. They are classified into campervans, which integrate living facilities such as kitchens and bedrooms into trucks or buses, and trailers, which are towed by a vehicle for movement.
[0004] In other words, mobile homes are classified into campervans and trailers depending on whether or not they have their own power source.
[0005] Meanwhile, trailers are designed to be detachable from vehicles, allowing them to be parked in places like parking lots when not in use, and to be connected to a vehicle for camping using the vehicle's power; as a result, they have recently been gaining popularity.
[0006] These trailers are equipped with living facilities such as a kitchen, bedroom, and bathroom, as well as heating to provide a comfortable living space outdoors in low temperatures during the winter.
[0007] FIG. 13 is a schematic diagram showing the state in which a regenerative heat exchanger of a conventional heater unit for a camping car and caravan is installed inside a caravan, and FIG. 14 is a diagram showing a regenerative heat exchanger of a conventional heater unit for a camping car and caravan.
[0008] As described above, the regenerative heat exchanger of a conventional heater unit (10) for a camping car and caravan comprises: a heater unit (10) that provides hot air to the interior space of a caravan (C); an exhaust pipe (20) that extends from the heater unit (10) and through which exhaust gas discharged from the heater unit (10) passes; a housing (30) that is coupled to one side of the outer surface of the exhaust pipe (20), has a sealed heating space (31) formed in the area between the inner surface and the outer surface of the exhaust pipe (20), has an inlet (32) formed on one side for raw water to flow in, and has an outlet (33) formed on the other side connected to a hot water supply source; and a plurality of heat dissipation fins (40) formed on the outer surface of the exhaust pipe (20), spaced apart at a predetermined interval; It is composed of a circulation pipe (50) in which one side is arranged to surround the heat dissipation wing (40) on the outside of the heat dissipation wing (40) in the heating space (31), and both ends are connected to the floor surface of the caravan (C) which is the heating area (N), and heating water circulates inside to heat the heating area (N).
[0009] The regenerative heat exchanger of a conventional heater unit for camping cars and caravans, configured in this way, has the advantage of providing hot water and heating water by utilizing the waste heat of the exhaust gas discharged from the heater unit.
[0010] However, despite these advantages, the regenerative heat exchanger of a conventional camping car and caravan heater unit has a problem in that the circulating pipe (50) embedded in the floor surface of the caravan (C), which is the heating area (N), is implemented in a zigzag structure, and thus the temperature of the heating water flowing into the circulating pipe (50) decreases as it flows through the zigzag-structured circulating pipe (50), causing a temperature difference in each area on the floor surface of the caravan (C), which is the heating area (N). Prior art literature
[0012] (Patent Document 0001) KR 10-2021-0082854 A The problem to be solved
[0013] The present invention aims to solve the problems of the prior art described above. The objective of the present invention is to provide a mobile home equipped with lightweight pipe heating elements that reduce installation weight, wherein the heating path of the floor surface, which is the heating area of the mobile home, is implemented as a straight structure using multiple pipes, thereby allowing heat flowing into the heating area to simultaneously flow along short straight paths, thereby minimizing the temperature difference along each straight path forming the floor surface of the mobile home, which is the heating area. means of solving the problem
[0015] A mobile home equipped with the lightweight pipe heating elements of the present invention, based on the technical concept for achieving the present invention, comprises: a chassis frame portion having wheels on its lower part; a body portion installed on the chassis frame portion, having a living space formed inside; a combustion chamber with both sides open, providing radiant heat, which is a heat source generated through heating in a heating space formed inside, to one of the open sides; a connecting pipe body for a flue, having one side communicating with the open side of the combustion chamber, which guides the radiant heat flowing out from the combustion chamber to flow out toward the other side without backflow; and a main body for heating elements, which is stacked between the chassis frame portion and the body portion, and heats the living space of the body portion through heat flowing in a straight line from the combustion chamber toward at least two pipe bodies; wherein the main body for heating elements comprises: a housing composed of a bottom plate and a plurality of side plates forming a side wall along the edge of the bottom plate; and a floor stone covering the open top of the housing, composed of a loess layer and a plaster layer stacked on the loess layer; It includes a plurality of horizontal support frames that are fixed in an intersecting manner at predetermined intervals to support the lower side of the floor slab; and a plurality of vertical support frames, the lower side of which is supported on the upper surface of the lower plate, and the upper side of which is fixedly connected to the lower side of the plurality of horizontal support frames.
[0016] A mobile home equipped with the lightweight pipe heating elements of the present invention further includes a blocking plate, the lower surface of which contacts the horizontal support frame and the upper surface of which contacts the lower surface of the floor slab, thereby blocking debris falling from the floor slab from accumulating in the housing.
[0017] The main body for the heating elements further comprises: at least one basic straight pipe body, one side of which is in communication with the other side of the connecting pipe body for the flue, through which incoming radiant heat flows in a straight shape; a pipe body for the ash pit, which is in communication with the other side of the at least one basic straight pipe body through at least one communication hole formed through the side, through which incoming radiant heat is discharged toward the chimney; a side connecting pipe body, one side of which is in communication with a communication hole formed through the side of the connecting pipe body for the flue through a connecting fixing member; and at least one additional straight pipe body, one side of which is in communication with the side of the side connecting pipe body and the other side of which is in communication with the communication hole of the pipe body for the ash pit, through which incoming radiant heat flows in a straight shape.
[0018] The above-mentioned communication holes are multiple, and the upper side of the inner surface of the pipe body for the ash pit, through which the communication holes are formed, includes an upper rail section equipped with a movement guide; and the lower side of the inner surface of the pipe body for the ash pit, through which the communication holes are formed, includes a lower rail section equipped with a movement guide; and the movable house to which the lightweight pipe heating devices of the present invention are applied further comprises: an upper movement guide on the upper side and a lower movement guide on the lower side arranged to slide along the upper rail section and the lower rail section, and a connecting plate connecting the upper movement guide and the lower movement guide, wherein a heat outflow hole is formed through each of the connecting plates provided, and a flow control section formed through each at a position corresponding to the communication holes; and the area of each heat outflow hole formed through the connecting plate of the flow control section increases as it moves further away from the side closer to the connecting pipe body for the ash pit.
[0019] The above-mentioned communication holes are multiple, and the upper side of the inner surface of the pipe body for the ash pit, through which the communication holes are formed, includes an upper rail section equipped with a moving guide; and the lower side of the inner surface of the pipe body for the ash pit, through which the communication holes are formed, includes a lower rail section equipped with a moving guide; and the movable house equipped with the pipe heating devices of the present invention further includes a flow rate control section that slides along the upper rail section and the lower rail section and controls the amount of radiant heat flowing out from each communication hole.
[0020] The above flow control unit comprises: an upper moving member that slides along the upper rail; a lower moving member that slides along the lower rail; a connecting plate that connects the upper moving member and the lower moving member, wherein each plate has a heat outflow hole of the same size formed through it, each plate having a hole formed through it at a position corresponding to the communication hole, and a connecting bolt connected around each heat outflow hole; and a plurality of flow control plates provided in a number greater than or equal to the number of heat outflow holes, wherein a fastening hole is formed through it to allow the fastening bolt to pass through and be exposed, and a heat control outflow hole communicating with the heat outflow hole is formed through it near the center; and the heat control outflow holes formed through the plurality of flow control plates are provided by classifying them by size. Effects of the invention
[0022] The present invention implements a heating path on the floor surface, which is the heating area of a mobile home, as a straight structure using multiple pipes, thereby allowing heat flowing into the heating area to simultaneously flow along short straight paths, which minimizes the temperature difference along each straight path forming the floor surface of the mobile home, the heating area, and produces the effect of reducing the installation weight. Brief explanation of the drawing
[0024] FIG. 1 is an exploded perspective view showing a mobile home equipped with lightweight pipe heating elements of the present invention. FIG. 2 is an exploded perspective view showing a housing forming the main body for the heating elements among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 3 is a side cross-sectional view showing a housing forming the main body for the heating elements among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 4 is a schematic drawing showing each component installed inside and outside the main body for the heating elements among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 5 is a schematic diagram showing the side cross-section of the main body for the heating elements among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 6 is a side cross-sectional view showing a connecting pipe for a flue, which is a component of a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 7 is a perspective view showing a pipe body for a burial chamber among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 8 is a side view showing a pipe body for a burial chamber among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 9 is a front view showing a pipe body for a burial chamber among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 10 is a cross-sectional view showing a flow control unit among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 11 is a perspective view showing a flow control unit among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 12 is a perspective view showing another embodiment of a flow control unit among the components forming a mobile house to which the lightweight pipe heating elements of the present invention are applied. FIG. 13 is a schematic diagram showing the state in which a regenerative heat exchanger of a conventional heater unit for camping cars and caravans is installed inside a caravan. FIG. 14 is a drawing showing a regenerative heat exchanger for a conventional heater unit for camping cars and caravans. Specific details for implementing the invention
[0025] Before describing in detail the configuration and operation of the embodiments of the present invention with reference to the attached drawings, the present invention may be subject to various modifications and may take various forms. The following embodiments are mentioned merely to describe the present invention in detail and are not intended to limit the present invention to a specific disclosed form, and should be understood to include all modifications, equivalents, and substitutions that fall within the spirit and scope of the present invention.
[0026] Furthermore, in each drawing, the size or thickness of the components may be exaggerated or simplified for the sake of ease of understanding; however, this should not be interpreted as limiting the scope of protection of the present invention. Wherever possible, the same reference numerals are used to denote components performing the same function. In addition, the terms used in this invention are used merely to describe the following embodiments and are not intended to limit the invention; singular expressions include plural expressions unless the context clearly indicates otherwise.
[0027] As illustrated in FIGS. 1 to 11, the heating path of the floor surface, which is the heating area of the mobile home, is implemented as a straight structure using multiple pipes, so that the heat flowing into the heating area flows simultaneously along a short straight path, thereby minimizing the temperature difference between each straight path forming the floor surface of the mobile home, which is the heating area, and reducing the installation weight, the mobile home to which the lightweight pipe heating elements of the present invention are applied is largely composed of a chassis frame part (100) and a body part (200), and a main body (500) for heating elements is stacked between the chassis frame part (100) and the body part (200).
[0028] First, the chassis frame part (100) is provided for the installation of the body part (200) described later, and is equipped with wheels (110) at the bottom and a towing connection part (120) protruding forward so that it can be towed by a towing vehicle.
[0029] The above body part (200) is a member that is combined with the sash frame part (100) and has a wall and a ceiling with an open bottom so that a living space (210) for lodging and / or cooking is formed inside.
[0030] Here, the living space (210) of the body part (200) includes various areas such as a bedroom area for sleeping, a kitchen area for cooking food, a living area for resting such as on a sofa, and a toilet area for relieving waste, and these areas are selected and provided according to the size of the body part (200) or the user's requirements.
[0031] Additionally, on one side of the body part (200), an opening and closing door may be provided so that a fire chamber (300) can be connected to a main body (500) for heating devices described later.
[0032] The body part (200) that performs these functions can be made of metal such as steel or aluminum, fiber reinforced plastic (FRP), composite materials, plywood, or a combination thereof in multiple layers.
[0033] Additionally, the body part (200) may be provided with an opening / closing door on one other side so that a chimney (602) can be detachably connected to a pipe (600) for a burial chamber, which will be described later.
[0034] The main body (500) for the above heating elements is a member that is stacked between the chassis frame part (100) and the body part (200) and heats the living space (210) of the body part (200) through heat flowing through at least two straight pipes.
[0035] The main body (500) for the heating unit that performs these functions is provided with a fire chamber (300), a connecting pipe (400) for the firebox, a basic straight pipe (510), and a pipe (600) for the fire pit in a housing (510) in which an installation space (501) is formed inside and the exterior is in the shape of a rectangular parallelepiped.
[0036] First, the housing (510) forming the exterior of the main body (500) for the heating elements is vertically fixedly connected to the bottom plate (511) and four side plates (512) to form side walls along the edges of the bottom plate (511).
[0037] And the upper part of the open housing (510) is provided with a floor slab (513) installed.
[0038] These floor stones (513) may consist of a loess layer (513a) and a plaster layer (513b) that is laminated on the loess layer (513a), and the loess layer (513a) and the plaster layer (513b) may be made of loess. The main reason for using loess as the material for the loess layer (513a) and the plaster layer (513b) is that the loess itself contains a large amount of microorganisms beneficial to the human body and the environment, which suppresses the growth of mold and other pathogens in the house, thereby providing a pleasant living environment and preventing the transmission of various germs, thus creating a healthy living space. Furthermore, at 40~50℃, it emits a large amount of far-infrared rays, which can activate the movement of peripheral capillaries in the human body through the radiant heat of far-infrared rays, and furthermore, provides the advantage of enabling a healthy life.
[0039] Here, in order to support a floor slab (513) installed on the upper part of an open housing (510), a plurality of horizontal support frames (520) that support the lower side of the floor slab (513) are fixed in an intersecting manner at predetermined intervals, and a plurality of vertical support frames (530) whose lower side is supported on the upper surface of the lower plate (511) and whose upper side is fixedly connected to the lower side of the plurality of horizontal support frames (520) are provided inside the housing (510).
[0040] In addition, a blocking plate (540) is provided, in which the lower surface contacts the horizontal support frame (520) and the upper surface contacts the lower surface of the floor slab (513), thereby blocking the accumulation of yellow clay powder, which is debris falling from the floor slab (513), inside the housing (510).
[0041] Here, the horizontal support frame (520) and the vertical support frame (530) may be made of square pipes, and the bottom plate (511) or the side plate (512) may be made of a metal material such as iron or aluminum alloy, and the fixing of each frame and each plate may be done using various fixing means that allow for detachable fixing, such as bolt fastening.
[0042] The above combustion chamber (300) is a component that has both sides open and provides radiant heat, which is a heat source generated through heating in a heating space formed inside, to one side that is open. Here, the combustion chamber (300) can be installed in a buried type, that is, embedded in the main body (500) for heating devices located in the installation space (501), or in an exposed type, exposed to the outside of the main body (500) for heating devices.
[0043] A firebox side door (310) is installed on the other side of the firebox (300) that performs this function, so that it can be opened to put fuel into the heating space and closed to heat.
[0044] Here, the heating source may be oil such as kerosene or diesel oil, wood including pellets, electricity, gas, or a combination thereof.
[0045] Additionally, a first opening / closing door may be provided at a position on the body part (200) corresponding to the firebox-side door (310) of the firebox (300) so that the firebox-side door (310) of the firebox (300) is exposed only when performing the heating function.
[0046] The above-mentioned connecting pipe (400) is a member formed with a cross-sectional area smaller than that of the combustion chamber (300) so that one side is connected to the open side of the combustion chamber (300), thereby preventing backflow of radiant heat flowing out from the combustion chamber (300) and inducing it to flow out toward the other side.
[0047] As mentioned above, the main body (500) for the heating unit is stacked between the chassis frame part (100) and the body part (200), and an installation space (501) is formed inside to heat the living space (210) of the body part (200) through heat flowing through at least two straight pipes.
[0048] In the installation space (501) of the main body (500) for these heating elements, a basic straight pipe body (550) and a pipe body (600) for the ash pit are provided as components for heating the living space (210) of the body part (200).
[0049] The above basic straight pipe body (550) has one side connected to the other side of the connecting pipe body (400) for the flue and the other side connected to the pipe body (600) for the ash pit described later, thereby allowing the incoming radiant heat to flow through the pipe body formed in a straight shape, and by allowing the incoming radiant heat to flow simultaneously along a short path in parallel, it performs the function of minimizing the temperature difference in each area forming the floor surface of the mobile house, which is the heating area.
[0050] And the material of the basic straight tube (550) can be a metal such as carbon steel tube, which prevents smoke contained in the radiant heat from leaking and has excellent thermal conductivity.
[0051] Because of this, condensation may occur, so to minimize this, a ceramic coating treatment can be performed on the surface of the basic straight pipe body (550) to reduce the occurrence of condensation.
[0052] The number of basic straight pipes (550) that perform these functions may be provided in quantities ranging from one to two depending on the size of the room where they are installed.
[0053] In addition, the basic straight pipe (550) communicating between the pipe body (400) for the flue and the pipe body (600) for the ash pit is installed at a predetermined angle of inclination so that it slopes upward from the pipe body (400) for the flue to the pipe body (600) for the ash pit, thereby preventing backflow of smoke and facilitating the flow of radiant heat.
[0054] Meanwhile, since the heating area where the floor heating is provided is large, it is difficult to provide uniform heating efficiency to the edges of the heating area using only the basic straight pipe body (550).
[0055] Accordingly, so that the difference in heating temperature between the edge of the heating area and the center is minimized, a side connecting pipe (420) may be provided, which is connected through a connecting hole (401) formed through the side of the connecting pipe (400) for the flue through a connecting member (900), and is connected so as to be located near the edge of the room where the connecting pipe (400) for the flue is located.
[0056] And, depending on the size of the heating area, one to five additional straight pipe bodies (560) can be provided on the left and right sides, with one side connected to the side of the side connecting pipe body (420) and the other side connected to the connecting hole (601) of the pipe body (600) for the ash pit, through which the incoming radiant heat flows through a pipe body formed in a straight shape, and the other side of the side connecting pipe body (420) can be connected to one side of the last additional straight pipe body (560).
[0057] In particular, since the user often resides in a trailer among mobile homes for a long period, the side connecting pipe (420) can be provided by connecting several additional straight pipes (560) to the left and right of the connecting pipe (400) for the heating area, which includes the entire area of the trailer, namely the living room, bathroom, kitchen, and bedroom.
[0058] In addition, in the case where heating is not required for some of the heating areas of the entire trailer area, the heating temperature can be controlled using the flow control unit (700) described later. As shown in FIG. 6, a basic straight pipe body (550) and an additional straight pipe body (560) can be provided arranged perpendicular to the longitudinal direction of the body part (200).
[0059] And the material of the additional straight tube (560) can be a metal such as carbon steel tube, which prevents smoke contained in the radiant heat from leaking and has excellent thermal conductivity.
[0060] In addition, an additional straight pipe (560) connected between the pipe body (400) for the flue and the pipe body (600) for the ash pit is installed at a predetermined angle of inclination so that it slopes upward from the pipe body (400) for the flue to the pipe body (600) for the ash pit, thereby preventing backflow of smoke and facilitating the flow of radiant heat.
[0061] Meanwhile, if the shape of the heating area where the floor heating is provided is rectangular, the side connecting pipe (420) is formed in a straight shape, and if the shape of the heating area where the floor heating is provided is circular or elliptical, the side connecting pipe (420) is provided in a curved shape, thereby enabling maximum heating heat to be delivered to the vicinity of the edge of the room where the connecting pipe (400) for the floor heating is located.
[0062] In addition, moisture may be generated in the connecting pipe (400) for the radiating heat source due to moisture or condensation.
[0063] Accordingly, a connection outlet (410) is provided that is connected to the lower side of the connection body (400) for the flue and discharges moisture contained in the radiant heat or moisture generated due to condensation inside the connection body (400), and the lower part may be provided to be connected by penetrating the main body (500) for the heating elements.
[0064] At this time, to minimize the inflow of external cold air through the connecting observation outlet (410), a support net (411) is connected to the end of the connecting observation outlet (410), and crushed stone (412) or artificial soil can be filled and provided inside the connecting observation outlet (410).
[0065] In addition, moisture may be generated due to condensation in the installation space (501) of the main body (500) for heating floors where the basic straight pipe (550) and the additional straight pipe (560) are located, and moisture may flow into the installation space through the floor slabs from the residential space (210) during the summer season, such as the rainy season.
[0066] Accordingly, a connecting passage (413) is formed that communicates with the connecting passage discharge port (410) through the lower wall portion (510) of the main body (500) for heating floors forming the installation space (501), thereby guiding the discharge of moisture containing moisture flowing into the installation space (501) from the residential space (210) through the floor slabs and the main body (500) for heating floors, or moisture generated due to condensation in the basic straight pipe body (550).
[0067] The pipe body (600) for the ash pit is connected to the other side of at least one basic straight pipe body (550) through at least one connecting hole (601) formed through the side, and is a member that discharges incoming radiant heat toward the chimney (602). Here, the pipe body (600) for the ash pit and the chimney (602) are provided to be detachable so that the chimney (602) can be connected to the pipe body (600) for the ash pit only when performing the heating function.
[0068] To this end, a door may be provided on the body part (200) so that one side of the pipe body (600) to which the chimney (602) is connected can be exposed to the outside.
[0069] Additionally, the chimney (602) may be fixedly connected to the pipe body (600) for the ash pit, and the fixedly connected chimney (602) may be embedded in the body part (200) and provided so that only the upper part of the chimney (602) is exposed to the outside.
[0070] Meanwhile, moisture may also be generated in the pipe body (600) for the ash pit due to moisture or condensation contained in the radiant heat source.
[0071] Accordingly, a drain outlet (610) is provided that is connected to the lower side of the pipe body (600) for the ash pit and discharges moisture or condensation generated inside the pipe body (600) for the ash pit, and the lower part may be connected by penetrating the main body (500) for the heating elements.
[0072] At this time, to minimize the inflow of external cold air through the ash pit side outlet (610), a support net (611) is connected to the end of the ash pit side outlet (610), and crushed stone (612) or artificial soil can be filled and provided inside the ash pit side outlet (610).
[0073] These ash pit side discharge ports (610) can be installed on one side and the other side of the ash pit pipe (600), respectively, and by forming the lower surface of the ash pit pipe (600) to slope downward from both edges toward the center, the generated moisture can be collected toward the center of the lower surface of the ash pit pipe (600) so that it can be discharged more quickly through the ash pit side discharge ports (610).
[0074] In addition, moisture may be generated due to condensation in the installation space (501) of the main body (500) for heating floors where the basic straight pipe (550) and the additional straight pipe (560) are located, and moisture may flow into the installation space through the floor slabs from the residential space (210) during the summer season, such as the rainy season.
[0075] Accordingly, a flue passage on the ash pit side is formed through the lower surface of the other side of the main body (500) for heating floors forming the installation space (501) and is connected to the ash pit side discharge port (610), thereby guiding the discharge of moisture containing moisture flowing into the installation space (501) from the residential space (210) through the floor slab and the main body (500) for heating floors, or moisture generated due to condensation in the basic straight pipe body (550) and the additional straight pipe body (560).
[0076] In addition, when wood is used as a heat source, the ash generated during combustion may be contained in the radiant heat and flow, and when this ash combines with moisture, it becomes sticky tar and can act as a factor causing fire.
[0077] To minimize this, the pipe body (600) for the burial chamber is provided with a pair of plate supports (640) that are installed on each side of the inner surface of the pipe body (600) and are installed lower than the lower rail section (630).
[0078] And, a ash collection plate (800) is provided that spans across a pair of plate supports (640) and has permeable holes (810) formed through it, so that ash contained in the radiant heat flowing out from the flow control unit (700) accumulates, and moisture contained in the radiant heat flowing out from the flow control unit (700) or moisture generated due to condensation is allowed to permeate through the permeable holes (810).
[0079] Through this, the ash collection plate (800) is collected from the ash container (600) at regular intervals, and the tar accumulated on the upper surface of the ash collection plate (800) is removed and used.
[0080] Meanwhile, when the size of the heating area providing the gudeul heating is large and multiple basic straight pipes (550) and multiple additional straight pipes (560) are installed, the temperature of the radiant heat decreases as it moves from the basic straight pipe (550) toward the additional straight pipe (560), so the difference in heating temperature may inevitably increase depending on the location of the heating area.
[0081] In order to minimize this, in a mobile house equipped with pipe heating elements of the present invention, the size of the connecting holes (601) formed in a plurality of pipes (600) for the ash pit is adjusted to become larger as it goes from the connected basic straight pipe (550) toward the connected additional straight pipe (560), thereby increasing the amount of radiant heat flowing from the basic straight pipe (550) toward the additional straight pipe (560), and thus providing the advantage of minimizing the difference in heating temperature that occurs depending on the location of the room.
[0082] Accordingly, in a mobile house equipped with pipe heating elements of the present invention, an upper rail section (620) equipped with a movement guide (621) is installed on the upper side of the inner surface of a pipe body (600) for a burial chamber, through which a chimney hole (601) is formed, and a lower rail section (630) equipped with a movement guide (631) is installed on the lower side of the inner surface of a pipe body (600) for a burial chamber, through which a chimney hole (601) is formed.
[0083] And an upper moving platform (710) is arranged on the upper side and a lower moving platform (720) is arranged on the lower side so as to slide along the upper rail section (620) and the lower rail section (630), and a connecting plate (730) is provided to connect the upper moving platform (710) and the lower moving platform (720), and a heat outflow hole (731) is formed through each of the connecting plate (730) provided, and a flow rate control section (700) is provided that is formed through each of the connecting plates (730) of the flow rate control section (700), and the area of each heat outflow hole (731) formed through the connecting plate (730) of the flow rate control section (700) is made larger as it moves away from the connecting pipe body (400) for the overflow, thereby providing that more radiant heat flows as it moves from the basic straight pipe body (550) toward the additional straight pipe body (560).
[0084] In addition, the upper rail section (620) may be provided with a support member (622) that is bent downward from the movement guide member (621) of the upper rail section (620) so that the upper moving member (710) slides without detaching, and the lower rail section (630) may also be provided with a support member (632) that is bent upward from the movement guide member (631) of the lower rail section (630) so that the lower moving member (720) slides without detaching.
[0085] In addition, a stopper (631a) that fixes the sliding flow control unit (700) so that it does not move may be installed on the lower rail part (630).
[0086] At this time, the stopper (631a) is formed to be inclined upward in the sliding direction, thereby allowing the flow control unit (700) to ride up when sliding.
[0087] In addition, wheels (721) can be installed on the front and rear sides of the lower moving platform (720) of the flow control unit (700) to allow for smooth movement.
[0088] In addition, a reinforcing square pipe (733) may be installed on the connecting plate (730) forming the flow control unit (700) to minimize deformation caused by radiant heat.
[0089] Meanwhile, as another embodiment of the flow control unit (700), with reference mainly to FIG. 12, the user may want to heat the heating area where the basic straight pipe (550) is located hotter or heat the heating area where the additional straight pipe (560) is located less hot, according to their preference.
[0090] Therefore, it is desirable to guide users so that they can adjust the heating temperature according to their location in the room.
[0091] To this end, a flow rate control unit (700) can be provided to control the amount of radiant heat flowing out through each connecting hole (601).
[0092] Thus, the detailed configuration of the provided flow control unit (700) comprises an upper moving member (710) that slides along the upper rail section (620), a lower moving member (720) that slides along the lower rail section (630), a connecting plate (730) in which a fastening bolt (734) is connected to the upper moving member (710) and the lower moving member (720), wherein each hot water discharge hole (732) having the same size is formed through, and each is formed through at a position corresponding to the communication hole (601), and a connecting plate (730) in which a fastening bolt (734) is connected around each hot water discharge hole (732), and a fastening hole (761) that allows the fastening bolt (734) to pass through and be exposed is formed through, and a hot water control discharge hole (762) that communicates with the hot water discharge hole (732) is formed through near the center, and through the fastening hole (761) It consists of a plurality of flow control plates (760) each having a fastening nut (735) that is thread-fastened to a fastening bolt (734) that is exposed through it.
[0093] At this time, heat control outlet holes (762) formed through a plurality of flow control plates (760) are provided by classifying them by size, that is, the size of the heat control outlet holes (762) is classified into large, medium, and small. Additionally, two or more flow control plates (760) having heat control outlet holes (762) of the same size are provided so that the user can directly select the size of the heat control outlet holes (762) of the flow control plates (760) and control the heating temperature for each detailed area forming the heating area.
[0094] Although the present invention has been illustrated and described in relation to specific embodiments in the foregoing description, it will be readily apparent to those skilled in the art that various modifications and changes are possible without departing from the spirit and scope of the invention as defined by the claims. Explanation of the symbols
[0096] 100: Chassis frame 110: Wheels 120 : Towing connection part 200 : Body part 210 : Living space 300 : Art studio 310 : Firebox-side door 400 : Connecting pipe for the flue 410 : Connecting observation outlet 411, 611 : Support network 412,612 : Crushed stone 413 : Connecting observation chimney 420 : Side connecting pipe 500 : Main body for underfloor heating 511 : Bottom plate 512 : Side plate 513 : Gudeuljang 513a : Loess layer 513b: Plaster layer 520: Horizontal support frame 530 : Vertical support frame 540 : Block plate 550 : Additional type straight pipe 600 : Pipe for ash pit 601 : Chimney hole 610 : Outlet on the ash pit side 620 : Upper rail section 621, 631 : Movable platform 622, 632 : Support 630 : Lower rail section 640 : Cardboard support 700 : Flow control unit 710 : Upper movable platform 720 : Lower movable platform 721 : Wheel 730 : Connecting plate 731, 732 : Smoke outlet 733 : Reinforcement square pipe 734 : Fastening bolt 735 : Fastening nut 740 : Front panel 741 : Handle 750 : Rear plate 760 : Flow control plate 761: Fastening hole 762: Heat control outlet hole 800 : Recycling board 810 : Permeable ball
Claims
Claim 1 A chassis frame part (100) having wheels (110) at the bottom; a body part (200) installed on the chassis frame part (100) and having a living space (210) formed inside; a combustion chamber (300) having both sides open and providing radiant heat, which is a heat source generated through heating in a heating space formed inside, to one side that is open; and a connecting pipe (400) having one side connected to the one side that is open of the combustion chamber (300), so that the radiant heat flowing out from the combustion chamber (300) does not flow backward and is guided to flow out toward the other side. A main body (500) for a heating floor that is stacked between the chassis frame part (100) and the body part (200) and heats the living space (210) of the body part (200) through heat flowing in a straight line from the fire chamber (300) toward at least two pipe bodies; wherein the main body (500) for a heating floor comprises: a housing (510) composed of a bottom plate (511) and a plurality of side plates (512) forming side walls along the edge of the bottom plate (511); a floor stone (513) that covers the open upper part of the housing (510) and is composed of a loess layer (513a) and a plaster layer (513b) stacked on the loess layer (513a); and a plurality of horizontal support frames (520) that are fixed to intersect at predetermined intervals and support the lower side of the floor stone (513); A mobile house equipped with pipe heating elements, characterized by further including: a plurality of vertical support frames (530) whose lower side is supported on the upper surface of the lower plate (511) and whose upper side is fixedly connected to the lower side of the plurality of horizontal support frames (520); and a blocking plate (540) whose lower surface contacts the horizontal support frames (520) and whose upper surface contacts the lower surface of the floor slab (513), thereby blocking debris falling from the floor slab (513) from accumulating in the housing (510). Claim 2 delete Claim 3 In claim 1, the main body (500) for the heating elements further comprises: at least one basic straight pipe body (550) in which incoming radiant heat flows through a pipe body formed in a straight shape, with one side communicating with the other side of the connecting pipe body (400) for the flue; and a pipe body (600) for the ash pit in which incoming radiant heat is discharged toward the chimney, with at least one communication hole (601) formed through the side and communicating with the other side of the at least one basic straight pipe body (550); and a side connecting pipe body (420) in which one side communicates through a connecting hole (401) formed through the side of the connecting pipe body (400) for the flue via a connecting fixing member (900). A mobile house equipped with pipe heating devices, characterized by further including at least one additional straight pipe body (560) in which incoming radiant heat flows through a pipe body formed in a straight shape, wherein one side is connected to the side of the side connecting pipe body (420) and the other side is connected to the connecting hole (601) of the pipe body (600) for the ash pit. Claim 4 In paragraph 3, the above communication holes (601) are multiple, and the upper side of the inner surface of the pipe body (600) for the ash pit, through which the communication holes (601) are formed, is provided with an upper rail section (620) having a movement guide (621); and the lower side of the inner surface of the pipe body (600) for the ash pit, through which the communication holes (601) are formed, is provided with a lower rail section (630) having a movement guide (631); and an upper movement member (710) is arranged on the upper side and a lower movement member (720) is arranged on the lower side so as to slide along the upper rail section (620) and the lower rail section (630), and a connecting plate (730) is provided to connect the upper movement member (710) and the lower movement member (720), and a heat outflow hole (731) is provided in each of the connecting plates (730). A mobile house equipped with pipe heating elements, further comprising a flow control section (700) formed through, each formed through at a corresponding position of the above-mentioned communication hole (601); wherein the area of each heat outflow hole (731) formed through the connecting plate (730) of the above-mentioned flow control section (700) increases as it moves away from the side closer to the above-mentioned connecting pipe body (400). Claim 5 A mobile house equipped with pipe heating elements according to claim 3, wherein the above-mentioned communication holes (601) are multiple, and the upper rail section (620) having a moving guide (621) is provided on the upper side of the inner surface of the pipe body (600) through which the communication holes (601) are formed, and the lower rail section (630) having a moving guide (631) is provided on the lower side of the inner surface of the pipe body (600) through which the communication holes (601) are formed, and further comprising a flow rate control section (700) that slides along the upper rail section (620) and the lower rail section (630) to control the outflow amount of radiant heat flowing out from each communication hole (601). Claim 6 In claim 5, the flow control unit (700) comprises: an upper moving member (710) that slides along the upper rail part (620); a lower moving member (720) that slides along the lower rail part (630); and a connecting plate (730) that connects the upper moving member (710) and the lower moving member (720), wherein each has a heat outflow hole (732) of the same size formed through it, each formed through it at a position corresponding to the communication hole (601), and a fastening bolt (734) connected around each heat outflow hole (732). A mobile house equipped with pipe heating devices, comprising: a plurality of flow control plates (760) having more than the number of heat discharge holes (732) provided, wherein a fastening hole (761) is formed through which the fastening bolt (734) is exposed and penetrated, a heat control outlet hole (762) communicating with the heat discharge hole (732) is formed through near the center, and a fastening nut (735) is provided for thread-fastening to the fastening bolt (734) exposed through the fastening hole (761); wherein the plurality of flow control plates (760) are characterized by providing heat control outlet holes (762) formed through the plurality of flow control plates (760) in a manner classified by size.
Citation Information
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