CN214149493U - Portable water level measuring device for hydraulic engineering reservoir operation management - Google Patents

Portable water level measuring device for hydraulic engineering reservoir operation management Download PDF

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Publication number
CN214149493U
CN214149493U CN202120466889.8U CN202120466889U CN214149493U CN 214149493 U CN214149493 U CN 214149493U CN 202120466889 U CN202120466889 U CN 202120466889U CN 214149493 U CN214149493 U CN 214149493U
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CN
China
Prior art keywords
water level
hydraulic engineering
stabilizer blade
line
tripod
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Expired - Fee Related
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CN202120466889.8U
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Chinese (zh)
Inventor
李士柱
冯伟剑
张宪凯
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Individual
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Individual
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Abstract

The utility model provides a hydraulic engineering reservoir operation management is with portable water level measurement device mainly relates to hydraulic engineering technical field. Portable water level measurement device is used in hydraulic engineering reservoir operation management, including the tripod, swing joint vertical branch in the tripod, vertical branch top sets up the rack, place on the rack and stretch and zoom the line pole, every section stretches out stretch and zoom the line pole end and be provided with the wire loop, stretch and zoom and install the spooler on the line pole, the winding has the measuring line in the spooler, measuring line end fixedly connected with weighs down the needle, stretches and zooms movable mounting on the line pole and has monocular. The beneficial effects of the utility model reside in that: the utility model can support the line-laying rod through the tripod, carry out line-laying type water level measurement on the water level at a proper position on the bank of the reservoir, read the numerical value of the measuring line through the monocular, and improve the water level measuring efficiency; the tripod, the wire laying rod and other components can be flexibly adjusted and retracted, and the use and the carrying are convenient.

Description

Portable water level measuring device for hydraulic engineering reservoir operation management
Technical Field
The utility model mainly relates to a hydraulic engineering technical field specifically is a hydraulic engineering reservoir operation management is with portable water level measuring device.
Background
Hydraulic engineering is an engineering built for controlling and allocating surface water and underground water in the nature to achieve the purposes of removing harmful substances and benefiting benefits, and is also called water engineering. Water is a valuable resource essential for human production and life, but its naturally occurring state does not completely meet the needs of human beings. Only when hydraulic engineering is built, water flow can be controlled, flood disasters are prevented, and water quantity is adjusted and distributed to meet the requirements of people on water resources in life and production.
When the hydraulic engineering reservoir is operated and managed, the water level needs to be measured regularly, at present, a water level ruler is generally used for directly extending into the bottom of the reservoir to be measured, but the length of the ruler is possibly insufficient when the water is deep, and the measurement is difficult; at present, some electronic water level gauges of ultrasonic waves and radars can measure the water level, but the manufacturing cost and the selling price of the electronic water level gauges of the ultrasonic waves and the radars are very high and cannot be accepted by most users; some water level measuring devices with lower purchase cost have complex structures and are inconvenient to carry and use, so a portable water level measuring device for hydraulic engineering reservoir operation management is needed.
SUMMERY OF THE UTILITY MODEL
In order to solve the defects of the prior art, the utility model provides a portable water level measuring device for the operation management of a hydraulic engineering reservoir, which can support a wire laying rod through a tripod, carry out wire laying type water level measurement on the water level at any proper position on the bank of the reservoir, read the numerical value of a measuring line through a monocular, and greatly improve the water level measuring efficiency; the components such as the tripod, the pay-off rod, the monocular and the like can be flexibly adjusted and retracted, and the use and the carrying are convenient.
The utility model discloses a realize above-mentioned purpose, realize through following technical scheme:
the utility model provides a hydraulic engineering reservoir operation management is with portable water level measurement device, includes the tripod, swing joint vertical branch in the tripod, vertical branch top sets up the rack, place on the rack and stretch the line pole of zooming, stretch and be provided with the multisection in the line pole of zooming, every section stretches out stretch and zoom the line pole end and be provided with the wire loop, stretch and zoom and install the spooler on the line pole, the winding has the measuring wire in the spooler, the measuring wire passes the wire loop in proper order, the terminal fixedly connected with of measuring wire weighs down the needle, it has monocular to stretch movable mounting on the line pole of zooming.
The tripod includes the triangle-shaped platform, sliding connection longitudinal strut in the triangle-shaped platform, the outside circumference symmetry of triangle-shaped platform sets up three scalable stabilizer blades of group, scalable stabilizer blade includes stabilizer blade, lower stabilizer blade, it rotates to connect in the triangle-shaped platform outside to go up the stabilizer blade, stabilizer blade sliding connection is outside at last stabilizer blade down, go up the stabilizer blade lower part and offer a plurality of interior locating holes, a plurality of outer locating holes are offered on lower stabilizer blade upper portion, it sets up the card end to go up the stabilizer blade top, triangle-shaped platform one end sets up high positioning bolt, a plurality of high locating holes are offered at the longitudinal strut middle part.
The rack comprises a rectangular plate, an upper hook and a lower hook are arranged on two sides of the rectangular plate respectively, a knob fixing bolt is arranged at the top of the longitudinal supporting rod, and the rectangular plate is fixed at the top of the longitudinal supporting rod through the knob fixing bolt.
One side of the monocular is provided with a connecting groove, a ball head connecting piece is connected in the connecting groove in a sliding mode, and one end of the ball head connecting piece is fixedly connected with a compression ring.
The vertical supporting rod is provided with an auxiliary supporting rod through a bolt and a clamp, the auxiliary supporting rod is L-shaped, and a supporting chuck is arranged at the top of the auxiliary supporting rod.
Contrast prior art, the beneficial effects of the utility model are that:
the utility model can support the line-laying rod through the tripod, carry out line-laying type water level measurement on the water level at any proper position on the bank of the reservoir, read the numerical value of the measuring line through the monocular, and improve the water level measuring efficiency; the components such as the tripod, the pay-off rod, the monocular and the like can be flexibly adjusted and retracted, and the use and the carrying are convenient.
Drawings
Fig. 1 is a schematic view of a first view structure of the present invention;
FIG. 2 is a schematic side view of the present invention;
fig. 3 is a schematic view of a second view structure of the present invention;
fig. 4 is a schematic view of a third view structure of the present invention;
FIG. 5 is a schematic view of a partially enlarged structure of part A of the present invention;
FIG. 6 is a schematic view of a partially enlarged structure of part B of the present invention;
FIG. 7 is a schematic view of a partially enlarged structure of the part C of the present invention;
FIG. 8 is a schematic view of a partially enlarged structure of the part D of the present invention;
figure 9 is the structure sketch map after the utility model discloses tripod is packed up.
Reference numerals shown in the drawings: 1. a tripod; 2. a longitudinal strut; 3. placing a rack; 4. a telescopic wire rod; 5. a wire loop; 6. a winder; 7. measuring a line; 8. dropping the needle; 9. a monocular; 10. a triangular platform; 11. an upper leg; 12. a lower leg; 13. inner positioning holes; 14. an outer positioning hole; 15. a blocking end; 16. a height positioning bolt; 20. a height positioning hole; 21. an auxiliary support bar; 22. supporting the chuck; 31. a rectangular plate; 32. hooking; 33. hooking; 34. knob fixing bolt 61, wire cup; 62. a rocking handle; 63. a flywheel; 64. wire blocking; 65. a wire guide wheel; 91. connecting grooves; 92. a ball head connecting piece; 93. and (5) pressing a ring.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific embodiments. It should be understood that these examples are for illustrative purposes only and are not intended to limit the scope of the present invention. Furthermore, it should be understood that various changes or modifications of the present invention may be made by those skilled in the art after reading the teachings of the present invention, and these equivalents also fall within the scope defined in the present application.
Example 1:
with reference to the accompanying drawings 1-9, a portable water level measuring device for hydraulic engineering reservoir operation management, including tripod 1, swing joint vertical branch 2 in the tripod 1, vertical branch 2 top sets up rack 3, place on the rack 3 and stretch and contract line pole 4, be provided with the multisection in the stretch and contract line pole 4, every section stretches out stretch and contract 4 end of line pole is provided with wire loop 5, stretch and contract and install spooler 6 on the line pole 4, the winding has measuring line 7 in the spooler 6, measuring line 7 passes wire loop 5 in proper order, 7 end fixedly connected with of measuring line weigh down needle 8, swing joint has monocular 9 on the stretch and contract line pole 4. The winder adopts prior art spinning wheel, and spinning wheel structure includes wire cup 61, and wire cup one side sets up rocking handle 62, rotates on the wire cup and sets up flywheel 63, and rocking handle 62 rotates in the wire cup and connects flywheel 63, and the flywheel front side rotates and connects wire fender 64, and the flywheel sets up wire wheel 65 with the wire fender junction, opens the wire fender during the use and can emit the line, closes the wire fender and rotates rocking handle and make the flywheel rotate, and the wire wheel can twine the measuring line on the wire cup when the flywheel rotates. The drop needle is the outside and roughly is the aciculiform, and this shape can make the measuring wire under water drop off the production line fast and prevent to take place to scrape with aquatic weeds etc. when receiving the line and lead to can't withdrawing the line. The measuring line is provided with corresponding scale marking lines, and the scale marking lines can be observed through a monocular telescope after the measuring line enters water so as to determine the depth of entering water.
Tripod 1 includes triangle-shaped platform 10, sliding connection longitudinal strut 2 in triangle-shaped platform 10, triangle-shaped platform 10 outside circumference symmetry sets up three scalable stabilizer blades of group, scalable stabilizer blade includes stabilizer blade 11, lower stabilizer blade 12, it rotates to connect in triangle-shaped platform 10 outsidely to go up stabilizer blade 11, lower stabilizer blade 12 sliding connection is outside at last stabilizer blade 11, it sets up a plurality of interior locating holes 13 to go up stabilizer blade 11 lower part, a plurality of outer locating holes 14 are seted up on 12 upper portions of lower stabilizer blade, it sets up only end 15 to go up 11 tops of stabilizer blade, triangle-shaped platform 10 one end sets up high positioning bolt 16, a plurality of high locating hole 20 are seted up at 2 middle parts of longitudinal strut. After the extension lengths of the upper support leg and the lower support leg are adjusted according to requirements, one group of aligned inner positioning holes and one group of aligned outer positioning holes are plugged by using positioning plugs so as to fix the length of the support leg. After the supporting legs are opened, the clamping ends are abutted against the outer wall of the triangular platform, and the opening angle of the supporting legs can be fixed through the mode. The corresponding height of longitudinal strut is adjusted according to the user demand, for example, the height of the telescopic line pole is higher than the height of the reservoir side guardrail, the height of the longitudinal strut is adjusted to be as low as possible to reduce the stability of the central improving device on the premise of meeting the user demand, and the height of the longitudinal strut is locked by inserting a height positioning bolt into a height positioning hole after the height is adjusted.
The placing rack 3 comprises a rectangular plate 31, an upper hook 32 and a lower hook 33 are arranged on two sides of the rectangular plate 31 respectively, a knob fixing bolt 34 is arranged at the top of the longitudinal supporting rod 2, and the rectangular plate 31 is fixed at the top of the longitudinal supporting rod 2 through the knob fixing bolt 34. The rack is used for placing the wire stretching and contracting rod, and the rectangular plate is pressed and fixed through the knob fixing bolt after the angle of the rectangular plate is adjusted. The upper hook and the lower hook are convenient for quickly placing and taking down the telescopic wire rod.
One side of the monocular telescope 9 is provided with a connecting groove 91, the connecting groove 91 is connected with a ball head connecting piece 92 in a sliding manner, and one end of the ball head connecting piece 92 is fixedly connected with a compression ring 93. The compression ring is fixed on the telescopic and telescopic line rod by using a compression bolt, the position and the angle of the monocular can be flexibly adjusted by the movable connection mode of the connecting groove and the ball head connecting piece, the monocular can also be detached for use, and the compression bolt is also arranged at the movable connection position of the connecting groove and the ball head connecting piece.
The longitudinal supporting rod 2 is provided with an auxiliary supporting rod 21 through bolts and clamps, the auxiliary supporting rod 21 is L-shaped, and a supporting chuck 22 is arranged at the top of the auxiliary supporting rod 21. The auxiliary supporting rod is used for assisting the supporting of the telescopic and retractable line rod, and the stability of the telescopic and retractable line rod is improved.
Example 2:
when the device is used, a tripod is taken out to select a proper position for placing, the length of each support leg is adjusted to be stretched and fixed, a longitudinal support rod is inserted into a triangular platform to be adjusted to a proper height and is fixed through a height positioning bolt, a telescopic pay-off rod is stretched and properly paid out to obtain a measuring line with a certain length, the telescopic pay-off rod is placed on a placing frame, the telescopic pay-off rod is slowly paid off to enable a drop needle to just enter water, the position and the angle of a monocular telescope are adjusted and focused to a measuring line position near the water surface, the pay-off is continued to enable the measuring line to continuously enter the water under the gravity action of the drop needle until the drop needle contacts the water bottom to lose tension on the measuring line, the measuring line is slowly reeled up to restore a certain tension, and the water level condition of a reservoir can be obtained by observing the water entry depth of the measuring line through the monocular telescope; during measurement, different positions can be replaced for measurement for multiple times so as to prevent the influence of water bottom sundries on the measurement result; after the measurement is finished, the measuring wire and the drop needle are retracted by slowly winding up the wire, the telescopic wire rod, the tripod and the like are sequentially retracted, and the portable measuring instrument is convenient to carry after being retracted.

Claims (5)

1. The utility model provides a hydraulic engineering reservoir operation management is with portable water level measurement device, includes tripod (1), its characterized in that: swing joint vertical branch (2) in tripod (1), vertical branch (2) top sets up rack (3), place on rack (3) and stretch and zoom line pole (4), be provided with the multisection in stretching and zooming line pole (4), every section stretches out stretch and zoom line pole (4) end and be provided with wire loop (5), stretch and zoom and install spooler (6) on line pole (4), the winding has measuring wire (7) in spooler (6), measuring wire (7) pass wire loop (5) in proper order, measuring wire (7) terminal fixedly connected with weighs down needle (8), it has monocular (9) to stretch and zoom on line pole (4).
2. The portable water level measuring device for the operation management of the hydraulic engineering reservoir according to claim 1, is characterized in that: tripod (1) includes triangle-shaped platform (10), sliding connection longitudinal strut (2) in triangle-shaped platform (10), triangle-shaped platform (10) outside circumference symmetry sets up three scalable stabilizer blades of group, scalable stabilizer blade includes stabilizer blade (11), lower stabilizer blade (12), it rotates to connect in triangle-shaped platform (10) outside to go up stabilizer blade (11), stabilizer blade (12) sliding connection is outside at last stabilizer blade (11) down, go up stabilizer blade (11) lower part and set up a plurality of interior locating hole (13), a plurality of outer locating hole (14) are seted up on lower stabilizer blade (12) upper portion down, it sets up card end (15) to go up stabilizer blade (11) top, triangle-shaped platform (10) one end sets up high positioning bolt (16), a plurality of high locating hole (20) are seted up in longitudinal strut (2) middle part.
3. The portable water level measuring device for the operation management of the hydraulic engineering reservoir according to claim 1, is characterized in that: the rack (3) comprises a rectangular plate (31), an upper hook (32) and a lower hook (33) are arranged on two sides of the rectangular plate (31) respectively, a knob fixing bolt (34) is arranged at the top of the longitudinal supporting rod (2), and the rectangular plate (31) is fixed at the top of the longitudinal supporting rod (2) by the knob fixing bolt (34).
4. The portable water level measuring device for the operation management of the hydraulic engineering reservoir according to claim 1, is characterized in that: one side of the monocular (9) is provided with a connecting groove (91), the connecting groove (91) is connected with a ball head connecting piece (92) in a sliding manner, and one end of the ball head connecting piece (92) is fixedly connected with a compression ring (93).
5. The portable water level measuring device for the operation management of the hydraulic engineering reservoir according to claim 1, is characterized in that: the vertical supporting rod (2) is provided with an auxiliary supporting rod (21) through bolts and clips, the auxiliary supporting rod (21) is L-shaped, and a supporting chuck (22) is arranged at the top of the auxiliary supporting rod (21).
CN202120466889.8U 2021-03-04 2021-03-04 Portable water level measuring device for hydraulic engineering reservoir operation management Expired - Fee Related CN214149493U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120466889.8U CN214149493U (en) 2021-03-04 2021-03-04 Portable water level measuring device for hydraulic engineering reservoir operation management

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120466889.8U CN214149493U (en) 2021-03-04 2021-03-04 Portable water level measuring device for hydraulic engineering reservoir operation management

Publications (1)

Publication Number Publication Date
CN214149493U true CN214149493U (en) 2021-09-07

Family

ID=77554368

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120466889.8U Expired - Fee Related CN214149493U (en) 2021-03-04 2021-03-04 Portable water level measuring device for hydraulic engineering reservoir operation management

Country Status (1)

Country Link
CN (1) CN214149493U (en)

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

Granted publication date: 20210907

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