TWM351946U - Automatic oxygen supplying device for fish farm - Google Patents

Automatic oxygen supplying device for fish farm Download PDF

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Publication number
TWM351946U
TWM351946U TW97212318U TW97212318U TWM351946U TW M351946 U TWM351946 U TW M351946U TW 97212318 U TW97212318 U TW 97212318U TW 97212318 U TW97212318 U TW 97212318U TW M351946 U TWM351946 U TW M351946U
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TW
Taiwan
Prior art keywords
air compressor
air
fishing rod
water
pressure
Prior art date
Application number
TW97212318U
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Chinese (zh)
Inventor
qing-song Zhuo
Zhao-Qun Jian
Original Assignee
Univ Nat Taipei Technology
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Publication date
Application filed by Univ Nat Taipei Technology filed Critical Univ Nat Taipei Technology
Priority to TW97212318U priority Critical patent/TWM351946U/en
Publication of TWM351946U publication Critical patent/TWM351946U/en

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Description

M3 51946 八、新型說明: 【新型所屬之技術領域】 本創作係有關一種漁塭自動加氧裝置,尤指一種利用 自然之風力帶動風車轉動,再用以驅動空壓機運轉加氧之 設計者。 【先前技術】M3 51946 VIII. New Description: [New Technology Field] This creation is about a kind of automatic oxygenation device for fishing rods, especially a designer who uses natural wind to drive the windmill to rotate and then drives the air compressor to operate oxygen. . [Prior Art]

按,水產養殖通常採取高密度之養殖方式,因此常會 有有機廢料和未吃完的飼料㈣堆積,而這些東西非常可 能造成極多藻類聚生(優養化)的現象;而在優養化之狀況 下’需氧量將會增加,如果氧氣的供應不足,養殖作物將 出現食慾降低的現象,而且會很容易感染疾病和受傷。 、次按’-般水產養殖業係利用水車打水,用以對漁堪 池水進行加氧之動作,但水車之運轉需要動力,傳統之做 法是由馬達提供動力,而馬達之動力則㈣來自於電力之 ;然而’在此地球能源已逐漸枯竭之高電價時代若 2加利用存在於自然:界之風力,轉換成對漁埋池水進行 2之動力,則可減少電力之使用,降低地球資源耗竭之 【新型内容】 晉f創作之主要目的’係欲提供-種漁埋自動加氧裝 二:ίΤΜ機運轉,而將空氣打入漁埋之池水 加乳,具有減少使用電力之功效。 ^ 為達上述功效,本創作之結構特徵,係包括有·· —空壓機’將空氣加壓; M351946 一風車,可為垂直式或水平式之型態,用以驅動該空 壓機運轉; x工 輸送管,將該空壓機之加壓空氣輸送至漁塭之池水 中,而藉細化器或擴散器提高水中溶氧量;以及 一壓力感測器,設置於該輸送管,並連接至水車之電 力控制器,當感測到該空壓機之加壓力不足,則自動控制 該水車運轉者。 二 【實施方式】 首先,請參閱第一圖所示,本創作係包括有: 一空壓機(ίο),將空氣加壓; 一風車(20),可為垂直式或水平式之型態,用以驅動 該空壓機(10)運轉; 輸送管(30),將該空壓機(10)之加壓空氣輸送至漁塭 之池水中,而藉細化器或擴散器(40)提高水中溶氧量;以 及 ’ 一壓力感測器(50),設置於該輸送管(3〇),並連接至 水車(60)之電力控制器(70),當感測到該空壓機(1〇)之加 壓力不足,則自動控制該水車(60)運轉者。 基於如是之構成,本創作藉由空壓機(1〇)將空氣加壓 輪送至漁媪之池水中,或是利用水車(6〇)打水,而提高漁 4池水中之溶氧量;於是,當自然之風力足以讓風車(2〇) 驅動空壓機(10)運轉時,該空壓機(1〇)乃對漁塩池水產生 加氣之效果,而當自然之風力不足以讓風車(2〇)驅動空壓 機(10)運轉時,該壓力感測器(50)則經電力控制器(70)讓 水車(60)通電運轉,切換至由水車(60)對漁塭池水產生加 M3 51946 氧之效果。 此外,該電力控制器⑽另連接有太陽能板⑽與蓄 電池(81”其中,驅動該水車⑽)運轉所需之電力,優先 使用來自太陽能板⑽所產生之電力,當太陽能板⑽所 f生之電力不料’則由市電取代而成為電力提供者;又, 右不需使用太陽能板⑽)所產生之電力時,則將其電力儲 存於蓄電池(81),而若蓄電池⑻)充飽之後,乃將回售給 電力公司。 是以,本創作利用自然之風力帶動風車(20)轉動,再 用以驅動空壓機(10)運轉加氧’而可進一步由壓力感測器 (50)依據風力之大小,自動控制該水車(6〇)是否通電運轉 加氧’乃在風力打氣與水車打水之兩種加氧機制間切換, 用以持續對漁埋池水產生加氧之效果,提升養殖之經濟效 益’藉此具有減少使用電力之功效。 綜上所述,本創作所揭示之構造,為昔所無,且確能 逹到預期之功效,並具可供產業利用性,完全符合新型專 利要件,析請貴審查委員核賜專利,以勵創新,無任德感。 惟,上述所揭露之圖式、說明,僅為本創作之較佳實 施例,大凡熟悉此項技藝人士,依本案精神範疇所作之修 飾或等效變化,仍應包括在本案申請專利範圍内。 M3 51946 【圖式簡單說明】 第一圖係本創作之結構說明圖。 【主要元件符號說明】 (10)空壓機 (20)風車 (30)輸送管 (40)擴散器 (50)壓力感測器 (60)水車 (70)電力控制器 (8 0)太陽能板 (81)蓄電池According to the aquaculture, aquaculture usually adopts a high-density farming method. Therefore, organic waste and uneaten feed (4) are often accumulated, and these things are very likely to cause a large number of algae accumulation (improvement); Under the condition that 'oxygen demand will increase, if the supply of oxygen is insufficient, the crops will have a loss of appetite, and it will be easy to contract diseases and injuries. The second-time aquaculture industry uses water trucks to pump water to oxygenate the fish pond water. However, the operation of the water tank requires power. The traditional method is to provide power from the motor, while the motor power (4) comes from In the case of electricity; however, in the era of high electricity prices in which the earth's energy has gradually dried up, if the use of natural winds: the winds of the world, the conversion to the power of the immersed pool water, can reduce the use of electricity and reduce the earth's resources. Exhausted [new content] The main purpose of the creation of Jin F is to provide - a kind of automatic oxygenation of fishing and burial: the operation of the machine, and the air into the pool of water and milk, has the effect of reducing the use of electricity. ^ In order to achieve the above-mentioned effects, the structural features of this creation include the air compressor to pressurize the air; M351946 a windmill, which can be a vertical or horizontal type to drive the air compressor. a transport pipe for conveying the pressurized air of the air compressor to the pool water of the fishing rod, and increasing the dissolved oxygen amount in the water by means of a refiner or a diffuser; and a pressure sensor disposed on the conveying pipe; And connected to the power controller of the waterwheel, when it is sensed that the pressure of the air compressor is insufficient, the waterwheel operator is automatically controlled. [Embodiment] First, please refer to the first figure. The creation includes: an air compressor (ίο) to pressurize the air; a windmill (20), which can be vertical or horizontal. It is used to drive the air compressor (10) to operate; the conveying pipe (30), the pressurized air of the air compressor (10) is sent to the pool water of the fishing rod, and is improved by the refiner or the diffuser (40). The amount of dissolved oxygen in the water; and 'a pressure sensor (50), disposed in the delivery tube (3〇), and connected to the power controller (70) of the waterwheel (60), when the air compressor is sensed ( If the pressure of 1〇) is insufficient, the waterwheel (60) operator will be automatically controlled. Based on the composition of this model, the air is pressurized by air compressor (1〇) to the pool of the fishing rod, or the water tanker (6〇) is used to pump water to increase the dissolved oxygen in the 4 pool water. Therefore, when the natural wind is enough for the windmill (2〇) to drive the air compressor (10), the air compressor (1〇) is an effect of refueling the water in the fishing pond, and when the natural wind is insufficient When the windmill (2〇) is driven to operate the air compressor (10), the pressure sensor (50) energizes the water wheel (60) via the power controller (70), and switches to the water wheel (60). The pool water produces the effect of adding M3 51946 oxygen. In addition, the power controller (10) is further connected with the power required for the solar panel (10) and the battery (81" to drive the waterwheel (10) to operate, preferably using the power generated by the solar panel (10), when the solar panel (10) is The power is unexpectedly replaced by the mains and becomes the power provider; in addition, when the power generated by the solar panel (10) is not required, the power is stored in the battery (81), and if the battery (8) is fully charged, It will be sold back to the power company. Therefore, this creation uses natural wind to drive the windmill (20) to rotate, and then drives the air compressor (10) to operate oxygenation, which can be further determined by the pressure sensor (50). The size and automatic control of whether the waterwheel (6〇) is energized and operated with oxygen is to switch between the two oxygenation mechanisms of wind pumping and water pumping to continuously increase the effect of oxygenation on the water in the tank. The economic benefit 'has the effect of reducing the use of electricity. In summary, the structure revealed by this creation is unprecedented, and can indeed achieve the expected effect, and has industrial availability, completely With the new patent requirements, please ask the review committee to grant the patent to encourage innovation and no sense of morality. However, the above-mentioned drawings and descriptions are only the preferred embodiments of this creation, and those familiar with this skill are familiar with this technology. Modifications or equivalent changes made in accordance with the spirit of the case shall still be included in the scope of the patent application in this case. M3 51946 [Simple description of the diagram] The first diagram is a structural explanatory diagram of the creation. [Key symbol description] (10 Air compressor (20) windmill (30) duct (40) diffuser (50) pressure sensor (60) waterwheel (70) power controller (80) solar panel (81) battery

Claims (1)

M3 51946 九、申請專利範圍: 1 ·一種漁塭自動加氧裝置,係包括有: 一空壓機,將空氣加壓; 一風車,用以驅動該空壓機運轉; 輸送管,將該空壓機之加壓空氣輸送至漁堪之池水 中;以及 一壓力感測器,設置於該輸送管,並連接至水車之電 力控制器,當感測到該空壓機之加壓力不足,則自動控制 該水車運轉者。 2·如申請專利範圍第1項所述之漁塭自動加氧裝 置’其中,該電力控制器另連接有太陽能板與蓄電池。 3.如申請專利範圍第1或2項所述之漁塭自動加氧 装置’其中,該風車為垂直式或水平式之型態。 4·如申請專利範圍第1或2項所述之漁塭自動加氧 裝置,其中,該輸送管藉細化器或擴散器提高水中溶氧量。M3 51946 IX. Patent application scope: 1 · A fishing rod automatic oxygen adding device includes: an air compressor to pressurize air; a windmill to drive the air compressor to operate; a conveying pipe, the air pressure The pressurized air of the machine is sent to the pool water of the fisherman; and a pressure sensor is disposed on the conveying pipe and connected to the power controller of the waterwheel. When the pressure of the air compressor is sensed, the automatic pressure is automatically Control the waterwheel operator. 2. The fishing rod automatic oxygenating device according to claim 1, wherein the power controller is further connected with a solar panel and a battery. 3. The fishing rod automatic oxygenating device according to claim 1 or 2 wherein the windmill is of a vertical type or a horizontal type. The fishing rod automatic oxygen adding device according to claim 1 or 2, wherein the conveying pipe increases the dissolved oxygen amount in the water by means of a refiner or a diffuser.
TW97212318U 2008-07-11 2008-07-11 Automatic oxygen supplying device for fish farm TWM351946U (en)

Priority Applications (1)

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TW97212318U TWM351946U (en) 2008-07-11 2008-07-11 Automatic oxygen supplying device for fish farm

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Application Number Priority Date Filing Date Title
TW97212318U TWM351946U (en) 2008-07-11 2008-07-11 Automatic oxygen supplying device for fish farm

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TWM351946U true TWM351946U (en) 2009-03-01

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104234923A (en) * 2014-09-10 2014-12-24 长沙理工大学 Wave energy oxygen supply device using multiple floaters

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104234923A (en) * 2014-09-10 2014-12-24 长沙理工大学 Wave energy oxygen supply device using multiple floaters

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