Dehumidification device with enhanced dehumidification effect
10883741 ยท 2021-01-05
Assignee
Inventors
Cpc classification
F28F17/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28B1/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F2003/1446
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F3/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F2210/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F3/153
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F21/062
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F24F3/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28B1/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/053
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F17/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F3/153
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A dehumidification device with enhanced dehumidification effect includes a gas cooler receiving a first air gas and condensing the first air gas into a first condensing gas and a first condensing liquid. A heat exchanger has an inlet and an outlet. The first condensing gas flows from the gas cooler to a periphery of the heat exchanger to cool the heat exchanger. The inlet receives a second air gas from outside. The second air gas is condensed into a second condensing gas and a second condensing liquid using the cooled heat exchanger, and the second condensing gas and the second condensing liquid are expelled from the outlet. A gas heater receives the first condensing gas flowing through the periphery of the heat exchanger and the second condensing gas expelled from the outlet, and heats and turns them into dry air, and the gas heater expels the dry air.
Claims
1. A dehumidification device with enhanced dehumidification effect comprising: a gas cooler receiving a first air gas from outside and condensing said first air gas into a first condensing gas and a first condensing liquid, wherein said gas cooler defines a first airflow path for said first air gas in a first direction, and said first air gas is condensed within said first airflow path; a heat exchanger arranged at one side of said gas cooler, wherein said heat exchanger has at least one inlet and at least one outlet, said first condensing gas flows from said gas cooler across a periphery of said heat exchanger to cool said heat exchanger, said at least one inlet receives a second air gas from outside, said heat exchanger defines a second airflow path for said second air gas in a second direction different from said first direction, said second airflow path crosses said first airflow path, said second air gas is condensed into a second condensing gas and a second condensing liquid by passage through said cooled heat exchanger for supplemental condensing of outside air, said second air gas is condensed within said second airflow path, and said second condensing gas and said second condensing liquid are expelled from said at least one outlet; and a gas heater arranged at one side of said heat exchanger, and said heat exchanger is thereby arranged between said gas cooler and said gas heater, wherein said gas heater receives and heats said first condensing gas flowing past said periphery of said heat exchanger and said second condensing gas expelled from said at least one outlet of said heat exchanger, said gas heater thereby generates dry air, and said gas heater expels said dry air.
2. A dehumidification device with enhanced dehumidification effect comprising: a gas cooler receiving a first air gas from outside and condensing said first air gas into a first condensing gas and a first condensing liquid; a heat exchanger arranged at one side of said gas cooler, wherein said heat exchanger has at least one inlet and at least one outlet, said first condensing gas flows from said gas cooler to a periphery of said heat exchanger to cool said heat exchanger, said at least one inlet receives a second air gas from said outside, said second air gas is condensed into a second condensing gas and a second condensing liquid using said cooled heat exchanger, and said second condensing gas and said second condensing liquid are expelled from said at least one outlet; and a gas heater arranged at one side of said heat exchanger, and said heat exchanger is thereby arranged between said gas cooler and said gas heater, wherein said gas heater receives and heats said first condensing gas flowing to said periphery of said heat exchanger and said second condensing gas expelled from said at least one outlet of said heat exchanger into dry air, and said gas heater expels said dry air; wherein said heat exchanger further comprises: at least one hollow tube having said at least one inlet and said at least one outlet, and said first condensing gas flows through a periphery of said at least one hollow tube; and at least one fixing board arranged between said gas cooler and said gas heater and fixing said at least one hollow tube.
3. The dehumidification device with enhanced dehumidification effect according to claim 2, wherein said at least one hollow tube further comprises a plurality of hollow tubes arranged abreast into a row and fixed in said at least one fixing board.
4. The dehumidification device with enhanced dehumidification effect according to claim 2, wherein said at least one hollow tube further comprises a plurality of hollow tubes, and said plurality of hollow tubes is divided into a row of large-bore hollow tubes arranged abreast and a row of small-bore hollow tubes arranged abreast, and said row of said large-bore hollow tubes and said row of said small-bore hollow tubes are arranged from front to back and fixed in said at least one fixing board.
5. The dehumidification device with enhanced dehumidification effect according to claim 4, wherein said large-bore hollow tubes respectively touch said small-bore hollow tubes.
6. The dehumidification device with enhanced dehumidification effect according to claim 2, wherein said outlet of said at least one hollow tube is a tilted opening.
7. The dehumidification device with enhanced dehumidification effect according to claim 2, wherein said at least one hollow tube is a circular hollow tube or an elliptical hollow tube.
8. The dehumidification device with enhanced dehumidification effect according to claim 2, wherein said periphery of said at least one hollow tube further comprises a plurality of holes expelling said second condensing gas.
9. The dehumidification device with enhanced dehumidification effect according to claim 2, wherein said at least one hollow tube is a flexible hollow tube.
10. The dehumidification device with enhanced dehumidification effect according to claim 1, wherein said heat exchanger comprises plastic or metal tubes.
11. The dehumidification device with enhanced dehumidification effect according to claim 1, wherein said gas cooler is an evaporator, and said gas heater is a condenser.
12. The dehumidification device with enhanced dehumidification effect according to claim 1, wherein said inlet has an opening that faces upward or sideward.
13. The dehumidification device with enhanced dehumidification effect according to claim 1, further comprising a water collector arranged under said heat exchanger and said gas cooler and receiving said first condensing liquid and said second condensing liquid.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(8) In the market, a frozen dehumidifier achieves the better dehumidification efficiency than a rotary dehumidifier. In general, if the frozen dehumidifier intends to improve efficiency or increase dehumidification capacities, the solution is nothing more than enhancing a horsepower of a compressor or using the frequency-conversion technology with high cost. However, the solution can consume more power or greatly increase the manufacture cost of the dehumidifier. Thus, the present invention uses a heat exchanger with low cost and applies a partial bypass concept to a dehumidification device to increase the dehumidification efficiency and decrease the manufacture cost.
(9) Refer to
(10) After describing the elements of the present invention, the operation of the present invention is described. Refer to
(11) Continuing from the abovementioned paragraph, the first air gas 18 and the second air gas 20 are defined by the positions that external air enters into the dehumidification device 10, and respectively flow in two different directions. For example, openings of the inlets 142 face upward, and the second air gas 20 is a gas over the dehumidification device 10. The gas cooler 12 uses its side to receive the first air gas 18 at a side of the dehumidification device 10. The present invention does not limit how to form the course of air. In general, a frozen dehumidifier is provided with fans therein. The fans are respectively arranged at sides of an evaporator and a condenser, absorb external air into an interior, dry the air and then expel it. In the embodiment, the dehumidification device 10 uses fans (not shown) to absorb external air into an interior of the dehumidification device 10. The present invention does not limit the positions and types of the fans. The present invention limits the facts that humid air flows from an exterior to the interior of the dehumidification device 10, and that the air is turned into dry air, and that the dry air is expelled.
(12) After describing the operation of the present invention, the present invention details the heat exchanger. Refer to
(13) Furthermore, refer to
(14) In addition, the hollow tube is not only a circular hollow tube but also an elliptical hollow tube. Refer to
(15) Refer to
(16) On top of that, the hollow tube is alternatively a flexible hollow tube. When the flexible hollow tube is curved, the opening of its inlet faces toward the side of the dehumidification device. In this way, the position that external air enters can be changed. For example, when the dehumidification device is arranged on a ceiling, the opening of the hollow tube cannot face upward. Instead, the opening of the hollow tube faces toward the side of the dehumidification device.
(17) The present invention uses the heat exchanger and the partially-bypass principle to increase the amount of air inlets, whereby a part of air flows the peripheries of the hollow tubes of the heat exchanger and a part of the air flows the insides of the hollow tubes, thereby increasing air quantity entering the dehumidification device. Additionally, the dry and cold air that has been cooled is used to decrease the temperature of the heat exchanger, and then the air coining from the other directions is dehumidified, thereby designing a dehumidification device with high performance.
(18) As a result, the present invention only installs the heat exchanger between an evaporator and a condenser of a frozen dehumidifier but does not describe the other elements of the dehumidifier. The present invention does not need to greatly change an internal structure of the dehumidifier. An exterior of the dehumidifier is provided with openings according to the heat exchanger to increase entrances that external air enters into the dehumidifier. Besides, the user can decide the shape, arrangement or direction of the openings of the hollow tubes according to requirements. An amount of the hollow tubes is not limited. In addition to the plurality of hollow tubes, the user can design a hollow tube having a plurality of openings. Additionally, the hollow tubes are massively produced after mold opening. In the embodiment of the present invention, the hollow tube is a plastic hollow tube. Thus, using injection molding, the plastic hollow tubes are massively and rapidly produced to decrease the production cost and do not increase too much additional cost to the dehumidifier, whereby the present invention quite has competitiveness. In addition to the heat exchanger comprising plastic hollow tubes, the user can produce a heat exchanger made of other material such as metal tubes according to requirement. As long as the heat exchangers are conveniently produced and achieve the partially-bypass purpose, they have the same effect.
(19) The embodiments described above are only to exemplify the present invention but not to limit the scope of the present invention. Therefore, any equivalent modification or variation according to the shapes, structures, features, or spirit disclosed by the present invention is to be also included within the scope of the present invention.