CN217630342U - Drainage ditch structure - Google Patents

Drainage ditch structure Download PDF

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Publication number
CN217630342U
CN217630342U CN202221796680.9U CN202221796680U CN217630342U CN 217630342 U CN217630342 U CN 217630342U CN 202221796680 U CN202221796680 U CN 202221796680U CN 217630342 U CN217630342 U CN 217630342U
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China
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drainage
antifouling
water
plate
cavity
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CN202221796680.9U
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Chinese (zh)
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李雪
黄孝乐
樊新硕
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Beijing Jingcheng Huayu Architecture Design And Research Institute Co ltd
MCC Capital Engineering and Research Incorporation Ltd
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Beijing Jingcheng Huayu Architecture Design And Research Institute Co ltd
MCC Capital Engineering and Research Incorporation Ltd
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Abstract

The utility model discloses a escape canal structure, it relates to deodorant device technical field of sewage discharge, include: the upper end of the drainage channel is opened to form a drainage outlet, and a drainage cavity is formed in the drainage channel; the detachable cover plate is covered on the water outlet and is of a hollow structure, so that the discharged water can flow into the water discharge cavity through the cover plate; the detachable antifouling mechanisms are arranged in the drainage cavity and are uniformly distributed along the length direction of the drainage channel; wherein the anti-fouling mechanism has a reservoir capable of retaining at least part of the discharged water flowing into the drainage cavity so as to isolate the upper side of the anti-fouling mechanism from the air on the lower side. The utility model discloses a drainage ditch structure can effectively solve the anti-smelly, anti dirty bacterium problem of sewer, improves the sanitary safety of indoor environment.

Description

Drainage ditch structure
Technical Field
The utility model relates to a sewage discharge deodorization device technical field especially relates to a escape canal structure.
Background
At present, the indoor drainage ditch is generally a blind ditch and is arranged in some rooms with large drainage, such as a canteen kitchen, a water supply pump room, a hot water machine room, a fire pump room, a boiler room and the like. Wherein to like the dining room kitchen, for the comparatively high place of water pump room etc. to clean requirement, the use of escape canal can accumulate residue, spot, accumulates to have had much to breed the bacterium, some can be glutinous on the escape canal wall, the microorganism decomposes fermentation time for a long time and can decay and produce the smell, influences the indoor environment, still can influence food, drinking water safety even. At present, for providing a healthier, applicable and efficient living space, if the problem that the indoor drainage ditch smells back can be effectively solved, the indoor environment can be greatly improved, living foods and drinking water can be effectively prevented from being polluted, and safe, durable, healthy, comfortable and environment-friendly living can be realized. At present, the problem that the drainage ditch emits odor is solved by an effective method, a cleaning agent is usually adopted to clean and flush the drainage ditch regularly, but in the weather with higher temperature, due to the enhancement of the metabolic capability of microorganisms, even if frequent cleaning liquid cannot avoid odor from emitting indoors.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a can effectively solve the anti-smelly, anti-dirty bacterium problem of sewer, improve indoor sanitation and safety's escape canal structure.
The above object of the present invention can be achieved by the following technical solutions:
the utility model provides a drainage ditch structure, include:
the upper end of the drainage channel is opened to form a drainage outlet, and a drainage cavity is formed in the drainage channel;
the detachable cover plate is covered on the water outlet and is in a hollow structure, so that discharged water can flow into the water outlet cavity through the cover plate;
the detachable antifouling mechanisms are arranged in the drainage cavity and are uniformly distributed along the length direction of the drainage channel;
wherein the anti-fouling mechanism has a reservoir capable of retaining at least part of the discharged water flowing into the drainage cavity so as to isolate the upper side of the anti-fouling mechanism from the air on the lower side.
In a preferred embodiment, the anti-fouling mechanism comprises:
the water storage tank comprises a first antifouling plate, a second antifouling plate and a water storage tank, wherein one side end of the first antifouling plate is bent downwards and extends upwards to form a groove-shaped part, and sealing plates which are hermetically connected with the groove-shaped part are arranged at two ends of the groove-shaped part in the length direction of the groove-shaped part to form the water storage tank;
one side end of the second anti-fouling plate extends downwards to form a blocking part, and the blocking part extends into the water storage tank;
the first antifouling plate is fixedly connected with the second antifouling plate through the connecting parts, the connecting parts are uniformly distributed along the length direction of the water storage tank, and a water passing interval is formed between every two adjacent connecting parts, so that the discharged water can flow into the water storage tank.
In a preferred embodiment, the other side end of the first anti-fouling plate extends horizontally outwards to form a first bridging part, and the other side end of the second anti-fouling plate extends horizontally outwards to form a second bridging part;
the drainage ditch is in drainage mouth department is formed with erects the boss, first erect the portion with the second erect the portion and can correspond and erect on the boss, so that antifouling mechanism detachable sets up in the drainage cavity.
In a preferred embodiment, the cover plate comprises:
a plurality of cross bars arranged in parallel;
the drainage module comprises a plurality of transverse rods, a plurality of longitudinal rods, a plurality of drainage unit lattices and a plurality of hollow structures, wherein the plurality of longitudinal rods are arranged in parallel, the longitudinal rods are welded with the plurality of transverse rods simultaneously, the adjacent two transverse rods and the adjacent two longitudinal rods surround to form the drainage unit lattices, and the drainage unit lattices form the hollow structures so that the drainage water can flow into the drainage cavity through the cover plate.
In a preferred embodiment, the two cross bars on two sides of the cover plate are respectively erected on the first erection part and the second erection part of the plurality of anti-fouling mechanisms correspondingly, so that the cover plate is detachably covered on the water outlet.
In a preferred embodiment, a first predetermined distance is provided between the start end of the groove-shaped portion and the blocking portion, the first predetermined distance is between 50mm and 60mm, a second predetermined distance is provided between the end of the groove-shaped portion and the blocking portion, the second predetermined distance is between 50mm and 60mm, and the first predetermined distance is the same as the second predetermined distance.
In a preferred embodiment, the distance between two adjacent longitudinal bars is between 200mm and 220mm, the distance between two adjacent transverse bars is between 50mm and 55mm, and the distance between two adjacent transverse bars is smaller than the first preset distance.
In a preferred embodiment, the distance between the tail end of the groove-shaped part and the lower end edge of the blocking part in the vertical direction is 50mm to 60mm, and the distance between the lower end edge of the blocking part and the bottom end of the groove-shaped part is 50mm to 60 mm.
In a preferred embodiment, the antifouling mechanism is provided with sealing rubber strips on the lower side of the first frame part, the lower side of the second frame part, both side edges in the length direction of the first antifouling plate, and both side edges in the length direction of the second antifouling plate, so that the antifouling mechanism is sealed with the inner side wall of the drainage channel.
In a preferred embodiment, the drainage channel is connected to a municipal drainage system via a pipe, so that the drainage water in the drainage cavity can be drained via the pipe.
The utility model has the characteristics and advantages that:
through set up antifouling mechanism in the drainage cavity, after the discharge water flows into the drainage cavity, have partial discharge water to stay and store up in antifouling mechanism's catch basin, these discharge water that store up can block antifouling mechanism upside and downside circulation of air to can reduce effectively that the downside has during the dirty gas of stink and bacterium refluxes to the living environment, and then protected the health and safety of living environment.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic view of a part of the structure of the present invention.
Fig. 3 is a schematic side view of the overall structure of the present invention.
Fig. 4 is a schematic structural view of the antifouling mechanism of the present invention.
Fig. 5 is a schematic top view of the overall structure of the present invention.
Fig. 6 is a schematic view of the cover plate structure of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention. It will be understood that when an element is referred to as being "disposed on" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "mounted," "connected," and "connected" are to be construed broadly and may include, for example, mechanical or electrical connections, communications between two elements, direct connections, indirect connections through intermediaries, and the like. The terms "vertical," "horizontal," "upper," "lower," "left," "right," and the like as used herein are for illustrative purposes only and do not denote a unique embodiment.
Referring to fig. 1 to 3, the present invention provides a drainage ditch structure, including: the upper end of the drainage channel 1 is opened to form a drainage port 11, and a drainage cavity 12 is formed inside the drainage channel 1; the detachable cover plate 2 is covered on the water outlet 11, and the cover plate 2 is in a hollow structure, so that the discharged water can flow into the water discharging cavity 12 through the cover plate 2; the plurality of detachable antifouling mechanisms 3 are arranged in the drainage cavity 12, and the plurality of antifouling mechanisms 3 are uniformly distributed along the length direction of the drainage channel 1; wherein, the antifouling mechanism 3 is provided with a water storage tank 33, and the water storage tank 33 can store at least part of discharged water flowing into the drainage cavity 12 so as to isolate the upper side of the antifouling mechanism 3 from the air at the lower side.
To further explain the concrete structure of the drainage ditch structure of the embodiment of the present invention, the following further explains the connection relationship and the size limitation, etc., wherein:
referring to fig. 4 and 5, the anti-fouling mechanism 3 includes: a first antifouling plate 31, one side end of the first antifouling plate 31 is bent downwards and extends upwards to form a groove-shaped part 34, and two ends of the groove-shaped part 34 in the length direction are provided with sealing plates which are hermetically connected with the groove-shaped part 34 to form a water storage tank 33; a second antifouling board 32, one side end of the second antifouling board 32 extends downwards to form a blocking part 321, and the blocking part 321 extends into the water storage tank 33; the first anti-fouling plate 31 is fixedly connected with the second anti-fouling plate 32 through the connecting parts 35, the connecting parts 35 are uniformly distributed along the length direction of the water storage tank 33, and water passing intervals are formed between the adjacent connecting parts 35 so that discharged water can flow into the water storage tank 33;
referring to fig. 3 and 4, the other side end of the first anti-fouling plate 31 extends horizontally outward to form a first bridging portion 311, and the other side end of the second anti-fouling plate 32 extends horizontally outward to form a second bridging portion 321; the drainage channel 1 is provided with a mounting boss 13 at the drainage port 11, and the first mounting part 311 and the second mounting part 321 can be correspondingly mounted on the mounting boss 13, so that the antifouling mechanism 3 can be detachably arranged in the drainage cavity 12;
referring to fig. 6, the cover plate 2 includes: a plurality of cross bars 21 arranged in parallel; the drainage device comprises a plurality of longitudinal rods 22 which are arranged in parallel, wherein the longitudinal rods 22 are welded with a plurality of transverse rods 21 at the same time, two adjacent transverse rods 21 and two adjacent longitudinal rods 22 surround to form drainage cell lattices, and the drainage cell lattices form a hollow structure so that drainage water can flow into a drainage cavity 12 through a cover plate 2;
referring to fig. 3, two cross bars 21 at two sides of the cover plate 2 are respectively and correspondingly erected on the first erection portion 311 and the second erection portion 321 of the plurality of anti-fouling mechanisms 3, so that the cover plate 2 is detachably covered on the water outlet 11;
a first preset distance is reserved between the starting end of the groove-shaped part 34 and the blocking part 321, the first preset distance is 50 mm-60 mm, a second preset distance is reserved between the tail end of the groove-shaped part 34 and the blocking part 321, the second preset distance is 50 mm-60 mm, and the first preset distance and the second preset distance are the same;
the distance between two adjacent longitudinal bars 22 is 200mm to 220mm, the distance between two adjacent transverse bars 21 is 50mm to 55mm, and the distance between two adjacent transverse bars 21 is smaller than a first preset distance;
the distance between the tail end of the groove-shaped part 34 and the lower end edge of the blocking part 321 in the vertical direction is 50 mm-60 mm, and the distance between the lower end edge of the blocking part 321 and the bottom end of the groove-shaped part 34 is 50 mm-60 mm;
the antifouling mechanisms 3 are provided with sealing rubber strips on the lower side of the first frame part 311, the lower side of the second frame part 321, both side edges in the length direction of the first antifouling plate 31 and both side edges in the length direction of the second antifouling plate 32, so that the antifouling mechanisms 3 are sealed with the inner side wall of the drainage channel 1;
the drainage channel 1 is connected to a city drainage system through a pipe so that drainage water in the drainage chamber 12 can be drained through the pipe.
Based on above structural description, the utility model discloses escape canal structure has following beneficial effect:
1. by arranging the antifouling mechanism 3 in the drainage cavity 12, after the drainage water flows into the drainage cavity 12, part of the drainage water stays in the water storage tank 33 of the antifouling mechanism 3, and the accumulated drainage water can block the air circulation between the upper side and the lower side of the antifouling mechanism 3, so that the reverse flow of the foul gas with odor and bacteria on the lower side to the living environment can be effectively reduced, and the sanitary safety of the living environment is further protected;
2. the first erection part 311 and the second erection part 321 of the antifouling mechanism 3 are erected in the drainage cavity 12, and then the cover plate 2 is erected on the antifouling mechanism 3 through the first erection part 311 and the second erection part 321, so that the antifouling mechanism 3 and the cover plate 2 can be easily detached, and after the drainage ditch structure of the embodiment is used for a period of time, the cover plate 2 and the antifouling mechanism 3 can be detached and cleaned, so that the cleanness and sanitation during use can be further improved;
3. the way of forming the antifouling mechanisms 3 by the first antifouling plate 31 and the second antifouling plate 32 enables a plurality of antifouling mechanisms 3 to be conveniently manufactured and combined, and in actual use, the number of antifouling mechanisms 3 can be determined according to the length of the drainage channel 1, thereby facilitating the construction of a drainage system.
The above are merely exemplary embodiments of the present invention, and those skilled in the art can make various changes or modifications to the exemplary embodiments of the present invention according to the disclosure of the present application without departing from the spirit and scope of the present invention. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the description of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.

Claims (10)

1. A drainage ditch structure, comprising:
the upper end of the drainage channel is opened to form a drainage outlet, and a drainage cavity is formed in the drainage channel;
the detachable cover plate is covered on the water outlet and is of a hollow structure, so that the discharged water can flow into the water discharge cavity through the cover plate;
the detachable antifouling mechanisms are arranged in the drainage cavity and are uniformly distributed along the length direction of the drainage channel;
wherein the anti-fouling mechanism has a reservoir capable of retaining at least part of the discharged water flowing into the drainage cavity so as to isolate the upper side of the anti-fouling mechanism from the air on the lower side.
2. The drain structure of claim 1, wherein the anti-fouling mechanism comprises:
the water storage tank comprises a first antifouling plate, a second antifouling plate and a water storage tank, wherein one side end of the first antifouling plate is bent downwards and extends upwards to form a groove-shaped part, and sealing plates which are hermetically connected with the groove-shaped part are arranged at two ends of the groove-shaped part in the length direction of the groove-shaped part to form the water storage tank;
one side end of the second anti-fouling plate extends downwards to form a blocking part, and the blocking part extends into the water storage tank;
the first antifouling plate is fixedly connected with the second antifouling plate through the connecting parts, the connecting parts are uniformly distributed along the length direction of the water storage tank, and a water passing interval is formed between every two adjacent connecting parts, so that the discharged water can flow into the water storage tank.
3. The drainage ditch structure according to claim 2, wherein the other side end of the first antifouling plate extends horizontally outward to form a first bridge portion, and the other side end of the second antifouling plate extends horizontally outward to form a second bridge portion;
the drainage ditch is in drainage mouth department is formed with erects the boss, first erect the portion with the second erect the portion and can correspond and erect on the boss, so that antifouling mechanism detachable sets up in the drainage cavity.
4. The drain structure of claim 3, wherein the cover plate comprises:
a plurality of cross bars arranged in parallel;
the drainage module comprises a plurality of transverse rods, a plurality of longitudinal rods, a plurality of drainage unit lattices and a plurality of hollow structures, wherein the plurality of longitudinal rods are arranged in parallel, the longitudinal rods are welded with the plurality of transverse rods simultaneously, the adjacent two transverse rods and the adjacent two longitudinal rods surround to form the drainage unit lattices, and the drainage unit lattices form the hollow structures so that the drainage water can flow into the drainage cavity through the cover plate.
5. The drainage gutter structure according to claim 4, wherein two of said cross bars on both sides of said cover plate are erected on said first erected portion and said second erected portion of said plurality of antifouling mechanisms, respectively, so that said cover plate is detachably placed over said drain opening.
6. The drainage ditch structure of claim 5, wherein the slot-shaped portion has a first predetermined distance between a start end thereof and the blocking portion, the first predetermined distance being between 50mm and 60mm, and a second predetermined distance between a tail end thereof and the blocking portion, the second predetermined distance being between 50mm and 60mm, and the first predetermined distance being equal to the second predetermined distance.
7. The drain structure of claim 6, wherein the spacing between adjacent longitudinal bars is between 200mm and 220mm, the spacing between adjacent transverse bars is between 50mm and 55mm, and the spacing between adjacent transverse bars is less than the first predetermined distance.
8. The drain structure of claim 7, wherein the spacing between the end of the trough portion and the lower edge of the barrier portion in the vertical direction is between 50mm and 60mm, and the spacing between the lower edge of the barrier portion and the bottom end of the trough portion is between 50mm and 60 mm.
9. The drainage gutter structure according to claim 8, wherein the antifouling mechanism is provided with sealing rubber strips on the lower side of the first frame portion, the lower side of the second frame portion, both lengthwise side edges of the first antifouling plate, and both lengthwise side edges of the second antifouling plate, so that the antifouling mechanism is sealed against the inner side wall of the drainage gutter.
10. The drain structure of claim 9, wherein said drain channel is connected to a municipal drainage system by a conduit so that said drain water in said drain cavity can drain through said conduit.
CN202221796680.9U 2022-07-13 2022-07-13 Drainage ditch structure Active CN217630342U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221796680.9U CN217630342U (en) 2022-07-13 2022-07-13 Drainage ditch structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221796680.9U CN217630342U (en) 2022-07-13 2022-07-13 Drainage ditch structure

Publications (1)

Publication Number Publication Date
CN217630342U true CN217630342U (en) 2022-10-21

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ID=83634697

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221796680.9U Active CN217630342U (en) 2022-07-13 2022-07-13 Drainage ditch structure

Country Status (1)

Country Link
CN (1) CN217630342U (en)

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