CN105359857A - Linkage-type illumination intensity adjusting structure of Braseniaschreberi paddy field with water quality detection function - Google Patents

Linkage-type illumination intensity adjusting structure of Braseniaschreberi paddy field with water quality detection function Download PDF

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Publication number
CN105359857A
CN105359857A CN201510764752.XA CN201510764752A CN105359857A CN 105359857 A CN105359857 A CN 105359857A CN 201510764752 A CN201510764752 A CN 201510764752A CN 105359857 A CN105359857 A CN 105359857A
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CN
China
Prior art keywords
motor
paddy field
glass photovoltaic
sill
tooth bar
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Granted
Application number
CN201510764752.XA
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Chinese (zh)
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CN105359857B (en
Inventor
龚恒翔
潘慧中
雷波泽
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Chongqing Pan - mother-in-law & Shield Technology Co.,Ltd.
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Chongqing Guonong Environment Technology Co Ltd
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Priority to CN201510764752.XA priority Critical patent/CN105359857B/en
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G7/00Botany in general
    • A01G7/04Electric or magnetic or acoustic treatment of plants for promoting growth
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/12Technologies relating to agriculture, livestock or agroalimentary industries using renewable energies, e.g. solar water pumping

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  • Life Sciences & Earth Sciences (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Botany (AREA)
  • Ecology (AREA)
  • Forests & Forestry (AREA)
  • Environmental Sciences (AREA)
  • Photometry And Measurement Of Optical Pulse Characteristics (AREA)
  • Investigating Or Analysing Materials By Optical Means (AREA)

Abstract

The invention discloses a linkage-type illumination intensity adjusting structure of a Braseniaschreberi paddy field with a water quality detection function, wherein a group of dual-glass photovoltaic modules which are located side by side from front to back are disposed between I-shaped beams on the top parts of a left n-shaped beam and a right n-shaped beam; a lower horizontal beam is horizontally connected between two uprights of the left n-shaped beam; the lower horizontal beam is located under the dual-glass photovoltaic modules; a first rack is firmly disposed on the lower surface of an upper horizontal section of the lower horizontal beam; and a thermometer, a flow meter and a PH sensor are disposed on a connected disk which is located on the lower end of a lifting pillar. The structure disclosed by the invention has the advantages that illumination incident intensity can be adjusted in a linkage manner, so that the illumination intensity can be adjusted conveniently according to growth demands of Braseniaschreberi and thus production of the Braseniaschreberi, and production and accumulation of gum can be realized easily. The structure disclosed by the invention has the function of detecting water quality of the Braseniaschreberi paddy field, so that time and labor force are reduced, an automation degree is increased, and the former hidden danger that people go into the paddy field and then pollute the water quality can be avoided.

Description

A kind of coordinated type water shield paddy field intensity of illumination adjust structure possessing water quality detecting function
Technical field
The invention belongs to water shield production field, relate to a kind of coordinated type water shield paddy field intensity of illumination adjust structure possessing water quality detecting function.
Background technology
Water shield, as the Ways of Special Agricultural Products with special value, has very large demand in domestic and international market, and the production of high-quality water shield and process technology are the inevitable choices that relevant enterprise obtains the market competitiveness and abundant economy return.Research data shows that water shield there are differences in the demand of each link of growth to intensity of illumination, and current planting conditions cannot accomplish to carry out artificial adjustment to intensity of illumination.
Meanwhile, research data shows that water shield is very high to water quality requirement, particularly the pH value of water temperature, water and the flow velocity of current and the flow direction, and the water quality of different water depth and position is also variant.At present, mainly go under artificial hand-held checkout equipment to measure in paddy field, not only waste time and energy, automaticity is low, and in paddy field, also can cause pollution to a certain degree to water quality under people.
Summary of the invention
Technical problem to be solved by this invention is to provide a kind of coordinated type water shield paddy field intensity of illumination adjust structure possessing water quality detecting function, for adjusting incident intensity as required, and natural rainfall can also be avoided the acidization of water shield water in field matter.
Technical scheme of the present invention is as follows: a kind of coordinated type water shield paddy field intensity of illumination adjust structure possessing water quality detecting function, it is characterized in that: comprise left-hand door tee beam (1) and lifting column (20), its Central Left Gate tee beam (1) and right door tee beam (2) left and right are arranged side by side, one group of two glass photovoltaic module (3) is had from front to back side by side between the I-beam at these two door tee beam tops, the two ends of each pair of glass photovoltaic module have a left-handed rotating shaft (3a) and the dextral shaft (3b) of coaxial setting, wherein left-handed rotating shaft (3a) is rotatably assorted with the installing hole on the I-beam of left-hand door tee beam (1) top, driven wheel of differential (4) on described dextral shaft (3b) engages with drive bevel gear (5), all drive bevel gear are solidly set on same universal driving shaft (6), one end of this universal driving shaft by bearings on the I-beam at described right door tee beam (2) top, and the other end of universal driving shaft (6) is coaxially connected with the output shaft of motor (7), this motor is arranged on the I-beam at right door tee beam (2) top,
Between two root posts of described left-hand door tee beam (1), level connection joint has an I-shaped sill (1a), this sill is positioned at described pair of glass photovoltaic module (3) below, movable seat (9) is supported on this sill, and is slidably matched with this root sill (1a); The lower surface of the upper horizontal segment of described sill (1a) is installed with first tooth bar (10), this first tooth bar engages with the first gear (12) on the first motor (11) output shaft, and the first motor is arranged on described movable seat (9), movable seat (9) so just can be driven to move forward and backward along sill (1a); The opening of described movable seat (9) lower end is closed by base plate (13), and on this base plate, left and right has two the first fairleads (14) side by side, moves left and right beam (15) and is slidably matched with these two first fairleads;
Described beam (15) rear side that moves left and right is by being provided with second tooth bar (16) from left to right, this second tooth bar engages with the second gear (18) on the second motor (17) output shaft, and the second motor (17) is vertically arranged on described movable seat (9), so just can makes to move left and right beam (15) and move left and right; Described beam (15) right-hand member that moves left and right is installed with the second fairlead (19), described lifting column (20) and this second fairlead are slidably matched, and lifting column leading flank is vertically provided with the 3rd tooth bar (21), 3rd tooth bar engages with the 3rd gear (24) on the 3rd motor (22) output shaft, and the 3rd motor (22) be arranged on described in move left and right on beam (15), thus drive lifting column (20) lifting; Described lifting column (20) lower end is fixed with one and connects dish (23), this connects on dish and is provided with thermometer (25), current meter (26) and PH sensor (27), and PH sensor (27) is electronic type structure; Described pair of glass photovoltaic module (3) is 10-25, and the light transmittance of described pair of glass photovoltaic module (3) is 40%-60%.
In technique scheme, part light can be absorbed by described pair of glass photovoltaic module (3), and converts it into electric energy, and another part light can through two glass photovoltaic module (3), thus photograph water shield paddy field, and carry out photosynthesis after being absorbed by water shield.Further, we can adjust the anglec of rotation of two glass photovoltaic module (3) according to the growth needs synchronous interaction of water shield, thus the incident intensity of adjustment light, and then be convenient to the growth of water shield.
Simultaneously, the present invention can allow connect to coil and move left and right above water shield paddy field, moves forward and backward and be elevated, thus drive thermometer, current meter and PH sensor move left and right above water shield paddy field, movable and lifting, to measure the water quality of water shield paddy field diverse location and depth, so not only time saving and energy saving, automaticity is high, and there is not the hidden danger of polluted water of manually going to the field as before.Described pair of glass photovoltaic module (3) is 10-25, and the light transmittance of described pair of glass photovoltaic module (3) is 40%-60%, so just can take into account printing opacity requirement, both solar photovoltaic assembly can have been allowed can to transform abundant solar energy, water shield can be allowed again to absorb abundant sunlight.
Adopt above technical scheme, the present invention can adjust the incident intensity of illumination with linked manner, so just can adjust intensity of illumination easily according to the growth needs of water shield, thus be beneficial to the production of water shield and the production of colloid and accumulation, and the present invention has the function detecting water shield paddy field water quality, so not only time saving and energy saving, automaticity is high, and there is not the hidden danger of polluted water of manually going to the field as before.
Beneficial effect: the present invention can adjust the incident intensity of illumination with linked manner, so just can adjust intensity of illumination easily according to the growth needs of water shield, thus be beneficial to the production of water shield and the production of colloid and accumulation, and the present invention has the function detecting water shield paddy field water quality, so not only time saving and energy saving, automaticity is high, and there is not the hidden danger of polluted water of manually going to the field as before.
Accompanying drawing explanation
Fig. 1 is structural representation of the present invention.
Fig. 2 is the left view of Fig. 1.
Fig. 3 is the partial enlarged drawing of part A in Fig. 2.
Fig. 4 is that the B-B of Fig. 2 is to cutaway view Amplified image.
Embodiment
Below in conjunction with drawings and Examples, the invention will be further described:
As shown in Fig. 1,2,3 and 4, possess a coordinated type water shield paddy field intensity of illumination adjust structure for water quality detecting function, form primarily of left-hand door tee beam 1, right door tee beam 2, two glass photovoltaic module 3, driven wheel of differential 4, drive bevel gear 5, universal driving shaft 6, motor 7, the movable parts such as seat 9, first tooth bar 10 and the first motor 11.Wherein, during installation, left-hand door tee beam 1 and right door tee beam 2 are all located on the ridge in water shield paddy field, two glass photovoltaic modulies 3 of one group of outsourcing are had from front to back side by side between the I-beam at these two door tee beam tops, these pair of glass photovoltaic module 3 is positioned at directly over water shield paddy field, to shelter from the water shield in water shield paddy field.Two glass photovoltaic module 3 is 10-25, and can be preferably 13,15,17,19,23, and the light transmittance of two glass photovoltaic module 3 is 40%-60%, and the width of two glass photovoltaic module 3 wants the >=width in water shield paddy field, to cover water shield paddy field completely.
The two ends of each pair of glass photovoltaic module 3 have the coaxial left-handed rotating shaft 3a that arranges and dextral shaft 3b, and the installing hole wherein on left-handed rotating shaft 3a and left-hand door tee beam 1 top I-beam is rotatably assorted.The drive bevel gear 5 that driven wheel of differential 4 on every root dextral shaft 3b is corresponding with one often engages, and all drive bevel gear are solidly set on same universal driving shaft 6.One end of universal driving shaft 6 is by bearings on the I-beam at right door tee beam 2 top, and the other end of universal driving shaft 6 is coaxially connected with the output shaft of motor 7, and this motor 7 is arranged on the I-beam at right door tee beam 2 top.
As shown in Fig. 1,2,3 and 4, between two root posts of left-hand door tee beam 1, level connection joint has an I-shaped sill 1a, this sill is positioned at the below of two glass photovoltaic module 3, and movable seat 9 is supported on this sill, and is slidably matched with this root sill 1a.On sill 1a, the lower surface of horizontal segment is installed with first tooth bar 10, this first tooth bar engages with the first gear 12 on the first motor 11 output shaft, and the first motor is arranged on movable seat 9, movable seat 9 so just can be driven to move forward and backward along sill 1a.The opening of movable seat 9 lower end is closed by base plate 13, and on this base plate, left and right has two the first fairleads 14 side by side, moves left and right beam 15 and is slidably matched with these two first fairleads.
Move left and right by being provided with second tooth bar 16 from left to right on rear side of beam 15, this second tooth bar engages with the second gear 18 on the second motor 17 output shaft, and the second motor 17 is vertically arranged on movable seat 9, so just can make to move left and right beam 15 and move left and right.Move left and right beam 15 right-hand member and be installed with the second fairlead 19, lifting column 20 and this second fairlead are slidably matched, and lifting column leading flank is vertically provided with the 3rd tooth bar 21,3rd tooth bar engages with the 3rd gear 24 on the 3rd motor 22 output shaft, and the 3rd motor 22 is arranged on and moves left and right on beam 15, thus lifting column 20 is driven to be elevated.Lifting column 20 lower end is fixed with one and connects dish 23, and this connects on dish and is provided with thermometer 25, current meter 26 and PH sensor 27.Wherein, water temperature measured by thermometer 25, and current meter 26 detects flow velocity and the flow direction of current, and PH sensor 27 detects the pH value of water.
The foregoing is only preferred embodiment of the present invention, is not restriction with the present invention, and all any amendments done within the spirit and principles in the present invention, equivalent replacement and improvement etc., all should be included within protection scope of the present invention.

Claims (1)

1. one kind possesses the coordinated type water shield paddy field intensity of illumination adjust structure of water quality detecting function, it is characterized in that: comprise left-hand door tee beam (1) and lifting column (20), its Central Left Gate tee beam (1) and right door tee beam (2) left and right are arranged side by side, one group of two glass photovoltaic module (3) is had from front to back side by side between the I-beam at these two door tee beam tops, the two ends of each pair of glass photovoltaic module have a left-handed rotating shaft (3a) and the dextral shaft (3b) of coaxial setting, wherein left-handed rotating shaft (3a) is rotatably assorted with the installing hole on the I-beam of left-hand door tee beam (1) top, driven wheel of differential (4) on described dextral shaft (3b) engages with drive bevel gear (5), all drive bevel gear are solidly set on same universal driving shaft (6), one end of this universal driving shaft by bearings on the I-beam at described right door tee beam (2) top, and the other end of universal driving shaft (6) is coaxially connected with the output shaft of motor (7), this motor is arranged on the I-beam at right door tee beam (2) top,
Between two root posts of described left-hand door tee beam (1), level connection joint has an I-shaped sill (1a), this sill is positioned at described pair of glass photovoltaic module (3) below, movable seat (9) is supported on this sill, and is slidably matched with this root sill (1a); The lower surface of the upper horizontal segment of described sill (1a) is installed with first tooth bar (10), this first tooth bar engages with the first gear (12) on the first motor (11) output shaft, and the first motor is arranged on described movable seat (9), movable seat (9) so just can be driven to move forward and backward along sill (1a); The opening of described movable seat (9) lower end is closed by base plate (13), and on this base plate, left and right has two the first fairleads (14) side by side, moves left and right beam (15) and is slidably matched with these two first fairleads;
Described beam (15) rear side that moves left and right is by being provided with second tooth bar (16) from left to right, this second tooth bar engages with the second gear (18) on the second motor (17) output shaft, and the second motor (17) is vertically arranged on described movable seat (9), so just can makes to move left and right beam (15) and move left and right; Described beam (15) right-hand member that moves left and right is installed with the second fairlead (19), described lifting column (20) and this second fairlead are slidably matched, and lifting column leading flank is vertically provided with the 3rd tooth bar (21), 3rd tooth bar engages with the 3rd gear (24) on the 3rd motor (22) output shaft, and the 3rd motor (22) be arranged on described in move left and right on beam (15), thus drive lifting column (20) lifting; Described lifting column (20) lower end is fixed with one and connects dish (23), this connects on dish and is provided with thermometer (25), current meter (26) and PH sensor (27), and PH sensor (27) is electronic type structure; Described pair of glass photovoltaic module (3) is 10-25, and the light transmittance of described pair of glass photovoltaic module (3) is 40%-60%.
CN201510764752.XA 2015-11-11 2015-11-11 A kind of coordinated type water shield paddy field intensity of illumination adjustment structure for possessing water quality detecting function Active CN105359857B (en)

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Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH621682A5 (en) * 1977-07-11 1981-02-27 Plascon Ag Device for controlling the incidence of heat and light radiation, in particular for greenhouses
JPS5882154A (en) * 1981-11-10 1983-05-17 Mitsubishi Electric Corp Lifting gear for water examination instrument
US4559840A (en) * 1981-06-12 1985-12-24 Mitsubishi Denki Kabushiki Kaisha Lifting apparatus
US20020179543A1 (en) * 2000-05-31 2002-12-05 Keeping Sean Crispian Micro-filtration
CN101238783A (en) * 2008-03-12 2008-08-13 万尤宝 Method and device for automatically regulating sunlight strength and promoting vegetation
CN101975747A (en) * 2010-09-10 2011-02-16 中国科学院对地观测与数字地球科学中心 Remote control multi-angle positioning device
CN102384965A (en) * 2011-07-19 2012-03-21 江西海豹高科技有限公司 Portable on-line three-dimensional coordinate water quality detection system for turbid water area
CN202281594U (en) * 2011-10-20 2012-06-20 南车二七车辆有限公司 CCD sensor servo device for railway fright car detection
CN102835285A (en) * 2012-09-28 2012-12-26 崔学晨 Insulated and transparent shutter system of daylight type greenhouse
CN103353514A (en) * 2013-08-05 2013-10-16 河南理工大学 Three-dimensional similar simulation experimental method for groundwater pollution treatment and repair
CN203788812U (en) * 2014-04-29 2014-08-27 桑继法 Automatic adjustment type sunlight greenhouse
CN104483461A (en) * 2014-11-21 2015-04-01 中国农业大学 Three-dimensional monitoring device for water quality
CN204682031U (en) * 2015-06-24 2015-10-07 保定嘉盛光电科技股份有限公司 A kind of two glass photovoltaic greenhouse

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH621682A5 (en) * 1977-07-11 1981-02-27 Plascon Ag Device for controlling the incidence of heat and light radiation, in particular for greenhouses
US4559840A (en) * 1981-06-12 1985-12-24 Mitsubishi Denki Kabushiki Kaisha Lifting apparatus
JPS5882154A (en) * 1981-11-10 1983-05-17 Mitsubishi Electric Corp Lifting gear for water examination instrument
US20020179543A1 (en) * 2000-05-31 2002-12-05 Keeping Sean Crispian Micro-filtration
CN101238783A (en) * 2008-03-12 2008-08-13 万尤宝 Method and device for automatically regulating sunlight strength and promoting vegetation
CN101975747A (en) * 2010-09-10 2011-02-16 中国科学院对地观测与数字地球科学中心 Remote control multi-angle positioning device
CN102384965A (en) * 2011-07-19 2012-03-21 江西海豹高科技有限公司 Portable on-line three-dimensional coordinate water quality detection system for turbid water area
CN202281594U (en) * 2011-10-20 2012-06-20 南车二七车辆有限公司 CCD sensor servo device for railway fright car detection
CN102835285A (en) * 2012-09-28 2012-12-26 崔学晨 Insulated and transparent shutter system of daylight type greenhouse
CN103353514A (en) * 2013-08-05 2013-10-16 河南理工大学 Three-dimensional similar simulation experimental method for groundwater pollution treatment and repair
CN203788812U (en) * 2014-04-29 2014-08-27 桑继法 Automatic adjustment type sunlight greenhouse
CN104483461A (en) * 2014-11-21 2015-04-01 中国农业大学 Three-dimensional monitoring device for water quality
CN204682031U (en) * 2015-06-24 2015-10-07 保定嘉盛光电科技股份有限公司 A kind of two glass photovoltaic greenhouse

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Effective date of registration: 20210524

Address after: 409100 mojiaao formation, wanshengba village, Huangshui Town, Shizhu Tujia Autonomous County, Qianjiang District, Chongqing

Patentee after: Chongqing Pan - mother-in-law & Shield Technology Co.,Ltd.

Address before: 12-9-2, No.1, Jianxin South Road, Jiangbei District, Chongqing 400020

Patentee before: CHONGQING GUONONG ENVIRONMENTAL TECHNOLOGY Co.,Ltd.