Dry method groove heat preservation floor heating module system

By designing a dry groove insulation floor heating module system, the overhead structure is used to separate heating and water and electricity pipelines, the problems of cumbersome installation and low thermal conductivity are solved, and the effects of easy installation, disassembly and efficient thermal conductivity are achieved.

CN222951099UActive Publication Date: 2025-06-06HEBEI JINXINGDA ENERGY SAVING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421449107.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-06-06
Estimated Expiration
2034-06-24

AI Technical Summary

Technical Problem

The installation process of traditional floor heating is complicated and requires professional installation. The water pipe tray is not convenient for maintenance under the cement layer and has low thermal conductivity.

Method used

A dry groove insulation floor heating module system is designed, adopting an overhead structure, the heating pipes are arranged on the surface of the insulation floor heating module, and the water and electricity pipelines are arranged in the overhead space below the module, realizing pipeline separation and easy disassembly and assembly.

Benefits of technology

It realizes floor heating modules that are easy to install and disassemble, improves thermal conductivity and simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a dry method groove heat preservation floor heating module system which comprises a linear type floor heating module, a linear curve composite type floor heating module and a floor heating module filling plate, and the linear type floor heating module, the linear curve composite type floor heating module and the floor heating module filling plate are combined to form the dry method groove heat preservation floor heating module system. The surface of the dry-method groove heat preservation floor heating module system is provided with a linear section heating pipeline groove and a curve section heating pipeline groove, and the dry-method groove heat preservation floor heating module system is embedded into a framework type structure in a detachable mode and is arranged at a preset position along a water and electricity pipeline. A linear type floor heating module, a linear curve composite type floor heating module and a floor heating module filling plate in the dry method groove heat preservation floor heating module system are spliced and connected in a detachable mode, and the floor heating module filling plate is installed in a heating area without ground radiation.
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Description

Technical Field

[0001] The utility model belongs to the technical field of construction, and in particular relates to a dry groove thermal insulation floor heating module system. Background Art

[0002] With the development of social economy and the continuous improvement of people's quality of life, people have higher and higher requirements for the comfort of their homes, and floor heating modules are gradually becoming the trend of floor radiation heating. When installing traditional floor heating, it is necessary to lay cement, insulation layer, coil, mortar backfill, and tile in sequence. The process is cumbersome and requires professional installation. The water pipe is coiled under the cement layer, which is not convenient for later maintenance and has extremely low thermal conductivity. Therefore, there is an urgent need for a floor heating module that is easy to install and disassemble and has high thermal conductivity.

[0003] In view of the above factors, a dry trench insulation floor heating module system is specially designed. The dry trench insulation floor heating module system adopts an overhead structure. The heating pipes are arranged on the surface of the insulation floor heating module, and the water and electricity pipelines are arranged in the overhead space under the module to achieve pipeline separation and facilitate disassembly and assembly. Utility Model Content

[0004] The purpose of the utility model is to provide a dry groove insulation floor heating module system to solve the problems raised in the above background technology.

[0005] The purpose of the utility model is achieved through the following technical solutions: a dry-type groove insulation floor heating module system, including a straight-type floor heating module, a straight-curve composite floor heating module, and a floor heating module filling plate, which is combined to form a dry-type groove insulation floor heating module system;

[0006] The surface of the dry trench insulation floor heating module system is provided with straight and curved heating pipeline ducts;

[0007] The dry trench insulation floor heating module system is embedded in a skeleton structure in a detachable manner;

[0008] The dry trench insulation floor heating module system is arranged at a predetermined position along the water and electricity pipelines;

[0009] The linear floor heating module, the linear-curve composite floor heating module, and the floor heating module filling plate in the dry groove insulation floor heating module system are assembled and connected in a detachable manner; the floor heating module filling plate is installed in an area without floor radiation heating.

[0010] Furthermore, the dry trench insulation floor heating module system is arranged at a predetermined position along the direction of the water and electricity pipelines;

[0011] The dry trench insulation floor heating module system includes at least one group of straight-line floor heating modules, straight-line and curved composite floor heating modules or floor heating module filling plates;

[0012] The floor heating module filling plate has the same structure as the linear floor heating module, and water and electricity pipeline grooves are arranged at intervals at the bottom of the floor heating module filling plate.

[0013] Furthermore, in the dry groove insulation floor heating module system, a plurality of straight floor heating modules, straight-curve composite floor heating modules, and floor heating module filling plates are provided;

[0014] A plurality of the linear floor heating modules are detachably assembled into a linear floor heating module unit;

[0015] A plurality of the linear-curved composite floor heating modules are detachably assembled into a linear-curved composite floor heating module unit;

[0016] A plurality of the floor heating module filling panels are detachably assembled into a floor heating module filling panel unit;

[0017] The adjacent surfaces of the straight-line floor heating module unit, the straight-line-curve composite floor heating module unit, and the floor heating module filling plate unit are spliced ​​in a contact-type fit.

[0018] Furthermore, in the dry groove insulation floor heating module system, a plurality of straight floor heating modules, straight-curve composite floor heating modules, and floor heating module filling plates are provided;

[0019] A plurality of the linear floor heating modules are detachably assembled into a linear floor heating module unit;

[0020] A plurality of the linear-curved composite floor heating modules are detachably assembled into a linear-curved composite floor heating module unit;

[0021] A plurality of the floor heating module filling panels are detachably assembled into a floor heating module filling panel unit;

[0022] The adjacent surfaces of the linear floor heating module unit, the linear and curved composite floor heating module unit, and the floor heating module filling plate unit are spliced ​​together by connecting columns in a plug-in manner;

[0023] The adjacent surfaces of the linear floor heating module unit, the linear-curve composite floor heating module unit, and the floor heating module filling plate unit are provided with docking channels, and the docking channels are plug-in-type with connecting columns.

[0024] The connecting column is made of the same material as the linear floor heating module.

[0025] Furthermore, first connecting slots are provided at both ends of the linear floor heating module, and a first mounting slot is provided on the linear floor heating module, the first mounting slots are arranged in a plum blossom shape, and a skeleton structure is detachably installed in the first mounting slot;

[0026] The skeleton structure has a plurality of holes arranged in a matrix.

[0027] Furthermore, a heating component is installed in the heating pipeline groove provided on the linear floor heating module, and the heating component is a heating pipe, a heating cable or a carbon fiber heating cable.

[0028] Furthermore, second connection slots are provided at both ends of the linear-curved composite floor heating module, and a second installation slot is provided on the linear-curved composite floor heating module, in which a skeleton structure is detachably installed;

[0029] The straight-curve composite floor heating module is provided with a straight section and a curved section, the curved section region is provided with a second installation groove, and a skeleton structure is detachably installed in the second installation groove;

[0030] A plurality of holes arranged in a matrix on the skeleton structure;

[0031] Furthermore, the area where the straight line segment is located is provided with raised slots, the raised slots are arranged at intervals, and the area where the curved line segment is located is arranged at intervals of semicircles and full circles, and the raised arc between the semicircle and the full circle is used for bending and fixing;

[0032] The raised card slot is formed by two groups of card blocks arranged opposite to each other to form a space for accommodating the heating pipeline. The material of the raised card slot is the same as that of the floor heating module, and is integrally formed with the floor heating module.

[0033] Further. The linear floor heating module, the linear and curved composite floor heating module, the floor heating module filling plate material includes but is not limited to polypropylene molding, polystyrene board, extruded board, foamed concrete, B 1 Any one of grade thermosetting composite polystyrene board and rigid foam polyurethane.

[0034] The material of the skeleton structure includes but is not limited to any one of wood, wood-based material, inorganic wood, plywood, composite wood, nylon, glass fiber, cement fiber, vinylon fiber reinforced cement board, glass magnesium board, fiber reinforced low alkalinity cement board, and calcium silicate board.

[0035] Compared with the prior art, the utility model has the following beneficial effects:

[0036] The utility model lays water and electricity pipelines at a predetermined position, and then installs a straight-line thermal insulation floor heating module and a straight-curve composite thermal insulation floor heating module, the water and electricity pipelines are in the groove below the module, and the floor heating modules are connected by using card slots; then, the thermal insulation floor heating module filling plate is installed in the area without floor radiation heating, and the reserved groove below the thermal insulation floor heating module filling plate is also used to install the water and electricity pipelines; then, the heating component is installed, and the heating component is installed along the groove on the surface of the floor heating module.

[0037] The material and frame of the filling plate of the thermal insulation floor heating module of the utility model are the same as those of the dry groove straight-line thermal insulation floor heating module and the dry groove straight-line curve composite thermal insulation floor heating module. It is composed of an embedded frame after prefabrication in the factory, and the frame is arranged in a uniform array on the surface of the module; the filling plate of the thermal insulation floor heating module is used for laying in the area without ground radiation heating on the construction site and for use in conjunction with the straight-line thermal insulation floor heating module and the straight-line curve composite thermal insulation floor heating module.

[0038] The utility model adopts an overhead structure, in which the heating pipes are arranged on the surface of the insulation floor heating module, and the water and electricity pipelines are arranged in the overhead space below the module, so as to realize pipeline separation; BRIEF DESCRIPTION OF THE DRAWINGS

[0039] Figure 1 This is a schematic diagram of the assembly of the dry trench insulation floor heating module system and the heating pipeline of the utility model;

[0040] Figure 2 It is a three-dimensional schematic diagram of the linear floor heating module of the utility model;

[0041] Figure 3 It is a three-dimensional schematic diagram of the utility model's linear and curved composite floor heating module;

[0042] Figure 4 It is a three-dimensional schematic diagram of the filling plate of the floor heating module of the utility model;

[0043] Figure 5 It is a top view schematic diagram of the linear floor heating module of the utility model;

[0044] Figure 6 It is a schematic diagram of a cross section of a linear floor heating module of the utility model having a docking channel;

[0045] Figure 7 This is a plan view of the straight-curve composite floor heating module of the utility model;

[0046] Figure 8 It is a plan view of the filling plate of the floor heating module of the utility model. DETAILED DESCRIPTION

[0047] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the utility model.

[0048] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected or indirectly connected through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0049] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0050] like Figure 1-8 As shown, a dry-type groove insulation floor heating module system includes a straight-type floor heating module 1, a straight-curve composite floor heating module 2, and a floor heating module filling plate 3, and the straight-type floor heating module 1, the straight-curve composite floor heating module 2, and the floor heating module filling plate 3 are combined to form a dry-type groove insulation floor heating module system 4;

[0051] The surface of the dry trench insulation floor heating module system 4 is provided with straight and curved heating pipeline troughs;

[0052] The dry trench insulation floor heating module system 4 is detachably embedded in the skeleton structure 7;

[0053] The dry trench insulation floor heating module system 4 is arranged at a predetermined position along the water and electricity pipelines;

[0054] The linear floor heating module 1, the linear-curve composite floor heating module 2, and the floor heating module filling plate 3 in the dry groove insulation floor heating module system 4 are assembled and connected in a detachable manner; the floor heating module filling plate 3 is installed in an area without floor radiation heating.

[0055] In order to facilitate use, according to the actual working conditions of the installation site, the dry trench insulation floor heating module system 4 adopts different forms of assembly, and the dry trench insulation floor heating module system 4 is arranged at a predetermined position along the direction of the water and electricity pipelines;

[0056] The dry trench insulation floor heating module system 4 comprises at least one group of straight-line floor heating modules 1, straight-line and curved composite floor heating modules 2 or floor heating module filling plates 3;

[0057] The floor heating module filling plate 3 has the same structure as the linear floor heating module 1 , and water and electricity pipeline grooves are arranged at intervals at the bottom of the floor heating module filling plate.

[0058] In order to facilitate the use, according to the actual working conditions of the installation site, the dry groove insulation floor heating module system 4 adopts contact assembly, and the straight-line floor heating module 1, the straight-line and curved composite floor heating module 2, and the floor heating module filling plate 3 in the dry groove insulation floor heating module system 4 are provided with several pieces;

[0059] A plurality of the linear floor heating modules 1 are detachably assembled into a linear floor heating module unit;

[0060] A plurality of the linear-curved composite floor heating modules 2 are detachably assembled into a linear-curved composite floor heating module unit;

[0061] A plurality of the floor heating module filling panels 3 are detachably assembled into a floor heating module filling panel unit;

[0062] The adjacent surfaces of the straight-line floor heating module unit, the straight-line-curve composite floor heating module unit, and the floor heating module filling plate unit are spliced ​​in a contact-type fit.

[0063] In order to facilitate the use, according to the actual working conditions of the installation site, the dry groove insulation floor heating module system 4 adopts plug-in assembly, and the linear floor heating module 1, the linear and curved composite floor heating module 2, and the floor heating module filling plate 3 are provided in the dry groove insulation floor heating module system;

[0064] A plurality of the linear floor heating modules 1 are detachably assembled into a linear floor heating module unit;

[0065] A plurality of the linear-curved composite floor heating modules 2 are detachably assembled into a linear-curved composite floor heating module unit;

[0066] A plurality of the floor heating module filling panels 3 are detachably assembled into a floor heating module filling panel unit;

[0067] The adjacent surfaces of the linear floor heating module unit, the linear and curved composite floor heating module unit, and the floor heating module filling plate unit are spliced ​​together by connecting columns in a plug-in manner;

[0068] The adjacent surfaces of the linear floor heating module unit, the linear-curve composite floor heating module unit, and the floor heating module filling plate unit are provided with docking channels, and the docking channels are plug-in-type with connecting columns.

[0069] The connecting column is made of the same material as the linear floor heating module.

[0070] The adjacent surfaces of the linear floor heating module unit, the linear-curve composite floor heating module unit, and the floor heating module filling plate unit are provided with docking channels, and the docking channels are plug-in-type with connecting columns.

[0071] The connecting column is made of the same material as the linear floor heating module.

[0072] In order to facilitate disassembly and assembly in use, first connecting slots 5 are provided at both ends of the linear floor heating module, and first mounting slots 6 are provided on the linear floor heating module 1. The first mounting slots 6 are arranged in a plum blossom shape, and a skeleton structure 7 is detachably installed in the first mounting slots 6;

[0073] The skeleton structure 7 has a plurality of holes 8 arranged in a matrix.

[0074] Heating components are installed in heating pipeline grooves arranged at intervals on the linear floor heating module 1, and the heating components are heating pipes, heating cables or carbon fiber heating cables.

[0075] The bottom of the linear floor heating module 1 is provided with water and electricity pipeline grooves at intervals;

[0076] In order to facilitate the flexible installation of the floor heating pipe when it is in use and meet the installation requirements in complex situations, second connecting slots 9 are provided at both ends of the straight-curve composite floor heating module 2, and a second installation slot 10 is opened on the straight-curve composite floor heating module 2, and a skeleton structure 7 is detachably installed in the second installation slot 10;

[0077] The straight-curve composite floor heating module 2 is provided with a straight section and a curved section, and the curved section area is provided with the second installation groove 10, and the skeleton structure 7 is detachably installed in the second installation groove 10;

[0078] A plurality of holes 8 arranged in a matrix on the skeleton structure 7;

[0079] The area where the straight line segment is located is provided with raised slots 11, and the raised slots 11 are arranged at intervals. The area where the curved line segment is located is arranged at intervals with semicircles and full circles, and the raised arc between the semicircle and the full circle is used for bending and fixing;

[0080] The raised card slot 11 is formed by two groups of card blocks arranged opposite to each other to form a space for accommodating the heating pipeline. The material of the raised card slot 11 is the same as that of the floor heating module, and is integrally formed with the floor heating module.

[0081] In order to provide thermal insulation performance of the dry groove linear floor heating module unit when in use, the materials of the linear floor heating module 1, the linear-curve composite floor heating module 2, and the floor heating module filling plate 3 include but are not limited to any one of polypropylene molding, polystyrene board, extruded board, foamed concrete, B1 grade thermosetting composite polystyrene board, and rigid foam polyurethane.

[0082] In order to improve the overall pressure-bearing performance during use, the material of the skeleton structure 7 includes but is not limited to any one of wood, wood-based material, inorganic wood, plywood, composite wood, nylon, glass fiber, cement fiber, vinylon fiber-reinforced cement board, glass magnesium board, fiber-reinforced low-alkalinity cement board, and calcium silicate board.

[0083] The skeleton of the dry groove thermal insulation floor heating module system of the utility model can be made of rectangular wood, nylon, glass fiber, cement fiber, vinylon fiber reinforced cement board, glass magnesium board, fiber reinforced low alkalinity cement board and calcium silicate board and other pressure-bearing materials, which are arrayed in the thermal insulation module to improve the compressive strength of the thermal insulation floor heating module. At the same time, the skeleton adopts a hole structure to improve the sound insulation performance of the thermal insulation floor heating module.

[0084] The utility model adopts an overhead structure, in which the heating pipes are arranged on the surface of the insulation floor heating module, and the water and electricity pipelines are arranged in the overhead space below the module, so as to realize pipeline separation;

[0085] The dry-method groove heat-insulating floor heating modules of the utility model are spliced ​​by using a slot-type splicing method, which improves the integrity of the floor heating modules and is convenient and quick.

[0086] The material and frame of the filling plate of the thermal insulation floor heating module of the utility model are the same as those of the dry groove straight-line thermal insulation floor heating module and the dry groove straight-line curve composite thermal insulation floor heating module. It is composed of an embedded frame after prefabrication in the factory, and the frame is arranged in a uniform array on the surface of the module; the filling plate of the thermal insulation floor heating module is used for laying in the area without ground radiation heating on the construction site and for use in conjunction with the straight-line thermal insulation floor heating module and the straight-line curve composite thermal insulation floor heating module.

[0087] Construction and installation method: After the original floor is leveled, the water and electricity pipelines are laid out at the predetermined position, and then the linear insulation floor heating module and the linear and curved composite insulation floor heating module are installed. The water and electricity pipelines are in the grooves below the modules, and the floor heating modules are connected by slots; then the insulation floor heating module filling plates are installed in the area without floor radiation heating, and the reserved grooves below the insulation floor heating module filling plates are also used to install water and electricity pipelines; then the heating components are installed, and the heating components are installed along the grooves on the surface of the floor heating modules.

[0088] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, the embodiments should be regarded as exemplary and non-restrictive from any point of view, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims be included in the present invention. Any reference numeral in a claim should not be regarded as limiting the claim to which it relates.

[0089] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A dry trench insulation floor heating module system, characterized in that : It includes a straight-line floor heating module, a straight-line and curved composite floor heating module, and a floor heating module filling plate, and the straight-line floor heating module, the straight-line and curved composite floor heating module, and the floor heating module filling plate are combined to form a dry groove insulation floor heating module system; The surface of the dry trench insulation floor heating module system is provided with straight and curved heating pipeline ducts; The dry trench insulation floor heating module system is embedded in a skeleton structure in a detachable manner; The dry-type trench insulation floor heating module system is arranged at a predetermined position along the water and electricity pipelines: the linear floor heating module, the linear and curved composite floor heating module, and the floor heating module filling plate in the dry-type trench insulation floor heating module system are assembled and connected in a detachable manner; The floor heating module filling plate is installed in an area without floor radiation heating.

2. The dry trench insulation floor heating module system according to claim 1 is characterized in that : The dry trench insulation floor heating module system is arranged at a predetermined position along the direction of the water and electricity pipelines; The dry trench insulation floor heating module system includes at least one group of straight-line floor heating modules, straight-line and curved composite floor heating modules or floor heating module filling plates; The floor heating module filling plate has the same structure as the linear floor heating module, and water and electricity pipeline grooves are arranged at intervals at the bottom of the floor heating module filling plate.

3. The dry trench insulation floor heating module system according to claim 2 is characterized in that : In the dry groove insulation floor heating module system, a plurality of linear floor heating modules, linear and curved composite floor heating modules, and floor heating module filling plates are provided; A plurality of the linear floor heating modules are detachably assembled into a linear floor heating module unit; A plurality of the linear-curved composite floor heating modules are detachably assembled into a linear-curved composite floor heating module unit; Several of the floor heating module filling plates are detachably assembled into a floor heating module filling plate unit: the adjacent surfaces of the linear floor heating module unit, the linear-curve composite floor heating module unit, and the floor heating module filling plate unit are contact-matched.

4. The dry trench insulation floor heating module system according to claim 2 is characterized in that : In the dry groove insulation floor heating module system, a plurality of linear floor heating modules, linear and curved composite floor heating modules, and floor heating module filling plates are provided; A plurality of the linear floor heating modules are detachably assembled into a linear floor heating module unit; a plurality of the linear-curved composite floor heating modules are detachably assembled into a linear-curved composite floor heating module unit; A plurality of the floor heating module filling plates are detachably assembled into a floor heating module filling plate unit; the adjacent surfaces of the linear floor heating module unit, the linear-curve composite floor heating module unit, and the floor heating module filling plate unit are assembled by plug-in connection with connecting columns; The adjacent surfaces of the linear floor heating module unit, the linear-curve composite floor heating module unit, and the floor heating module filling plate unit are provided with docking channels, and the docking channels are plug-in-type with connecting columns: the connecting columns are made of the same material as the linear floor heating module.

5. The dry trench insulation floor heating module system according to claim 3 is characterized in that : First connecting slots are arranged at both ends of the linear floor heating module, and a first mounting slot is opened on the linear floor heating module. The first mounting slots are arranged in a plum blossom shape, and a skeleton structure is detachably installed in the first mounting slot; The skeleton structure has a plurality of holes arranged in a matrix.

6. The dry trench insulation floor heating module system according to claim 5 is characterized in that : A heating component is installed in the heating pipeline groove arranged on the linear floor heating module, and the heating component adopts a heating tube heating cable or a carbon fiber heating cable.

7. The dry trench insulation floor heating module system according to claim 6 is characterized in that : A second connecting slot is provided at both ends of the linear-curve composite floor heating module, a second installation slot is provided on the linear-curve composite floor heating module, and a skeleton structure is detachably installed in the second installation slot; The straight-curve composite floor heating module is provided with a straight section and a curved section, and a second installation groove is opened in the curved section area, in which a skeleton structure is detachably installed: the skeleton structure has a plurality of holes arranged in a matrix.

8. The dry trench insulation floor heating module system according to claim 7 is characterized in that : The area where the straight line segment is located is provided with a raised slot, the raised slots are arranged at intervals, and the area where the curved line segment is located is arranged at intervals with a semicircle and a full circle, and the raised arc between the semicircle and the full circle is used for bending and fixing; The raised card slot is formed by two groups of card blocks arranged opposite to each other to form a space for accommodating the heating pipeline. The material of the raised card slot is the same as that of the floor heating module, and is integrally formed with the floor heating module.

9. The dry trench insulation floor heating module system according to claim 8 is characterized in that :The material of the linear floor heating module, the linear and curved composite floor heating module, and the floor heating module filling plate is any one of polypropylene molding, polystyrene board, extruded board, foamed concrete, B1 grade thermosetting composite polystyrene board, and rigid foam polyurethane.

10. The dry trench insulation floor heating module system according to claim 9 is characterized in that The material of the skeleton structure is any one of wood, nylon, glass fiber, cement fiber, vinylon fiber reinforced cement board, glass magnesium board, fiber reinforced low alkalinity cement board, and calcium silicate board.