CN205210669U - Portable piglet local aquaculture environment monitoring device nursing period - Google Patents

Portable piglet local aquaculture environment monitoring device nursing period Download PDF

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Publication number
CN205210669U
CN205210669U CN201521040639.9U CN201521040639U CN205210669U CN 205210669 U CN205210669 U CN 205210669U CN 201521040639 U CN201521040639 U CN 201521040639U CN 205210669 U CN205210669 U CN 205210669U
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CN
China
Prior art keywords
frame
thermal source
temperature
piglet
monitoring device
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Withdrawn - After Issue
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CN201521040639.9U
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Chinese (zh)
Inventor
饶秀勤
肖林芳
应义斌
泮进明
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Zhejiang University ZJU
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Zhejiang University ZJU
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Priority to CN201521040639.9U priority Critical patent/CN205210669U/en
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    • 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
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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  • Housing For Livestock And Birds (AREA)

Abstract

The utility model discloses a portable piglet local aquaculture environment monitoring device nursing period. Including brake wheel, frame, hinge, temperature sensor, two heats source, control by temperature change circuit, computers and receive and release the rope, four brake wheels are installed in the four corners of frame bottom, and the frame is installed respectively in the front and back both sides of frame along moving direction through the pathway movement of brake wheel along ground swinery side, two heats source, and the heat source is through the hinge and receive and release and restrict deployablely or be connected to the frame with drawing in in, the both ends of every heat source have all hung temperature sensor, and heat source and temperature sensor are connected through control by temperature change circuit and computer through the cable, and the equal fixed mounting of control by temperature change circuit and computer is in the frame. The utility model discloses can remove between different swinerys, can be according to automatic control local ambient temperature in age piglet day.

Description

A kind of portable Piglet at Lactation Period local cultivation surroundings monitoring device
Technical field
The utility model relate to a kind of cultivation supervising device, especially relates to a kind of portable Piglet at Lactation Period local cultivation surroundings monitoring device.
Background technology
Environment temperature is an important indicator of breeding environment, directly affects poultry survival rate, grows and survival condition, creates a comfortable breeding environment significant to raising culture benefit.
The mother of Different growth phases, the environment temperature difference needed for piglet in production: in-pig Metabolic weight scope is 16.2 ~ 27.5 DEG C of (Wang Qingyi, Wang Zhanbin (China), environment temperature is on the impact of piglet, brood sow and store pig, HEILONGJIANG ANIMAL SCIENCE AND VETERINARY MEDICINE, 2002) young sow, is with to be 16.2 ~ 24.7 DEG C; And the Metabolic weight scope of newborn piglet is 36.0 ~ 37.7 DEG C, suckling pig is 30.3 ~ 36.0 DEG C, and weanling pig is 26.3 ~ 32.0 DEG C of (Ge Menglan (China), floor-type modernized pig farm process designs, Sichuan Agricultural University's master thesis, 2013).Nursery-age pig declines along with the increase of age in days for the demand of delivery room temperature, the optimum temperature of piglet in several hours of being born is 34 ~ 35 DEG C, 1 ~ 3 day 32 ~ 35 DEG C, 4 ~ 7 days 27 ~ 29 DEG C, 8 ~ 14 days 25 ~ 27 DEG C, 15 ~ 21 days 22 ~ 24 DEG C, 20 ~ 24 DEG C of (Qu Junmei (China) on the 22nd ~ 28, the research of varying environment factor pair piglet growth impact, feed is read extensively, 2005), , guard rail all should be able to reach temperature any time, do not reach (the Tian Zhengwei (China) that just should heat, the feeding and management main points of large scale of pig farm farrowing house, agricultural science and technology and information, 2005).
Different object causes being difficult to adopt single temperature to meet the environment temperature requirement of all cultivation objects to the otherness that environment temperature requires.And existing warm keeping device is as electric heating floor, infrared lamp, PTC insulation can or above several combination etc., cannot Real-Time Monitoring breeding environment temperature female according to Different growth phases, needed for piglet environment temperature carries out intelligent alternating temperature regulation and control.
The heating equipment that poultry house is conventional has hot-water type, hot air type and local heat-supply type three kinds, but because device volume is large, it is normal that exist with the reasons such as Integration of building of raising pigs cannot the problem (Jiang Enchen (China) of movement flexibly, Mechanization of animal husbandry, Chinese agriculture publishing house, 2005).
Utility model content
In order to solve Problems existing in background technology, the purpose of this utility model there are provided a kind of portable Piglet at Lactation Period local cultivation surroundings monitoring device, can move the swinery local breeding environment temperature of the intelligent alternating temperature regulation and control of also energy at Piglet at Lactation Period flexibly.
The technical scheme that the utility model adopts:
The utility model comprises brake wheel, frame, hinge, temperature sensor, two thermals source, temperature control circuit, computing machine and withdrawing ropes, four brake wheels are arranged on the corner bottom frame, frame is by the rail moving of brake wheel along swinery side, ground, two thermals source are arranged on the front and back both sides of frame along moving direction respectively, and thermal source is by hinge and withdrawing rope is deployable or be connected to frame with drawing in; The two ends of each thermal source are all hung with temperature sensor, and thermal source is connected with computing machine through temperature control circuit by cable with temperature sensor, and temperature control circuit and computing machine are all fixedly mounted in frame.
Described frame comprises rectangle frame, frame flat board, screw mandrel and manual turntable, brake wheel is arranged on the corner bottom rectangle frame, the middle part of rectangle frame is vertically provided with screw mandrel, frame dull and stereotyped by thread bush in the middle part of screw mandrel, the top of screw mandrel is connected with the manual turntable rotated for Non-follow control, the both ends of frame flat board pass the both sides of rectangle frame and are provided with thermal source, and frame annulus is arranged on rectangle frame top, by rotation manual rotating disk moving up and down through leading screw subband motivation frame flat board.
Described thermal source comprises sealed tube, small-sized fans, well heater and thermal source annulus, and the sidewall of sealed tube has the equally distributed through hole for dispelling the heat, and inside, sealed tube two ends is all provided with a well heater, and sealed tube inner bottom surface installs small-sized fans; One end of sealed tube is hinged on the frame flat board of described frame, and be provided with thermal source annulus near the other end place of sealed tube, thermal source annulus is connected to the frame annulus of described frame top by withdrawing rope.
Two thermal source horizontally disposed both sides at swinery respectively when described thermal source launches to place, withdrawing rope is stretched to the longest.
Described thermal source draws the rectangle frame sidewall being all vertically arranged in described frame when placing in, and withdrawing rope is tightened to the shortest.
The useful effect that the utility model has:
The utility model can move between different swinerys, according to the automatic controls local environment temperature of piglet age in days, can improve breeding environment, reduce labor intensity.
Accompanying drawing explanation
Fig. 1 is apparatus structure schematic diagram of the present utility model.
Fig. 2 is the schematic diagram of Fig. 1 thermal source 5 when keeping flat.
Fig. 3 is system application schematic diagram.
Fig. 4 is rack construction figure.
Fig. 5 is heat source configurations figure.
In figure: 1, brake wheel, 2, frame, 3, hinge, 4, temperature sensor, 5, thermal source, 6, temperature control circuit, 7, computing machine, 8, withdrawing rope.
201, rectangle frame, 202, frame is dull and stereotyped, 203, screw mandrel, 204, frame annulus, 205, manual turntable.
501, sealed tube, 502, small-sized fans, 503, well heater, 504, thermal source annulus.
Embodiment
Below in conjunction with drawings and embodiments, the utility model is further illustrated.
As shown in Figure 1, Figure 2, Figure 3 shows, the utility model comprises brake wheel 1, frame 2, hinge 3, temperature sensor 4, two thermals source 5, temperature control circuit 6, computing machine 7 and withdrawing ropes 8, four brake wheels 1 are arranged on the corner bottom frame 2, frame 2 is by the rail moving of brake wheel 1 along swinery side, ground, two thermals source 5 are arranged on the front and back both sides of frame 2 along moving direction respectively, and thermal source 5 is by hinge 3 and withdrawing rope 8 is deployable or be connected to frame 2 with drawing in; The two ends of each thermal source 5 are all hung with temperature sensor 4, and thermal source 5 is connected with computing machine 7 through temperature control circuit 6 by cable with temperature sensor 4, and temperature control circuit 6 and computing machine 7 are all fixedly mounted in frame 2.
As shown in Figure 4, frame 2 comprises rectangle frame 201, frame flat board 202, screw mandrel 203 and manual turntable 205, brake wheel 1 is arranged on the corner bottom rectangle frame 201, the middle part of rectangle frame 201 is vertically provided with screw mandrel 203, frame flat board 202 by thread bush in the middle part of screw mandrel 203, the top of screw mandrel 203 is connected with the manual turntable 205 rotated for Non-follow control, the both ends of frame flat board 202 pass the both sides of rectangle frame 201 and are provided with thermal source 5, frame annulus 204 is arranged on rectangle frame 201 top, by rotation manual rotating disk 205 moving up and down through leading screw subband motivation frame flat board 202.
As shown in Figure 5, thermal source 5 comprises sealed tube 501, small-sized fans 502, well heater 503 and thermal source annulus 504, the sidewall of sealed tube 501 has the equally distributed through hole for dispelling the heat, inside, sealed tube 501 two ends is all provided with a well heater 503, and sealed tube 501 inner bottom surface installs small-sized fans 502; One end of sealed tube 501 is hinged on the frame flat board 202 of described frame 2, and be provided with thermal source annulus 504 near the other end place of sealed tube 501, thermal source annulus 504 is connected to the frame annulus 204 at described frame 2 top by withdrawing rope 8.
As shown in Figures 2 and 3, two thermal source 5 horizontally disposed both sides at swinery respectively when thermal source 5 launches to place, withdrawing rope 8 is stretched to the longest.
As shown in Figure 1, thermal source 5 draws rectangle frame 201 sidewall being all vertically arranged in described frame 2 when placing in, and withdrawing rope 8 is tightened to the shortest.
Specific embodiment of the utility model and the course of work as follows:
Thermal source adopts SZKQJRQ-FB type quartz tube heater, and temperature sensor adopts LM35 type temperature sensor.
The portable local breeding environment temperature control system developed by the utility model moves to the swinery of specifying, rotary manual rotating disk 205 regulates the height of frame flat board to adapt to the height of swinery, by the mode of Fig. 2, thermal source 5 is placed into horizontal level, concrete application mode as shown in Figure 3, the critical temperature upper limit and critical temperature lower limit in setting breeding environment, by 4 temperature sensor perception breeding environment temperature now, when temperature sensor perception most high ambient temperature higher than in critical temperature in limited time, disconnect thermal source 5; Under the minimum environment temperature of temperature sensor perception is lower than critical temperature in limited time, in the time interval that control of heat source 5 is opened and disconnected, real-time intelligent temperature control is realized.
In the minimum maximum temperature of internal system initialization system, the temperature of namely prevent piglet frostbite, burning, when any one temperature of sensor senses is lower than system minimum temperature, opens heat source, and starts alarm; When any one temperature of sensor senses is higher than system maximum temperature, close thermal source, and start alarm; Remind keeper's temperature to regulate to occur extremely.The implementation case data are as shown in the table:
Table 1 critical temperature bound:
Piglet age in days Set temperature Optimum temperature
0 day 32℃ 34~35℃
1 ~ 3 day 30~32℃ 32~35℃
4 ~ 7 days 28~30℃ 27~29℃
8 ~ 14 days 25~28℃ 25~27℃
15 ~ 28 days 24~26℃ 22~24℃
Table 2 date and piglet age in days
Current date 2015/12/3
The piglet date of birth 2015/12/1
Current piglet age in days 2 days
Table 3 temperature (piglet be born second day temperature):
The critical temperature upper limit Temperature sensor 1 System maximum temperature
35.0℃ 32.5℃ 40℃
Critical temperature lower limit Temperature sensor 2 System minimum temperature
32.0℃ 32.5℃ 10.0℃
Optimum temperature Temperature sensor 3 Offset temperature
33.5℃ 33.5℃ 0.5℃
Current medial temperature Temperature sensor 4
33.0℃ 33,5℃
The data of table 1 are the critical temperature bounds of inner setting, a work period is born the 0th day to 28 days from piglet, also critical temperature bound can be revised according to actual needs, extend or shorten the work period, table 2 is piglet dates of birth that system sets according to user, automatic record piglet age in days is 2, and the control of environment temperature is carried out according to piglet 2 age in days adjustment critical temperature bound, when table 3 is piglet 2 ages in days, certain moment real time data that user sees, comprise the critical temperature bound of setting, optimum temperature is (in critical temperature, the average of lower limit), current medial temperature (the temperature averages of 4 temperature sensors), 4 temperature sensor temperature values, system maximum temperature and system minimum temperature (being used for preventing burning and frostbite of piglet), offset temperature (difference of optimum temperature and medial temperature).
Thus, the utility model can move between different swinerys, can control the local ambient temperature of swinery, improve breeding environment, reduce labor intensity, have outstanding significant technique effect according to piglet age in days automatic detection for temperature.

Claims (5)

1. a portable Piglet at Lactation Period local cultivation surroundings monitoring device, it is characterized in that: comprise brake wheel (1), frame (2), hinge (3), temperature sensor (4), two thermals source (5), temperature control circuit (6), computing machine (7) and withdrawing rope (8), four brake wheels (1) are arranged on the corner of frame (2) bottom, frame (2) is by the rail moving of brake wheel (1) along swinery side, ground, two thermals source (5) are arranged on the front and back both sides of frame (2) along moving direction respectively, thermal source (5) is by hinge (3) and withdrawing rope (8) is deployable or be connected to frame (2) with drawing in, the two ends of each thermal source (5) are all hung with temperature sensor (4), thermal source (5) is connected with computing machine (7) through temperature control circuit (6) by cable with temperature sensor (4), and temperature control circuit (6) and computing machine (7) are all fixedly mounted in frame (2).
2. one according to claim 1 portable Piglet at Lactation Period local cultivation surroundings monitoring device, it is characterized in that: described frame (2) comprises rectangle frame (201), frame flat board (202), screw mandrel (203) and manual turntable (205), brake wheel (1) is arranged on the corner of rectangle frame (201) bottom, the middle part of rectangle frame (201) is vertically provided with screw mandrel (203), frame flat board (202) by thread bush screw mandrel (203) middle part, the top of screw mandrel (203) is connected with the manual turntable (205) rotated for Non-follow control, the both ends of frame flat board (202) pass the both sides of rectangle frame (201) and are provided with thermal source (5), frame annulus (204) is arranged on rectangle frame (201) top, by rotation manual rotating disk (205) moving up and down through leading screw subband motivation frame flat board (202).
3. one according to claim 1 portable Piglet at Lactation Period local cultivation surroundings monitoring device, it is characterized in that: described thermal source (5) comprises sealed tube (501), small-sized fans (502), well heater (503) and thermal source annulus (504), the sidewall of sealed tube (501) has the equally distributed through hole for dispelling the heat, sealed tube (501) inside, two ends is all provided with a well heater (503), and sealed tube (501) inner bottom surface installs small-sized fans (502); One end of sealed tube (501) is hinged on the frame flat board (202) of described frame (2), be provided with thermal source annulus (504) near the other end place of sealed tube (501), thermal source annulus (504) is connected to the frame annulus (204) at described frame (2) top by withdrawing rope (8).
4. one according to claim 1 portable Piglet at Lactation Period local cultivation surroundings monitoring device, it is characterized in that: two thermal source (5) horizontally disposed both sides at swinery respectively when described thermal source (5) launches to place, withdrawing rope (8) is stretched to the longest.
5. one according to claim 1 portable Piglet at Lactation Period local cultivation surroundings monitoring device, it is characterized in that: described thermal source (5) draws rectangle frame (201) sidewall being all vertically arranged in described frame (2) when placing in, and withdrawing rope (8) is tightened to the shortest.
CN201521040639.9U 2015-12-15 2015-12-15 Portable piglet local aquaculture environment monitoring device nursing period Withdrawn - After Issue CN205210669U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521040639.9U CN205210669U (en) 2015-12-15 2015-12-15 Portable piglet local aquaculture environment monitoring device nursing period

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521040639.9U CN205210669U (en) 2015-12-15 2015-12-15 Portable piglet local aquaculture environment monitoring device nursing period

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Publication Number Publication Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105549647A (en) * 2015-12-15 2016-05-04 浙江大学 Mobile piglet lactation local culture environment monitoring system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105549647A (en) * 2015-12-15 2016-05-04 浙江大学 Mobile piglet lactation local culture environment monitoring system

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20160504

Effective date of abandoning: 20170616