CN209557958U - A kind of hydrological monitoring water flow velocity measurement servicing unit - Google Patents

A kind of hydrological monitoring water flow velocity measurement servicing unit Download PDF

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Publication number
CN209557958U
CN209557958U CN201920084408.XU CN201920084408U CN209557958U CN 209557958 U CN209557958 U CN 209557958U CN 201920084408 U CN201920084408 U CN 201920084408U CN 209557958 U CN209557958 U CN 209557958U
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China
Prior art keywords
fixed
fixedly connected
water flow
flow velocity
balladeur train
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Expired - Fee Related
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CN201920084408.XU
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Chinese (zh)
Inventor
张甲
冯泽玉
廉伟
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Individual
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Individual
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Abstract

The utility model relates to a kind of auxiliary devices, it in particular is a kind of hydrological monitoring water flow velocity measurement servicing unit, including chassis mechanism, rotation framework and expansion link mechanism, it can use the device to fix water flow speed measurer, water flow speed measurer can be moved to from bank by telescopic rod the position that need to measure flow velocity, and placed angle can be adjusted using the rotation of motor and rotation screw rod pivoted housing with geographical location according to actual needs, the device is suitable for medium or smallsized river and measures flow velocity, structure is simple, is convenient for carrying.

Description

A kind of hydrological monitoring water flow velocity measurement servicing unit
Technical field
The utility model relates to a kind of auxiliary devices, are in particular a kind of hydrological monitoring water flow velocity measurement auxiliary dresses It sets.
Background technique
The flow velocity of water is measured and needs to use water flow speed measurer, and water outlet can be calculated according to measurement gained flow velocity Flow, obtained volume of data has definite meaning, tradition to geologic change, climatic effect etc. near research waters The method of measurement flow velocity is to drive ship water flow speed measurer is thrown to the waters position that need to be measured, and for some middle-size and small-size River, ship can not drive into, and just need to be measured water flow velocity with water flow velocity measurement servicing unit using a kind of hydrological monitoring at this time Instrument, which is placed into river from bank, need to measure the position of water speed.
Utility model content
The purpose of the utility model is to provide a kind of hydrological monitoring water flow velocity measurement servicing units, can use the device Water flow speed measurer is fixed, and is moved to the position that need to measure flow velocity, and placement can be adjusted in geographical location according to actual needs Angle is applicable in medium or smallsized river measurement.
The purpose of this utility model is achieved through the following technical solutions:
A kind of hydrological monitoring water flow velocity measurement servicing unit, including chassis mechanism, rotation framework and expansion link mechanism, institute Stating chassis mechanism includes that support frame plates, slide slot, transmission upright bar hole, bull stick hole and support transverse slat, slide slot are arranged in support frame The front side of plate upper end is driven upright bar hole and bull stick hole and is arranged at the front side of support frame plates upper end from back to front, and support transverse slat is set Set the downside in support frame plates left end;
The rotation framework include motor, bevel gear I, transmission upright bar, bevel gear II, fixed turn trough I, transmission gear, Bull stick, fixed turn trough II and driven gear, bevel gear I are fixedly connected on the front end of motor, and bevel gear II is fixedly connected on biography The middle-end of transmission upright bar, transmission gear is arranged in the lower end of dynamic upright bar, II engaged transmission of bevel gear I and bevel gear, fixed turn trough I It is fixedly connected on the upper end of transmission upright bar, the middle-end of bull stick is arranged in fixed turn trough II, and driven gear is fixedly connected on bull stick Upper end, driven gear and transmission gear engaged transmission, the lower end of motor are fixedly connected on the lower end of support frame plates, fixed turn trough It is rotatably connected to transmission upright bar hole in I, is rotatably connected to bull stick hole in fixed turn trough II;
The expansion link mechanism includes that telescopic rod, balladeur train, balladeur train set, screw rod, screw rod pivoted housing, fixed change and cylinder are sliding Cake, the upper end of balladeur train are fixedly connected on the right side of telescopic rod lower end, and the lower end of balladeur train is slidably connected in balladeur train set, screw rod it is upper End is fixedly connected on the upper end of balladeur train, and the lower end of screw rod is rotatably connected in screw rod pivoted housing, and the lower end of screw rod pivoted housing is fixedly connected There is the upper end of fixed change, the lower end of fixed change is rotatably connected on the lower end of balladeur train set, and the upper end of the sliding cake of cylinder is fixedly connected In the lower end of balladeur train set, the sliding cake of cylinder is slidably connected in slide slot.
As advanced optimizing for the technical program, a kind of hydrological monitoring of the utility model water flow velocity measures auxiliary dress It sets, the chassis mechanism further includes drag link sleeve, pull rod, knob and idler wheel, and there are two the drag link sleeve settings, two drag link sleeves point It is not fixedly connected on the front and rear sides of support frame plates upper end, the rear and front end of pull rod is slidably connected at respectively in two drag link sleeves, Knob is fixedly connected on the upper end of pull rod, and there are two the idler wheel settings, and two idler wheels are rotatably connected under support frame plates respectively The front and rear sides at end.
As advanced optimizing for the technical program, a kind of hydrological monitoring of the utility model water flow velocity measures auxiliary dress It sets, the rotation framework further includes connecting rod, and the lower end of connecting rod is fixedly connected on the upper end of driven gear, the right end of telescopic rod It is hinged with the upper end of connecting rod.
As advanced optimizing for the technical program, a kind of hydrological monitoring of the utility model water flow velocity measures auxiliary dress It sets, the expansion link mechanism further includes fixed connecting rod, and the upper end of fixed connecting rod is rotatably connected on the left end of telescopic rod.
As advanced optimizing for the technical program, a kind of hydrological monitoring of the utility model water flow velocity measures auxiliary dress It sets, the expansion link mechanism further includes fixed frame, fixed plate and fixed spiral shell, and the fixed plate is arranged two, two fixed plates point It is not slidably connected at the left and right sides for determining frame lower end, there are two the fixing bolt settings, two fixing bolts company of rotation respectively It connects in two fixed plates.
A kind of hydrological monitoring water flow velocity measurement servicing unit of the utility model has the beneficial effect that
It can use the device to fix water flow speed measurer, it can be mobile by water flow speed measurer by telescopic rod from bank To the position that need to measure flow velocity, and the rotation of motor and rotation screw rod pivoted housing tune can be utilized with geographical location according to actual needs Placed angle is saved, which is suitable for medium or smallsized river and measures flow velocity, and structure is simple, is convenient for carrying.
Detailed description of the invention
The utility model is described in more detail with specific implementation method with reference to the accompanying drawing.
Fig. 1 is a kind of overall structure diagram of hydrological monitoring water flow velocity measurement servicing unit of the utility model;
Fig. 2 is the structural schematic diagram of the chassis mechanism of the utility model;
Fig. 3 is the structural schematic diagram of the rotation framework of the utility model;
Fig. 4 is the structural schematic diagram of the expansion link mechanism of the utility model;
Fig. 5 is the structural schematic diagram one of the expansion link mechanism part of the utility model;
Fig. 6 is the structural schematic diagram two of the expansion link mechanism part of the utility model.
In figure: chassis mechanism 1;Support frame plates 1-1;Drag link sleeve 1-2;Pull rod 1-3;Shake hands 1-4;Slide slot 1-5;Transmission is vertical Rod aperture 1-6;Bull stick hole 1-7;Support transverse slat 1-8;Idler wheel 1-9 rotates framework 2;Motor 2-1;I 2-2 of bevel gear;It is driven upright bar 2-3;II 2-4 of bevel gear;Fixed I 2-5 of turn trough;Transmission gear 2-6;Bull stick 2-7;Fixed II 2-8 of turn trough;Driven gear 2-9;Even Extension bar 2-10;Expansion link mechanism 3;Telescopic rod 3-1;Balladeur train 3-2;Balladeur train covers 3-3;Screw rod 3-4;Screw rod pivoted housing 3-5;Fixed change 3-6;Cylinder slides cake 3-7;Fixed connecting rod 3-8;Fixed frame 3-9;Fixed plate 3-10;Fixing bolt 3-11.
Specific embodiment
The utility model is described in further detail with reference to the accompanying drawing.
Specific embodiment 1:
Illustrate present embodiment, a kind of hydrological monitoring water flow velocity measurement servicing unit, including chassis below with reference to Fig. 1-6 Mechanism 1, rotation framework 2 and expansion link mechanism 3, can use the device and fix water flow speed measurer, can be from bank by stretching Water flow speed measurer is moved to the position that need to measure flow velocity by contracting bar 3-1, and can utilize electricity with geographical location according to actual needs The rotation of motivation 2-1 and rotation screw rod pivoted housing 3-5 adjust placed angle, which is suitable for medium or smallsized river and measures flow velocity, knot Structure is simple, is convenient for carrying, and the chassis mechanism 1 includes support frame plates 1-1, slide slot 1-5, transmission upright bar hole 1-6, bull stick hole 1- 7 are arranged in the front side of the upper end support frame plates 1-1 with support transverse slat 1-8, slide slot 1-5, are driven upright bar hole 1-6 and bull stick hole 1-7 It is arranged at the front side of the upper end support frame plates 1-1 from back to front, support transverse slat 1-8 is arranged under the left end support frame plates 1-1 Side;
The rotation framework 2 includes motor 2-1, I 2-2 of bevel gear, transmission upright bar 2-3, II 2-4 of bevel gear, fixed turn I 2-5 of slot, transmission gear 2-6, bull stick 2-7, fixed turn trough II 2-8 and driven gear 2-9, I 2-2 of bevel gear are fixedly connected on electricity The front end of motivation 2-1, motor 2-1 have the function of that band-type brake, II 2-4 of bevel gear are fixedly connected on the lower end of transmission upright bar 2-3, cone The middle-end of transmission upright bar 2-3, transmission gear 2-6 is arranged in I 2-2 of gear and II 2-4 of bevel gear engaged transmission, fixed I 2-5 of turn trough It is fixedly connected on the upper end of transmission upright bar 2-3, the middle-end of bull stick 2-7 is arranged in fixed II 2-8 of turn trough, and driven gear 2-9 is fixed It is connected to the upper end of bull stick 2-7, driven gear 2-9 and transmission gear 2-6 engaged transmission, the lower end of motor 2-1 is fixedly connected Transmission upright bar hole 1-6, rotation in fixed II 2-8 of turn trough are rotatably connected in the lower end of support frame plates 1-1, fixed I 2-5 of turn trough It is connected with bull stick hole 1-7;
The expansion link mechanism 3 includes telescopic rod 3-1, balladeur train 3-2, balladeur train set 3-3, screw rod 3-4, screw rod pivoted housing 3-5, consolidates Determine change 3-6 and the sliding cake 3-7 of cylinder, the upper end of balladeur train 3-2 is fixedly connected on the right side of the lower end telescopic rod 3-1, telescopic rod 3-1 Has the function of self-retaining after flexible, the lower end of balladeur train 3-2 is slidably connected in balladeur train set 3-3, and the upper end of screw rod 3-4 is fixedly connected In the upper end of balladeur train 3-2, the lower end of screw rod 3-4 is rotatably connected in screw rod pivoted housing 3-5, and the lower end of screw rod pivoted housing 3-5 is fixed to be connected It is connected to the upper end of fixed change 3-6, the lower end of fixed change 3-6 is rotatably connected on the lower end of balladeur train set 3-3, the sliding cake 3-7 of cylinder Upper end be fixedly connected on the lower end of balladeur train set 3-3, the sliding cake 3-7 of cylinder is slidably connected in slide slot 1-5.
Specific embodiment 2:
Illustrate that present embodiment, present embodiment are described further embodiment one below with reference to Fig. 1-6, the bottom Frame mechanism 1 further includes drag link sleeve 1-2, pull rod 1-3, knob 1-4 and idler wheel 1-9, and there are two the drag link sleeve 1-2 settings, and two Drag link sleeve 1-2 is respectively fixedly connected with the front and rear sides in the upper end support frame plates 1-1, the rear and front end of the pull rod 1-3 company of sliding respectively It connecing in two drag link sleeve 1-2, knob 1-4 is fixedly connected on the upper end of pull rod 1-3, and there are two the idler wheel 1-9 settings, and two Idler wheel 1-9 is rotatably connected on the front and rear sides of the lower end support frame plates 1-1, rod set 1-2, pull rod 1-3, knob 1-4 and idler wheel respectively The setting of 1-9, which facilitates, is pulled to device in different places, to be convenient for measuring flow velocity.
Specific embodiment 3:
Illustrate that present embodiment, present embodiment are described further embodiment two below with reference to Fig. 1-6, the rotation Pivoted frame structure 2 further includes connecting rod 2-10, and the lower end of connecting rod 2-10 is fixedly connected on the upper end of driven gear 2-9, telescopic rod 3- The upper end of 1 right end and connecting rod 2-10 is hinged.
Specific embodiment 4:
Illustrate present embodiment below with reference to Fig. 1-6, present embodiment is described further embodiment three, described to stretch Rod reducing machine structure 3 further includes fixed connecting rod 3-8, and the upper end of fixed connecting rod 3-8 is rotatably connected on the left end of telescopic rod 3-1.
Specific embodiment 5:
Illustrate present embodiment below with reference to Fig. 1-6, present embodiment is described further embodiment four, described to stretch Rod reducing machine structure 3 further includes that fixed frame 3-9, fixed plate 3-10 and fixing bolt 3-11, the fixed plate 3-10 are arranged two, two Fixed plate 3-10 is slidably connected at the left and right sides for determining the lower end frame 3-9 respectively, and there are two the fixing bolt 3-11 settings, and two Fixing bolt 3-11 passes through threads turn respectively and is connected on two fixed plate 3-10.
A kind of hydrological monitoring water flow velocity measurement servicing unit of the utility model, its working principle is that:
The both ends of water flow speed measurer are respectively placed at left and right sides of the lower end fixed frame 3-9 and two fixed plate 3- first Between 10, two fixing bolt 3-11 are rotated, make two fixing bolt 3-11 with axial downward movement, and then make two fixed spiral shells The both ends that water flow speed measurer is clamped at left and right sides of the lower end of bolt 3-11 and the lower end fixed frame 3-9 are with screw rod pivoted housing 3-5 axis Center line rotates clockwise screw rod pivoted housing 3-5, and screw rod pivoted housing 3-5 is connect with screw rod 3-4 by threads turn, screw rod pivoted housing 3-5 Movement drive screw rod 3-4 using screw rod pivoted housing 3-5 axis be center line rotate and it is moved axially upward, screw rod 3-4 promotion balladeur train 3-2 is moved axially upward along balladeur train set 3-3, and balladeur train 3-2 pushes telescopic rod 3-1 to be rotated up and raises, and allows water flow speed measurer height In the water surface, pull the front end telescopic rod 3-1 that suitable location is set in telescopic rod 3-1 elongation at this time, rotating counterclockwise screw rod pivoted housing 3-5 makes Water flow speed measurer is down to the water surface, to be convenient for measuring water flow velocity, opens motor 2-1, motor 2-1 rotation band dynamic bevel gear I 2-2 is rotated by center line of its axis, and I 2-2 of bevel gear band II 2-4 of dynamic bevel gear is turned using being driven upright bar 2-3 axis as center line Dynamic, II 2-4 of bevel gear is rotated using being driven upright bar 2-3 axis as center line by transmission upright bar 2-3 band nutating gear 2-6, is passed Moving gear 2-6 drive driven gear 2-9 using bull stick 2-7 axis be center line rotate, driven gear 2-9 drive connecting rod 2-10 with Bull stick 2-7 axis is the rotation of center line, and connecting rod 2-10 drives telescopic rod 3-1 to rotate by center line of connecting rod 2-10 axis, Telescopic rod 3-1 drives balladeur train 3-2 to make equal angular change, and balladeur train 3-2 drives balladeur train set 3-3 to do same movement, and balladeur train covers 3-3 band The dynamic sliding cake 3-7 of cylinder is slided in slide slot 1-5, and the i.e. changeable water flow speed measurer placed angle of the above movement, measurement finishes After telescopic rod 3-1 can be removed from connecting rod 2-10 to facilitate pull unit mobile.
Certainly, above description is not limitation of the utility model, and the utility model is also not limited to the example above, this skill The variations, modifications, additions or substitutions that the those of ordinary skill in art field is made in the essential scope of the utility model, also belong to In the protection scope of the utility model.

Claims (5)

1. a kind of hydrological monitoring water flow velocity measurement servicing unit, including chassis mechanism (1), rotation framework (2) and telescopic rod machine Structure (3), it is characterised in that: the chassis mechanism (1) includes support frame plates (1-1), slide slot (1-5), transmission upright bar hole (1- 6), bull stick hole (1-7) and support transverse slat (1-8), in the front side of the upper end support frame plates (1-1), transmission is vertical for slide slot (1-5) setting Rod aperture (1-6) and bull stick hole (1-7) are arranged at the front side of the upper end support frame plates (1-1) from back to front, and support transverse slat (1-8) is set Set the downside in the left end support frame plates (1-1);
The rotation framework (2) include motor (2-1), bevel gear I (2-2), transmission upright bar (2-3), bevel gear II (2-4), Fixed turn trough I (2-5), transmission gear (2-6), bull stick (2-7), fixed turn trough II (2-8) and driven gear (2-9), bevel gear I (2-2) is fixedly connected on the front end of motor (2-1), and bevel gear II (2-4) is fixedly connected on the lower end of transmission upright bar (2-3), The middle-end in transmission upright bar (2-3) is arranged in bevel gear I (2-2) and bevel gear II (2-4) engaged transmission, fixed turn trough I (2-5), Transmission gear (2-6) is fixedly connected on the upper end of transmission upright bar (2-3), and fixed turn trough II (2-8) is arranged in bull stick (2-7) End, driven gear (2-9) are fixedly connected on the upper end of bull stick (2-7), and driven gear (2-9) engages biography with transmission gear (2-6) Dynamic, the lower end of motor (2-1) is fixedly connected on the lower end of support frame plates (1-1), is rotatably connected in fixed turn trough I (2-5) It is driven upright bar hole (1-6), is rotatably connected to bull stick hole (1-7) in fixed turn trough II (2-8);
The expansion link mechanism (3) includes telescopic rod (3-1), balladeur train (3-2), balladeur train set (3-3), screw rod (3-4), screw rod pivoted housing (3-5), fixed change (3-6) and cylinder are sliding cake (3-7), and the upper end of balladeur train (3-2) is fixedly connected on the lower end telescopic rod (3-1) Right side, the lower end of balladeur train (3-2) are slidably connected in balladeur train set (3-3), and the upper end of screw rod (3-4) is fixedly connected on balladeur train (3- 2) upper end, the lower end of screw rod (3-4) are rotatably connected in screw rod pivoted housing (3-5), and the lower end of screw rod pivoted housing (3-5) is fixedly connected There is the upper end of fixed change (3-6), the lower end of fixed change (3-6) is rotatably connected on the lower end of balladeur train set (3-3), the sliding cake of cylinder The upper end of (3-7) is fixedly connected on the lower end of balladeur train set (3-3), and cylinder sliding cake (3-7) is slidably connected in slide slot (1-5).
2. a kind of hydrological monitoring water flow velocity measurement servicing unit according to claim 1, it is characterised in that: the chassis Mechanism (1) further includes that drag link sleeve (1-2), pull rod (1-3), knob (1-4) and idler wheel (1-9), the drag link sleeve (1-2) are provided with Two, two drag link sleeves (1-2) are respectively fixedly connected in the front and rear sides of the upper end support frame plates (1-1), the front and back of pull rod (1-3) Both ends are slidably connected at respectively in two drag link sleeves (1-2), and knob (1-4) is fixedly connected on the upper end of pull rod (1-3), the rolling It takes turns there are two (1-9) settings, two idler wheels (1-9) are rotatably connected on the front and rear sides of the lower end support frame plates (1-1) respectively.
3. a kind of hydrological monitoring water flow velocity measurement servicing unit according to claim 1, it is characterised in that: the rotation Framework (2) further includes connecting rod (2-10), and the lower end of connecting rod (2-10) is fixedly connected on the upper end of driven gear (2-9), stretches The right end of contracting bar (3-1) and the upper end of connecting rod (2-10) are hinged.
4. a kind of hydrological monitoring water flow velocity measurement servicing unit according to claim 1, it is characterised in that: described flexible Linkage (3) further includes fixed connecting rod (3-8), and the upper end of fixed connecting rod (3-8) is rotatably connected on the left end of telescopic rod (3-1).
5. a kind of hydrological monitoring water flow velocity measurement servicing unit according to claim 4, it is characterised in that: described flexible Linkage (3) further includes fixed frame (3-9), fixed plate (3-10) and fixing bolt (3-11), fixed plate (3-10) setting Two, two fixed plates (3-10) are slidably connected at the left and right sides for determining the lower end frame (3-9), the fixing bolt (3-11) respectively There are two settings, and two fixing bolts (3-11) are rotatably connected on respectively on two fixed plates (3-10).
CN201920084408.XU 2019-01-18 2019-01-18 A kind of hydrological monitoring water flow velocity measurement servicing unit Expired - Fee Related CN209557958U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920084408.XU CN209557958U (en) 2019-01-18 2019-01-18 A kind of hydrological monitoring water flow velocity measurement servicing unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920084408.XU CN209557958U (en) 2019-01-18 2019-01-18 A kind of hydrological monitoring water flow velocity measurement servicing unit

Publications (1)

Publication Number Publication Date
CN209557958U true CN209557958U (en) 2019-10-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920084408.XU Expired - Fee Related CN209557958U (en) 2019-01-18 2019-01-18 A kind of hydrological monitoring water flow velocity measurement servicing unit

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20191029

Termination date: 20210118

CF01 Termination of patent right due to non-payment of annual fee