Dry type heating pipeline structure and construction method thereof
Abstract
There is provided a dry type heating pipe line structure for allowing easy construction of heating pipelines and an improved heating structure by installing the structures by a dry type method. The structure may include a plurality of support frames installed on the upper surface of the bottom for controlling the installation location of the heating pipelines, fixing the heating pipelines, and forming the height of the hot-floored layer, a plurality of heat diffusion plates installed on the upper surface of each of the support frames for uniformly diffusing the heat from the hot water to the entire surface of the bottom, and a upper plate installed on the support frame having the heat diffusion plate for transmitting the heat of the hot water.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A dry type heating pipeline structure for heating an indoor room by heat of hot water flowing through a heating pipeline installed on a bottom of the room, the structure comprising:
a plurality of support frames installed on the bottom on which a reflective adiabatic member is installed with connected to each other, for adjusting an installation location of the heating pipeline, fixing the heating pipeline, and forming height of a hot-floored layer, the heating pipeline being installed on the plurality of support frames; a plurality of heat diffusion plates installed on the plurality of support frames, for uniformly diffusing the heat of the hot water flowing through the heating pipeline into the entire area of the bottom; and an upper plate installed on the plurality of support frames on which the heat diffusion plates are installed and placed at an upper side of the hot-floored layer to form a heated surface, for transmitting the heat of the hot water inside the heating pipeline to the indoor room.
2 . The dry type heating pipeline structure of claim 1 , wherein the reflective adiabatic member comprises a reflective plate located at an upper side of the reflective adiabatic member, for reflecting light or heat; and a vibration-proof rubber located at a lower side of the reflective plate with attached thereto and having a predetermined elasticity for absorbing impact and reducing vibration.
3 . The dry type heating pipeline structure of claim 2 , wherein the reflective plate is of aluminum having a good heat or light shielding ability, and a good heat reflectivity.
4 . The dry type heating pipeline structure of claim 1 , wherein the support frame comprises:
a body having a plurality of separation plates therein and forming the height of the hot-floored layer; a recess part located on an upper surface of the body and formed by a plurality of support parts such that the heating pipeline is fixedly inserted, to fix and control the installation locations of the heating pipelines; a space part provided in the body and forming an air layer for preserving the heat to prevent the heat reflected by the reflective adiabatic member and the heat of the hot water flowing through the heating pipeline from being lost; and a plurality of coupling means provided on the outer surface of the body and connecting the support frames with each other.
5 . The dry type heating pipeline structure of claim 4 , wherein the coupling means comprises:
a plurality of coupling protrusions shaped in such a manner that one end thereof is integrally coupled with the body and the other end thereof is greater in thickness than the one end to form a gourd shape as viewed from the top; and a plurality of coupling grooves formed at an outer surface of the body of the support frames in a form of a concave recessed toward an inner direction of the body so that each of the coupling protrusions is inserted to connect the plurality of support frames with each other.
6 . The dry type heating pipeline structure of claim 5 , wherein the coupling protrusions and the coupling grooves are alternately formed on the outer surface of the body of the support frame.
7 . The dry type heating pipeline structure of claim 4 , wherein a plurality of round support pins are-formed on the upper surface of the support part toward the direction that the recess part is formed to fix the heating pipelines inserted into the recess part.
8 . The dry type heating pipeline structure of claim 1 , wherein a variable type support frame is installed on the upper surface of the bottom instead of one of the plurality of support frames to allow the heating pipeline to be installed concentratively and flexibly, and varies the installation location of the heating pipeline.
9 . The dry type heating pipeline structure of claim 8 , wherein the variable type support frame comprises:
a base plate including a plurality of fixing holes, which coupling members are respectively inserted through to be fixed to the bottom by the coupling member with connected to the bottom to locate the heating pipeline upwardly, and a plurality of circular protrusions which are integrally formed with the base plate, and each of which has a cylindrical protrusion hole therein; and a plurality of support rods equipped on the base plate and including a head part which is wider in diameter when it goes to an upside, for supporting the upper plate and varying the installation location of the heating pipeline, and has a head groove at center thereof for a connecting bolt to be inserted therethrough, a tail groove which is located on the lower side of the support rod and the cylindrical protrusion is inserted into, and a connecting hole which penetrates a center of the support rod to connect the head groove and the tail groove.
10 . The dry type heating pipeline structure of claim 1 , wherein the heat diffusion plate comprises:
an insert groove figured as a reverse Ω shape which the heating pipeline is inserted into; and heat diffusion wings formed on the both sides of the insert groove integrally and as a flat plate shape so that the heat of the hot water flowing through the heating pipeline is diffused on the entire surface of the bottom.
11 . The dry type heating pipeline structure of claim 10 , wherein a connected portion of the insert groove and the heat diffusion wings is formed as a round shape.
12 . The dry type heating pipeline structure of claim 10 , wherein the heat diffusion wings have different lengths around the insert groove.
13 . The dry type heating pipeline structure of claim 10 , wherein the respective heat diffusion wings has a vibration-proof member attached to a lower side thereof to reduce vibration generated by impact from outside and to absorb a noise.
14 . The dry type heating pipeline structure of claim 13 , wherein the vibration-proof member is a high molecular compound comprising rubber or welt.
15 . The dry type heating pipeline structure of claim 13 , wherein the vibration-proof member is 1˜2 mm thick.
16 . The dry type heating pipeline structure of claim 1 , wherein the upper plate comprises a material for emitting far-infrared and the material is at least one selected from a group consisting of gangue rock, silica and calcium carbonate.
17 . A construction method of a dry type heating pipeline structure for heating an indoor room by heat of hot water flowing through a heating pipeline installed on a bottom of the room, the method comprising the steps of:
adjusting an installation location of the heating pipeline on the bottom, and connectively coupling a plurality of support frames for fixing the heating pipeline at an adjusted location to form a height of a hot-floored layer; installing a heat diffusion plate which the heating pipeline is inserted into and fixed on to cover a part of the support frame on each of the support frames to diffuse the heat of the hot water flowing through the heating pipeline to the entire surface of the bottom; and installing an upper plate on the support frames having the heat diffusion plate thereon to form a bottom of the hot-floored layer such that the heat of the hot water flowing through the heating pipeline is diffused to the entire surface of the bottom uniformly.
18 . The construction method of claim 17 , further comprising the step of installing a reflective adiabatic member between the bottom and the lower side of the support frames to prevent the heat of the hot water flowing through the heating pipeline from leaked through the bottom to the outside.
19 . The construction method of claim 17 , further comprising the step of varying an installation location of the heating pipeline by installing a variable type support frame instead of one of the plurality of support frames to allow the concentrative and free installation of the heating pipelines by the variable type support frame.Join the waitlist — get patent alerts
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