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A built-in marine heat pipe installation structure

An installation structure, built-in technology, applied in the direction of hull ventilation/heating/cooling, ship components, ship construction, etc., can solve the problems that the heat pipe heat exchanger cannot be satisfied, the use effect of the heat exchanger is not ideal, and the cost is high. The effect of saving space, saving circulating cooling water resources, and low manufacturing cost

Active Publication Date: 2016-08-24
JIANGSU NANTONG SHENTONG MACHINERY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing heat exchangers can no longer meet the heat pipe heat exchangers suitable for ships, and the installation structure and use method of the heat exchangers on ships are not ideal, and the cost is high

Method used

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  • A built-in marine heat pipe installation structure
  • A built-in marine heat pipe installation structure
  • A built-in marine heat pipe installation structure

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] A built-in marine heat pipe installation structure:

[0026] It includes a marine heat pipe shell and a marine heat pipe body built in the marine heat pipe shell. The marine heat pipe shell is composed of a shipboard cabin and a partition that is sealed and connected with the shipboard cabin; The externally connected heat pipe is cooled with a water inlet and a water outlet.

[0027] The present invention comprises marine heat pipe 2, clapboard a11, clapboard b12, clapboard c13 and ship's side cabin body 3, clapboard a11, clapboard b12, clapboard c13 and ship's side cabin body form airtight space 3; Confined space 3 is respectively provided with The water inlet 41 and the water outlet 51 are provided with a marine heat pipe 2 placement opening 6 on the partition c13 where the upper part of the confined space 3 is located. The distance between the marine heat pipe 2 placement opening 6 and the vertical side of the ship's side cabin is 1 / 3. Set in the closed space 3 thro...

Embodiment 2

[0031] The built-in marine heat pipe installation structure of the present invention includes a marine heat pipe, a partition b12, a partition c13, a partition d14, and a ship's side cabin, and the partition b12, the partition c13, the partition d14 and the ship's side cabin form a closed space 3; the closed space 3 are respectively provided with a water inlet 42 and a water outlet 52, and the partition c13 where the upper part of the confined space 3 is located is provided with a marine heat pipe 2 placement opening 6, and the distance between the marine heat pipe 2 placement opening 6 and the vertical side of the ship's side cabin is 1 / 2. The marine heat pipe is installed in the confined space through the opening 6;

[0032] Specifically, the above-mentioned shipboard cabin body is the shipboard side 7, and the shipboard side is provided with upper and lower two ports, the upper port is the water inlet 42, and the lower port is the water outlet 52; the ratio of the aperture ...

Embodiment 3

[0035] The built-in marine heat pipe installation structure of the present invention includes a marine heat pipe 2, a partition b12, a partition c13 and a ship's side cabin body, and the partition b12, the partition board c13 and the ship's side cabin body form a closed space 3; the closed spaces 3 are respectively provided with water inlets 43 and the water outlet 53, the partition c13 where the upper part of the confined space 3 is located is provided with a marine heat pipe 2 placement opening 6, the distance between the marine heat pipe 2 placement opening 6 and the vertical side of the ship's side cabin is 1 / 2, and the marine heat pipe 2 passes through the opening placed in a confined space 3;

[0036] Specifically, the above-mentioned shipboard cabin body is a radian surface formed by the shipboard side 7 and the shipboard bottom surface 8, a closed space formed by the shipboard heat pipe 2, the partition b12, the partition c13 and the radian surface formed by the shipsid...

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PUM

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Abstract

The invention discloses a built-in marine heat pipe installation structure, which is innovative in that it includes a marine heat pipe, a partition and a ship's side cabin, and the partition and the ship's side cabin form a closed space; the closed space is respectively provided with a water inlet and a water outlet, An opening for placing the marine heat pipe is arranged on the partition where the upper part of the confined space is located, and the marine heat pipe is placed in the confined space through the opening. The built-in marine heat pipe installation structure of the present invention has low manufacturing cost. The installation of the ship heat exchanger is carried out through a unique installation method, which saves space and fits closely with the ship’s side curvature at the seabed door. The special marine heat pipe placement opening and The distance between the vertical side of the ship's side cabin is 1 / 3~1 / 2, the heat exchange effect reaches 85~95% and is durable and stable, and the factors affected by the ship's movement and navigation are small.

Description

technical field [0001] The invention relates to a built-in marine heat pipe installation structure, which belongs to the field of heat pipe installation. Background technique [0002] The usual heat pipe heat exchanger uses the working medium in the evaporation section of the heat pipe to boil or evaporate after being heated, absorb the heat from an external heat source, generate latent heat of vaporization, change from liquid to steam, and the generated steam flows to the In the condensation section, the steam meets the cold wall surface and the external cold source, condenses into liquid, releases the latent heat of vaporization, and transmits it to the external cold source through the tube wall, and the condensate flows back to the evaporation section under the action of gravity (or liquid-absorbing core) to evaporate again. Reciprocating in this way, the heat transfer and exchange to the external cold and hot media is realized, and the cooling medium is air-cooled or wat...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B63J2/12
Inventor 缪红建高峰杜度郭峰顾忠华
Owner JIANGSU NANTONG SHENTONG MACHINERY
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