CN208064239U - A kind of carp culture pond herbal sprinkling device - Google Patents
A kind of carp culture pond herbal sprinkling device Download PDFInfo
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- CN208064239U CN208064239U CN201820587270.0U CN201820587270U CN208064239U CN 208064239 U CN208064239 U CN 208064239U CN 201820587270 U CN201820587270 U CN 201820587270U CN 208064239 U CN208064239 U CN 208064239U
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Abstract
本实用新型涉及一种鲤鱼养殖池塘药物喷洒装置,包括船体,所述船体上设有储药罐、电源、控制器、水泵、喷药泵、喷药管以及设置在船尾的船体驱动装置,所述储药罐内装有药液,喷药管与喷药泵的出液口相连通,喷药泵的进液口与储药罐的药液连通;储药罐的上端设有加药口和加水口,水泵的出水管通过加水口伸入到储药罐中,水泵的进水管伸入到池塘水体中,进水管的进水口离池塘底部的距离为5‑15cm,伸入到池塘水体中的进水管上设有一个或多个可绕进水管转动的旋转结构;水泵、喷药泵、船体驱动装置分别通过导线与控制器电连接,控制器通过导线与电源电连接。本实用新型的优点是利于水体交换,利于药物进入池塘下层进而更好地发挥药效。
The utility model relates to a medicine spraying device for a carp breeding pond, which comprises a hull, on which a medicine storage tank, a power supply, a controller, a water pump, a medicine spray pump, a medicine spray pipe and a hull driving device arranged at the stern of the boat are arranged. The medicine storage tank is equipped with liquid medicine, the medicine spray pipe is connected with the liquid outlet of the medicine spray pump, and the liquid inlet of the medicine spray pump is connected with the medicine liquid of the medicine storage tank; the upper end of the medicine storage tank is provided with a dosing port and Water inlet, the outlet pipe of the water pump extends into the medicine storage tank through the water inlet, the water inlet pipe of the water pump extends into the pond water body, the distance between the water inlet pipe inlet and the bottom of the pond is 5-15cm, and it extends into the pond water body The water inlet pipe is provided with one or more rotating structures that can rotate around the water inlet pipe; the water pump, spray pump, and hull driving device are respectively electrically connected to the controller through wires, and the controller is electrically connected to the power supply through wires. The utility model has the advantages of being beneficial to water body exchange, and facilitating the entry of medicine into the lower layer of the pond so as to better exert the medicine effect.
Description
技术领域technical field
本实用新型专利属于水产养殖疾病防治技术领域,具体涉及一种鲤鱼养殖池塘药物喷洒装置。The utility model patent belongs to the technical field of aquaculture disease prevention and control, and specifically relates to a drug spraying device for carp breeding ponds.
背景技术Background technique
鲤鱼平时多栖息于江河、湖泊、水库、池沼的水草丛生的水体底层,在鲤鱼的养殖过程中,需要定期或不定期的喷洒药物,以预防和治疗各种疾病。由于鲤鱼的养殖池塘面积通常比较大,通常需用船协助进行施药,以便于将药物喷洒到池塘中央和池塘的各个角落。现有技术中,人工泼洒或喷洒的药物大多停留在水体表层,仅有一小部分药物在重力、风力的扰动以及分子的扩散运动等作用下进入到池塘底部,导致池塘施药量分布不均,池塘表层水体和底层水体的药物浓度差距显著。鲤鱼活动范围主要在池塘底部,喷于池塘表面的药物对鲤鱼作用有限,因此,现有的施药方式和施药装置对鲤鱼养殖产生的用药效果不够理想。Carp usually inhabit the bottom of water bodies overgrown with water and grass in rivers, lakes, reservoirs, and ponds. During the breeding process of carp, it is necessary to spray drugs regularly or irregularly to prevent and treat various diseases. Because the area of the carp culture pond is usually relatively large, it is usually necessary to use a boat to assist in the application of chemicals, so that the drugs can be sprayed to the center of the pond and every corner of the pond. In the prior art, most of the artificially splashed or sprayed drugs stay on the surface of the water body, and only a small part of the drugs enter the bottom of the pond under the action of gravity, wind disturbance, and molecular diffusion movement, etc., resulting in uneven distribution of pesticide application in the pond. There was a significant difference in drug concentration between the pond surface water and the bottom water. The range of activities of carp is mainly at the bottom of the pond, and the medicines sprayed on the surface of the pond have limited effects on carp. Therefore, the existing pesticide application methods and spraying devices have an unsatisfactory effect on carp breeding.
实用新型内容Utility model content
本实用新型的目的是弥补现有技术的不足,提供一种鲤鱼养殖池塘药物喷洒装置,其利于水体交换和水质改善,利于药物进入池塘下层更好地发挥药效。The purpose of the utility model is to make up for the deficiencies of the prior art, and to provide a drug spraying device for carp breeding ponds, which is beneficial for water body exchange and water quality improvement, and is beneficial for drugs to enter the lower layer of the pond to exert a better drug effect.
为了解决上述技术问题,本实用新型采用以下技术方案,一种鲤鱼养殖池塘药物喷洒装置,包括船体,所述船体上设有储药罐、电源、控制器、水泵、喷药泵、喷药管以及设置在船尾的船体驱动装置,所述储药罐内装有药液,喷药管与喷药泵的出液口相连通,喷药泵的进液口与储药罐的药液连通;储药罐的上端设有加药口和加水口,水泵的出水管通过加水口伸入到储药罐中,水泵的进水管伸入到池塘水体中,进水管的进水口离池塘底部的距离为5-15cm,伸入到池塘水体中的进水管上设有一个或多个可绕进水管转动的旋转结构;水泵、喷药泵、船体驱动装置分别通过导线与控制器电连接,控制器通过导线与电源电连接。In order to solve the above-mentioned technical problems, the utility model adopts the following technical scheme, a medicine spraying device for a carp culture pond, including a hull, and the hull is provided with a medicine storage tank, a power supply, a controller, a water pump, a medicine spray pump, and a medicine spray pipe And the hull driving device arranged at the stern, the medicine liquid is housed in the medicine storage tank, the medicine spray pipe is connected with the liquid outlet of the medicine spray pump, and the liquid inlet of the medicine spray pump is connected with the medicine liquid of the medicine storage tank; The upper end of the medicine tank is provided with a medicine filling port and a water filling port. The outlet pipe of the water pump extends into the medicine storage tank through the water filling port, and the water inlet pipe of the water pump extends into the pond water body. The distance between the water inlet of the water inlet pipe and the bottom of the pond is 5-15cm, the water inlet pipe extending into the pond water body is provided with one or more rotating structures that can rotate around the water inlet pipe; the water pump, the spray pump, and the hull driving device are electrically connected to the controller through wires, and the controller passes The wire is electrically connected to a power source.
本实用新型通过设置喷药泵,可将储药罐内的药液抽到喷药管中继而喷洒到池塘中,无需人工泼洒药物,解决了人工施药效率低、劳动强度大、药物泼洒不均匀的问题。待药物喷洒完毕或需要稀释药物时或清洗储药罐时,可开启水泵,此时池塘下层的水体被抽入到储药罐中,能起到稀释药液、清洗储药罐,完成池塘上层与池塘下层水体交换的作用。在上下层水体交换的过程中,还使更多的药物进入到池塘下层,有利于药物对活动于池塘底层的鲤鱼更好地发挥防治作用。此外,在池塘下层的水体抽到储药罐继而从喷药管喷洒到池塘上层的过程中,水体与空气接触,提高了水体溶氧,同时水体中的有害物质释放到大气中,因此回到池塘的水体水质得到了显著改善,溶氧得到显著提高,降低了池塘氨氮含量,能显著降低鲤鱼疾病高发季节时的发病率。船体运行时,由于进水管上的旋转结构能在水流的冲击作用下绕着进水管转动,因此能减少和消耗水流对进水管的阻力和冲击力,有利于船体顺利前行并能延长进水管使用寿命。The utility model can pump the medicine liquid in the medicine storage tank into the medicine spray pipe and then spray it into the pond by setting the medicine spray pump, without manual spraying of the medicine, which solves the problems of low efficiency of manual medicine application, high labor intensity and difficulty in spraying the medicine. Even problem. After the medicine is sprayed or when the medicine needs to be diluted or the medicine storage tank is cleaned, the water pump can be turned on. At this time, the water in the lower layer of the pond is pumped into the medicine storage tank, which can dilute the medicine liquid, clean the medicine storage tank, and complete the upper layer of the pond. The role of exchange with the lower water body of the pond. In the process of water body exchange between the upper and lower layers, more drugs are also allowed to enter the lower layer of the pond, which is beneficial for the drugs to better play a preventive and control effect on the carp active in the bottom layer of the pond. In addition, during the process of pumping the water in the lower layer of the pond to the storage tank and then spraying it from the spray pipe to the upper layer of the pond, the water body is in contact with the air, which increases the dissolved oxygen in the water body, and at the same time, harmful substances in the water body are released into the atmosphere, thus returning to the air. The water quality of the pond has been significantly improved, the dissolved oxygen has been significantly increased, the ammonia nitrogen content in the pond has been reduced, and the incidence of carp diseases can be significantly reduced during the high-incidence season. When the hull is running, because the rotating structure on the water inlet pipe can rotate around the water inlet pipe under the impact of the water flow, it can reduce and consume the resistance and impact force of the water flow on the water inlet pipe, which is conducive to the smooth progress of the hull and the extension of the water inlet pipe. service life.
进一步地,进水管的进水口开口朝上。具体地,进水管的下端为上翻式弧形结构,进水管的进水口开口朝上,这样设计的优点是可避免底部淤泥或泥沙吸入水管,堵塞水管。优选地,进水管的进水口处设有50-100目的滤网,其优点是避免池塘水体中的生物吸入到进水管道中。Further, the water inlet opening of the water inlet pipe faces upward. Specifically, the lower end of the water inlet pipe is an upturned arc structure, and the water inlet opening of the water inlet pipe faces upwards. The advantage of this design is that it can prevent the bottom silt or sand from being sucked into the water pipe and blocking the water pipe. Preferably, the water inlet of the water inlet is provided with a 50-100 mesh filter, which has the advantage of preventing organisms in the pond water from being sucked into the water inlet.
优选地,进水管为不锈钢材质,进水管的长度可调节。Preferably, the water inlet pipe is made of stainless steel, and the length of the water inlet pipe can be adjusted.
进一步地,所述旋转结构可以为套在进水管上的圆环,圆环的内径略大于进水管的直径,相邻的圆环之间还设有限位凸起,相邻的圆环被限位凸起隔开。Further, the rotating structure can be a ring sleeved on the water inlet pipe, the inner diameter of the ring is slightly larger than the diameter of the water inlet pipe, and there are stoppers between adjacent rings, and the adjacent rings are limited Bits are raised apart.
优选地,所述圆环为弹性材质,以缓冲圆环结构对进水管的撞击力,以及风浪和水流对进水管的冲击。Preferably, the ring is made of elastic material to buffer the impact force of the ring structure on the water inlet pipe, and the impact of wind, waves and water flow on the water inlet pipe.
进一步地,所述旋转结构也可以为套在进水管上的中空的筒状结构,相邻的两个筒状结构之间设有限位凸起,相邻的筒状结构之间还设有限位凸起,相邻的筒状结构被限位凸起隔开。Further, the rotating structure can also be a hollow cylindrical structure sleeved on the water inlet pipe, a limiting protrusion is provided between two adjacent cylindrical structures, and a limiting protrusion is also provided between adjacent cylindrical structures. Protrusions, adjacent cylindrical structures are separated by limiting protrusions.
优选地,所述筒状结构为弹性材质,以缓冲筒状结构对进水管的撞击力,以及风浪和水流对进水管的冲击。Preferably, the cylindrical structure is made of elastic material to buffer the impact force of the cylindrical structure on the water inlet pipe, and the impact of wind, waves and water flow on the water inlet pipe.
优选地,所述旋转结构包括套在进水管上的圆环和铰接于圆环上的叶片,铰接于圆环上的叶片的数量为两个或三个,相邻的两个旋转结构之间设有限位凸起,相邻的两个旋转结构被限位凸起隔开。铰接于圆环上的叶片在风浪和水流的冲击下晃动,可缓冲风浪以及水流对进水管的冲击力,并能在一定程度上搅动水体,增加水体溶氧,且有利于药液在水体中分布更为均匀。Preferably, the rotating structure includes a circular ring sleeved on the water inlet pipe and blades hinged on the circular ring. The number of blades hinged on the circular ring is two or three. A limiting protrusion is provided, and two adjacent rotating structures are separated by the limiting protrusion. The blades hinged on the ring sway under the impact of wind waves and water flow, which can buffer the impact force of wind waves and water flow on the water inlet pipe, and can stir the water body to a certain extent, increase the dissolved oxygen in the water body, and facilitate the liquid medicine in the water body more evenly distributed.
进一步地,所述船体驱动装置为驱动电机。Further, the hull driving device is a driving motor.
与现有技术相比,本实用新型的有益效果是:本实用新型通过设置喷药泵,可将储药罐内的药液抽到喷药管中继而喷洒到池塘中,无需人工泼洒药物,解决了人工施药效率低、劳动强度大、药物泼洒不均匀的问题。待药物喷洒完毕或需要稀释药物时或清洗储药罐时,可开启水泵,此时池塘下层的水体被抽入到储药罐中,能起到稀释药液、清洗储药罐,完成池塘上层与池塘下层水体交换的作用。在上下层水体交换的过程中,还使更多的药物进入到池塘下层,有利于药物对活动于池塘底层的鲤鱼更好地发挥防治作用。此外,在池塘下层的水体抽到储药罐继而从喷药管喷洒到池塘上层的过程中,水体与空气接触,提高了水体溶氧,同时水体中的有害物质释放到大气中,因此回到池塘的水体水质得到了显著改善,溶氧得到显著提高,降低了池塘氨氮含量,能显著降低鲤鱼疾病高发季节时的发病率。船体运行时,由于进水管上的旋转结构能在水流的冲击作用下绕着进水管转动,因此能减少和消耗水流对进水管的阻力和冲击力,有利于船体顺利前行并能延长进水管使用寿命。Compared with the prior art, the beneficial effect of the utility model is: the utility model can pump the medicine liquid in the medicine storage tank into the medicine spray pipe and then spray it into the pond by setting the medicine spray pump, without manually splashing the medicine, It solves the problems of low efficiency of manual pesticide application, high labor intensity and uneven spraying of drugs. After the medicine is sprayed or when the medicine needs to be diluted or the medicine storage tank is cleaned, the water pump can be turned on. At this time, the water in the lower layer of the pond is pumped into the medicine storage tank, which can dilute the medicine liquid, clean the medicine storage tank, and complete the upper layer of the pond. The role of exchange with the lower water body of the pond. In the process of water body exchange between the upper and lower layers, more drugs are also allowed to enter the lower layer of the pond, which is beneficial for the drugs to better play a preventive and control effect on the carp active in the bottom layer of the pond. In addition, during the process of pumping the water in the lower layer of the pond to the storage tank and then spraying it from the spray pipe to the upper layer of the pond, the water body is in contact with the air, which increases the dissolved oxygen in the water body, and at the same time, harmful substances in the water body are released into the atmosphere, thus returning to the air. The water quality of the pond has been significantly improved, the dissolved oxygen has been significantly increased, the ammonia nitrogen content in the pond has been reduced, and the incidence of carp diseases can be significantly reduced during the high-incidence season. When the hull is running, because the rotating structure on the water inlet pipe can rotate around the water inlet pipe under the impact of the water flow, it can reduce and consume the resistance and impact force of the water flow on the water inlet pipe, which is conducive to the smooth progress of the hull and the extension of the water inlet pipe. service life.
附图说明Description of drawings
图1为本实用新型的结构示意图;Fig. 1 is the structural representation of the utility model;
图2为本实用新型实施例1的水泵进水管的结构示意图;Fig. 2 is the structural representation of the water pump water inlet pipe of the utility model embodiment 1;
图3为本实用新型实施例2的水泵进水管的结构示意图;Fig. 3 is a schematic structural view of the water inlet pipe of the water pump in Embodiment 2 of the utility model;
图4为本实用新型实施例3的旋转结构的结构示意图;Fig. 4 is a structural schematic diagram of the rotating structure of Embodiment 3 of the present utility model;
图5为本实用新型的控制原理示意图;Fig. 5 is the schematic diagram of the control principle of the present utility model;
其中,1-船体、2-储药罐、3-旋转结构、4-限位凸起、5-水泵、6-喷药泵、7-喷药管、8-船体驱动装置;Among them, 1-hull, 2-drug storage tank, 3-rotating structure, 4-limiting protrusion, 5-water pump, 6-spraying pump, 7-spraying pipe, 8-hull driving device;
21-加药口、22-加水口;21-Dosing port, 22-Water port;
51-水泵的出水管、52-水泵的进水管、521-进水管的进水口;51-water outlet pipe of the water pump, 52-water inlet pipe of the water pump, 521-water inlet of the water inlet pipe;
31-圆环、32-筒状结构、33-叶片。31-ring, 32-tube structure, 33-blade.
具体实施方式Detailed ways
下面结合附图和实施例对本实用新型作进一步说明。Below in conjunction with accompanying drawing and embodiment the utility model is further described.
实施例1Example 1
如图1、图2及图5所示,一种鲤鱼养殖池塘药物喷洒装置,包括船体1,所述船体1上设有储药罐2、电源、控制器、水泵5、喷药泵6、喷药管7以及设置在船尾的船体驱动装置8,所述船体驱动装置为驱动电机,所述储药罐8内装有药液,喷药管7与喷药泵6的出液口相连通,喷药泵6的进液口与储药罐2的药液连通;储药罐的上端设有加药口21和加水口22,水泵的出水管51通过加水口伸入到储药罐2中,水泵的进水管52伸入到池塘水体中,进水管的进水口521离池塘底部的距离为10cm,伸入到池塘水体中的进水管上设有多个可绕进水管转动的旋转结构3;水泵5、喷药泵6、船体驱动装置8分别通过导线与控制器电连接,控制器通过导线与电源电连接;进水管的下端为上翻式弧形结构,进水管的进水口开口朝上;进水管的进水口处设有80目的滤网(图中未画出)。本实施例中,进水管为不锈钢材质,所述旋转结构为套在进水管上的圆环31,圆环31的内径略大于进水管的直径,相邻的圆环之间还设有限位凸起4,相邻的圆环被限位凸起隔开,所述圆环为弹性材质。As shown in Fig. 1, Fig. 2 and Fig. 5, a kind of carp culture pond medicine spraying device comprises hull 1, and described hull 1 is provided with medicine storage tank 2, power supply, controller, water pump 5, medicine spraying pump 6, The medicine spray pipe 7 and the hull driving device 8 arranged at the stern, the hull driving device is a drive motor, the medicine liquid is housed in the medicine storage tank 8, and the medicine spray pipe 7 communicates with the liquid outlet of the medicine spray pump 6, The liquid inlet of the spray pump 6 communicates with the liquid medicine of the medicine storage tank 2; the upper end of the medicine storage tank is provided with a medicine feeding port 21 and a water filling port 22, and the water outlet pipe 51 of the water pump extends into the medicine storage tank 2 through the water filling port , the water inlet pipe 52 of the water pump stretches into the pond water body, the water inlet 521 of the water inlet pipe is 10cm away from the bottom of the pond, and the water inlet pipe stretched into the pond water body is provided with a plurality of rotating structures 3 that can rotate around the water inlet pipe The water pump 5, the spraying pump 6, and the hull driving device 8 are electrically connected to the controller through the wires, and the controller is electrically connected to the power supply through the wires; the lower end of the water inlet pipe is an upturned arc structure, and the water inlet opening of the water inlet pipe faces Above; the water inlet of the water inlet is provided with an 80-mesh filter screen (not shown in the figure). In this embodiment, the water inlet pipe is made of stainless steel, and the rotating structure is a ring 31 sleeved on the water inlet pipe. 4, the adjacent rings are separated by the limit protrusion, and the rings are made of elastic material.
本实用新型通过设置喷药泵,可将储药罐内的药液抽到喷药管中继而喷洒到池塘中,无需人工泼洒药物,解决了人工施药效率低、劳动强度大、药物泼洒不均匀的问题。待药物喷洒完毕或需要稀释药物时或清洗储药罐时,可开启水泵,此时池塘下层的水体被抽入到储药罐中,能起到稀释药液、清洗储药罐,完成池塘上层与池塘下层水体交换的作用。在上下层水体交换的过程中,还使更多的药物进入到池塘下层,有利于药物对活动于池塘底层的鲤鱼更好地发挥防治作用。此外,在池塘下层的水体抽到储药罐继而从喷药管喷洒到池塘上层的过程中,水体与空气接触,提高了水体溶氧,同时水体中的有害物质释放到大气中,因此回到池塘的水体水质得到了显著改善,溶氧得到显著提高,降低了池塘氨氮含量,能显著降低鲤鱼疾病高发季节时的发病率。船体运行时,由于进水管上的旋转结构能在水流的冲击作用下绕着进水管转动,因此能减少和消耗水流对进水管的阻力和冲击力,有利于船体顺利前行并能延长进水管使用寿命。由于进水管的下端为上翻式弧形结构,进水管的进水口开口朝上,可避免底部淤泥或泥沙吸入水管,堵塞水管。进水管的进水口处设有80目的滤网,其优点是能避免池塘水体中的生物吸入到进水管道中。The utility model can pump the medicine liquid in the medicine storage tank into the medicine spray pipe and then spray it into the pond by setting the medicine spray pump, without manual spraying of the medicine, which solves the problems of low efficiency of manual medicine application, high labor intensity and difficulty in spraying the medicine. Even problem. After the medicine is sprayed or when the medicine needs to be diluted or the medicine storage tank is cleaned, the water pump can be turned on. At this time, the water in the lower layer of the pond is pumped into the medicine storage tank, which can dilute the medicine liquid, clean the medicine storage tank, and complete the upper layer of the pond. The role of exchange with the lower water body of the pond. In the process of water body exchange between the upper and lower layers, more drugs are also allowed to enter the lower layer of the pond, which is beneficial for the drugs to better play a preventive and control effect on the carp active in the bottom layer of the pond. In addition, during the process of pumping the water in the lower layer of the pond to the storage tank and then spraying it from the spray pipe to the upper layer of the pond, the water body is in contact with the air, which increases the dissolved oxygen in the water body, and at the same time, harmful substances in the water body are released into the atmosphere, thus returning to the air. The water quality of the pond has been significantly improved, the dissolved oxygen has been significantly increased, the ammonia nitrogen content in the pond has been reduced, and the incidence of carp diseases can be significantly reduced during the high-incidence season. When the hull is running, because the rotating structure on the water inlet pipe can rotate around the water inlet pipe under the impact of the water flow, it can reduce and consume the resistance and impact force of the water flow on the water inlet pipe, which is conducive to the smooth progress of the hull and the extension of the water inlet pipe. service life. Because the lower end of the water inlet pipe is an upturned arc-shaped structure, the water inlet opening of the water inlet pipe faces upwards, which can prevent bottom silt or silt from being sucked into the water pipe and blocking the water pipe. The water inlet of the water inlet is provided with an 80-mesh filter, which has the advantage of preventing organisms in the pond water from being sucked into the water inlet.
实施例2Example 2
如图3所示,本实施例与实施例1的区别在于,所述旋转结构3为套在进水管上的中空的筒状结构32,相邻的两个筒状结构之间设有限位凸起4,相邻的筒状结构之间还设有限位凸起,相邻的筒状结构被限位凸起4隔开,所述筒状结构也为弹性材质。As shown in Figure 3, the difference between this embodiment and Embodiment 1 is that the rotating structure 3 is a hollow cylindrical structure 32 sleeved on the water inlet pipe, and a limiting protrusion is provided between two adjacent cylindrical structures. Protrusion 4, and a limit protrusion is also provided between the adjacent cylindrical structures, and the adjacent cylindrical structures are separated by the limit protrusion 4, and the cylindrical structure is also made of elastic material.
实施例3Example 3
如图4所示,本实施例与实施例1的区别在于,所述旋转结构3包括套在进水管上的圆环31和铰接于圆环上的叶片33,铰接于圆环上的叶片的数量为三个,相邻的两个旋转结构之间设有限位凸起4,相邻的两个旋转结构被限位凸起隔开。铰接于圆环上的叶片在风浪和水流的冲击下晃动,可缓冲风浪以及水流对进水管的冲击力,并能在一定程度上搅动水体,增加水体溶氧,且有利于药液在水体中分布更为均匀。As shown in Figure 4, the difference between this embodiment and Embodiment 1 is that the rotating structure 3 includes a ring 31 sleeved on the water inlet pipe and a blade 33 hinged on the ring, and the blades 33 hinged on the ring The number is three, and a limiting protrusion 4 is arranged between two adjacent rotating structures, and the two adjacent rotating structures are separated by the limiting protrusions. The blades hinged on the ring sway under the impact of wind waves and water flow, which can buffer the impact force of wind waves and water flow on the water inlet pipe, and can stir the water body to a certain extent, increase the dissolved oxygen in the water body, and facilitate the liquid medicine in the water body more evenly distributed.
上述实施例是为了便于更好地理解本实用新型,但并用于不限定本实用新型。上述实施例中的实验方法,如无特殊说明,均为常规方法。The above-mentioned embodiments are for better understanding of the utility model, but are not intended to limit the utility model. The experimental methods in the above examples are conventional methods unless otherwise specified.
以上所述仅是本实用新型的优选实施方式,应当指出:对于本技术领域的普通技术人员来说,在不脱离本实用新型原理的前提下,还可以做出若干改进,这些改进应视为本实用新型的保护范围。The above is only a preferred embodiment of the utility model, and it should be pointed out that for those of ordinary skill in the art, some improvements can be made without departing from the principle of the utility model, and these improvements should be regarded as Protection scope of the present utility model.
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Cited By (5)
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CN109463373A (en) * | 2018-12-13 | 2019-03-15 | 赖发兰 | A kind of insect prevention medicament spray appliance used for aquiculture |
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CN112262802A (en) * | 2020-10-26 | 2021-01-26 | 上海海洋大学 | Integrated system and method for mobile quantitative feeding and spraying for aquaculture |
CN112753625A (en) * | 2021-01-11 | 2021-05-07 | 浙江省海洋水产研究所 | Medicine applying device and method for marine net cage cultured fishes |
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CN110150193A (en) * | 2018-04-16 | 2019-08-23 | 天津市水生动物疫病预防控制中心 | A kind of herbal sprinkling device reducing carp disease incidence |
CN110150193B (en) * | 2018-04-16 | 2024-02-02 | 天津市水生动物疫病预防控制中心 | Can reduce medicine sprinkler of carp morbidity |
CN109463373A (en) * | 2018-12-13 | 2019-03-15 | 赖发兰 | A kind of insect prevention medicament spray appliance used for aquiculture |
CN109463373B (en) * | 2018-12-13 | 2021-06-22 | 赖发兰 | Insect-preventing agent spraying equipment for aquaculture |
CN112262802A (en) * | 2020-10-26 | 2021-01-26 | 上海海洋大学 | Integrated system and method for mobile quantitative feeding and spraying for aquaculture |
CN112262802B (en) * | 2020-10-26 | 2021-07-20 | 上海海洋大学 | Integrated system and method for mobile quantitative feeding and spraying for aquaculture |
US11382314B2 (en) | 2020-10-26 | 2022-07-12 | Shanghai Ocean University | Mobile quantitative feeding-spraying integrated system and method for aquaculture |
CN112753625A (en) * | 2021-01-11 | 2021-05-07 | 浙江省海洋水产研究所 | Medicine applying device and method for marine net cage cultured fishes |
CN114342841A (en) * | 2021-12-29 | 2022-04-15 | 广西壮族自治区水产科学研究院 | A kind of fish cage culture drug device and drug method |
CN114342841B (en) * | 2021-12-29 | 2022-12-06 | 广西壮族自治区水产科学研究院 | Medication device and method for fish cage culture |
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