TWM436335U - Cultivation device structure for larval fish - Google Patents

Cultivation device structure for larval fish Download PDF

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Publication number
TWM436335U
TWM436335U TW101203805U TW101203805U TWM436335U TW M436335 U TWM436335 U TW M436335U TW 101203805 U TW101203805 U TW 101203805U TW 101203805 U TW101203805 U TW 101203805U TW M436335 U TWM436335 U TW M436335U
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TW
Taiwan
Prior art keywords
tank
fry breeding
fry
breeding
monitoring
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TW101203805U
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Chinese (zh)
Inventor
jin-lin Xu
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Riant Biotech Corp
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Priority to TW101203805U priority Critical patent/TWM436335U/en
Publication of TWM436335U publication Critical patent/TWM436335U/en

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Description

M436335 .. 五、新型說明: 【新型所屬之技術領域】 本創作為提供一種魚苗養殖裝置,尤指一 種生產運銷整合、雙重獲利以及雲端監控的魚 苗養殖裝置之結構。 【先前技術】 按,習用水產養殖技術係利用開闊魚池進 行養殖,當魚苗需要進行販售時,往往須進行 • 撈捕,此一動作將造成魚苗受傷或是夭折,耗 損成本,然而,現今土地寸土寸金,開放式空 間利用率不高,更是造成成本增加之主因,因 此遂衍生出貨櫃式之殼體養殖裝置,然而,貨 櫃式因屬於密閉空間,養殖上需要空調及換水 以維持其養殖品質,除造成能量消耗外,更無 法掌控其本身之養殖過程之品質。 是以,要如何解決上述習用之問題與缺 • 失,即為本創作之創作人與從事此行業之相關 廠商所亟欲研究改善之方向所在者。 【新型内容】 故,本創作之創作人有鑑於上述缺失,乃 搜集相關資料,經由多方評估及考量,並以從 事於此行業累積之多年經驗,經由不斷試作及 修改,始設計出此種生產運銷整合、雙重獲利 以及雲端監控的魚苗養殖裝置之結構新型專利 者0 3 •養殆ί創作之主要目的在於··為針射習用魚苗 °又備所存在之耗能、無法保證:g:養殖 雙重::題點加以突破’達到生產運銷整合、 性。獲利、節能減碳以及雲端監控之實用進步 裳置:上述之目的,本創作-種魚苗養殖 貨櫃係包含至少一貨櫃態樣之殼體, 系統設至少一水產養殖系統,水產養殖 '、L括:至少一魚苗養殖槽、 養殖區域、石, ^ 夕 凓類 苗表祐ί 至少一監控裝置以及中控裝置,魚 — 槽底部係分別裝設孔隙過濾裝置,且备 =殖::係裝設ΡΗ值感測裝置、含氧量檢測 裝置,、t鹽感測裝置及流量控制裝置之監控 另外,養殖槽内係界定藻類養殖區域, 中控殖區域内亦裂設監控裝置,另外, 工衣置係盘gi: k壯 連接,帝端二:工、置及雲端資料庫裝置資訊 置資訊連接,B \置係與至少一網路通訊裝 理單元及預慜控;ΐ資料庫裝置係包括品質管 更包括:層析:C ’水產養殖系統 附池以;5分ϋ 〜過濾池、齒化物吸附之吸 槽之底部,且、尚喻濾池—端係連通魚苗養殖 監控裝置,過5 ::::係裝設濁度感測裝置之 通吸附池一 *者離連通魚苗養殖槽處係連 之監控裴置,、吸附池内係裝設胺鹽感測裝置 '成菌/也一蠕係連通吸附池背離過 4 M436335 .. 濾池處,且滅菌池另一端係連通魚苗養殖槽頂 部,並滅菌池内係裝設氧化還原電位感測裝置 之監控裝置,藉由上述之結構,係可在貨櫃有 效空間内,同時養殖不同經濟作物外,更可有 效利用監控裝置、中控裝置、雲端資料庫裝置 以及網路通訊裝置加以監控,具備生產運銷整 合、雙重獲利、節能減碳以及雲端監控之優點。 鲁 【實施方式】 為達成上述目的及功效,本創作所採用之 技術手段及構造,茲繪圖就本創作較佳實施例 詳加說明其特徵與功能如下,俾利完全了解。 請參閱第一圖所示,係為本創作較佳實施 例之立體組合圖,由圖中可清楚看出本創作一 種魚苗養殖裝置之結構,係包含至少一貨櫃態 樣之殼體1,該貨櫃態樣之殼體1内係裝設至少 馨 一水產養殖系統2,該水產養殖系統2係包括: 至少一魚苗養殖槽2 1、至少一藻類養殖區域 212、至少一監控裝置3以及一中控裝置4,該 魚苗養殖槽2 1底部係分別裝設一孔隙過濾裝置 2 1 1,且魚苗養殖槽2 1内係裝設pH值感測裝 置、含氧量檢測裝置、硝酸鹽感測裝置及流量 控制裝置之監控裝置3,並該魚苗養殖槽21内 係界定該藻類養殖區域2 1 2,此外,該藻類養殖 區域212内亦裝設該監控裝置3,另外,該中控 5 M436335 ,.裝置4係與該監控裝置3及一雲端資料庫裝置5 資訊連接,該雲端資料庫裝置5係與至少一網 路通訊裝置6資訊連接,且該雲端資料庫裝置5 係包括一品質管理單元5 1及一預警控制單元 52,其中,該水產養瘦系統2更包括:一層析 過濾之過濾池2 2、一鹵化物吸附之吸附池2 3以 及一滅菌池2 4,該過遽池2 2 —端係連通該魚苗 養殖槽21之底部,且該過濾池2 2内係裝設濁 • 度感測裝置之監控裝置3,該過濾池2 2背離連 通該魚苗養殖槽2 1處係連通該吸附池2 3 — 端,該吸附池2 3内係裝設胺鹽感測裝置之監控 裝置3,該滅菌池2 4 —端係連通該吸附池2 3背 離該過濾池2 2處,且該滅菌池2 4另一端係連 通該魚苗養殖槽21頂部,並該滅菌池24内係 裝設氧化還原電位感測裝置之監控裝置3。 藉由上述之結構、組成設計,茲就本創作 • 之使用作動情形說明如下,請同時配合參閱第 一圖、第二圖、第三圖及第四圖所示,係為本 創作較佳實施例之立體組合圖、水產養殖系統 動作示意圖、雲端動作示意圖以及運送動作示 意圖,由圖中可清楚看出,魚苗養殖槽21内係 界定藻類養殖區域2 1 2,此一設計係可同時養殖 魚苗以及藻類達到雙重獲利之優點,同時利用 藻類可去除水中的氮磷,並具有吸收調節溫室 氣體的功能,同時利用過濾池2 2的層析過濾、 6 M436335 . 吸附池2 3將鹵化物吸附以及滅菌池2 4進行殺 菌,上述之過渡池2 2、吸附池2 3以及殺菌池2 4係可與魚苗養殖槽2 1設置於相同之貨櫃態樣 之殼體1内或是分開在不同之貨櫃態樣之殼體1 間,此外,孔隙過濾裝置2 1 1係可初步提供基 本的過濾,藉由上述之設備,係可維持水中品 質穩定,同時裝設於水產養殖系統2内之監控 裝置3係進一步可記錄水中各項物化及生理相 φ 關條件,並傳送至中控系統4加以匯整上傳置 雲端資料庫裝置5,雲端資料庫裝置5係利用品 質管理單元51及預警控制單元52加以監控並 建立生產履歷以供網路通訊裝置6進行查詢以 及操控,除此之外,當水質等各項條件出現異 常時,除可照以往人工手動調控外,更會加以 警示並調控至先前所統計出之最佳條件,以達 到自動決策之優點,另外,貨櫃態樣之殼體1 • 運輸方便,可有效降低魚苗撈捕更換環境之天 折率。 惟,以上所述僅為本創作之較佳實施例而 已,非因此即侷限本創作之專利範圍,故舉凡 運用本創作說明書及圖式内容所為之簡易修飾 及等效結構變化,均應同理包含於本創作之專 利範圍内,合予陳明。 綜上所述,本創作之魚苗養殖裝置之結構 於使用時,為確實能達到其功效及目的,故本 7 M436335 創作誠為一實用性優異之創作,為符合新型專 利之申請要件,爰依法提出申請,盼 審委早 曰賜准本創作,以保障創作人之辛苦創作,倘 若 鈞局審委有任何稽疑,請不吝來函指示, 創作人定當竭力配合,實感德便。 M436335 立 之 例 施 實 佳 较 JUJ1 作 1 創 明本 說為 單係 簡 式圖 圖一 t第 合 系 殖 養 產 水 之 例 施 實 佳 較 作 創 本 。為 圖係 圖 二 第 圖 三 第 圖 四 第 動為圖為圖 統係意係意 示 作 端 雲 之 例 施 實 。佳 圖較 意作 示創 作本 示 作 送 il 之 例 施 實 佳 較 作 創 本 M436335 【主要元件符號說明】 殼體 …1 水產養瘦系統 …2 魚苗養殖槽 …21 孔隙過濾裝置 ."211 藻類養殖區域 …212 過遽池 … 2 2 吸附池 … 23 滅菌池 … 24 監控裝置 …3 中控裝置 … 4 雲端資料庫裝置…5 品質管理單元 ."51 預警控制單元 …52 網路通訊裝置 6M436335 .. V. New description: [New technical field] This creation is to provide a fry breeding device, especially a structure for producing fish farming units integrating production and marketing, double profit and cloud monitoring. [Prior Art] According to the practice, the aquaculture technology system uses open fish ponds for breeding. When the fry need to be sold, it is often necessary to carry out fishing. This action will cause the fry to be injured or died, and the cost is lost. However, the current land The size of the open space is not high, and it is the main cause of the increase in cost. Therefore, the container-type housing culture device is derived. However, the container type is a confined space, and the air conditioning and water exchange are required to maintain the culture. The quality of aquaculture, in addition to causing energy consumption, is even less able to control the quality of its own aquaculture process. Therefore, how to solve the problems and shortcomings of the above-mentioned practices is the direction of the creators of the creation and the relevant manufacturers engaged in this industry. [New content] Therefore, the creators of this creation, in view of the above-mentioned shortcomings, are collecting relevant materials, and through multi-party evaluation and consideration, and through years of experience accumulated in this industry, through continuous trial and modification, they have designed such production. The new type of patent for the structure of fish-fed breeding equipment for transportation and marketing integration, double profit and cloud monitoring 0 3 • The main purpose of the creation of the 殆 殆 殆 在于 在于 为 针 针 针 针 针 针 针 针 针 针 针 针 针 针 针 ° ° ° ° ° ° ° ° ° ° ° ° ° ° ° ° Breeding double:: The problem is to break through 'to achieve production and marketing integration, sex. Practical advances in profitability, energy conservation and carbon reduction, and cloud monitoring: For the above purposes, the creation-species of the fry breeding container includes at least one container-like shell, the system is provided with at least one aquaculture system, aquaculture ', L Included: at least one fry breeding tank, culture area, stone, ^ 凓 凓 苗 佑 At least one monitoring device and central control device, the bottom of the fish-tank is equipped with a pore filtering device, and ready for: Monitoring of the ΡΗ value sensing device, the oxygen content detecting device, the t salt sensing device and the flow control device. In addition, the culture tank defines the algae culture area, and the monitoring unit is also cracked in the central control area. Clothing set gi: k strong connection, emperor two: work, set and cloud database device information information connection, B \ system and at least one network communication unit and pre-control; ΐ database system Including the quality tube includes: chromatography: C 'aquaculture system attached to the pool; 5 minutes 〜 ~ filter tank, the bottom of the suction tank of the tooth adsorption, and, also known as the filter - end system connected to the fry breeding monitoring device, 5 ::: : The monitoring tank of the turbidity sensing device is connected to the connected fry breeding tank, and the amine salt sensing device is installed in the adsorption tank. The pool is separated from the 4 M436335 .. filter tank, and the other end of the sterilization tank is connected to the top of the fry breeding tank, and the sterilization tank is equipped with a monitoring device for the oxidation-reduction potential sensing device, which is effective in the container by the above structure. In the space, while breeding different cash crops, it can effectively monitor and control the monitoring device, the central control device, the cloud database device and the network communication device. It has the advantages of production and marketing integration, double profit, energy saving and cloud monitoring. . Lu [Embodiment] In order to achieve the above objectives and effects, the technical means and structure adopted by this creation, the drawing is based on the preferred embodiment of the creation, and its features and functions are as follows. Please refer to the first figure, which is a three-dimensional combination diagram of a preferred embodiment of the present invention. It can be clearly seen from the figure that the structure of a fry breeding device of the present invention comprises at least one container-like casing 1 . The container body 1 is provided with at least a single aquaculture system 2, and the aquaculture system 2 includes: at least one fry breeding tank 21, at least one algae culture area 212, at least one monitoring device 3, and a middle The control device 4 is provided with a pore filtering device 21 1 at the bottom of the fry breeding tank 2 1 , and a pH sensing device, an oxygen content detecting device and a nitrate sensing device are installed in the fry breeding tank 21 And the monitoring device 3 of the flow control device, and the fish culture tank 21 defines the algae culture area 2 1 2, in addition, the monitoring device 3 is also installed in the algae culture area 212, and the central control 5 M436335 The device 4 is connected to the monitoring device 3 and a cloud database device 5, and the cloud database device 5 is connected to at least one network communication device 6, and the cloud database device 5 includes a quality management unit. 5 1 and The early warning control unit 52, wherein the aquaculture system 2 further comprises: a chromatographic filtration filter 2, a halide-adsorbed adsorption cell 2 3 and a sterilization tank 24, the peri-cell 2 2 end Connected to the bottom of the fry breeding tank 21, and the filter tank 2 2 is equipped with a monitoring device 3 of the turbidity sensing device, and the filter tank 2 is connected away from the fry breeding tank to connect the adsorption tank. 2 3 - the end of the adsorption tank 23 is equipped with a monitoring device 3 of an amine salt sensing device, the sterilization tank 24 4 end is connected to the adsorption pool 2 3 away from the filter pool 2 2, and the sterilization pool The other end is connected to the top of the fry breeding tank 21, and the monitoring device 3 of the redox potential sensing device is installed in the sterilization tank 24. With the above structure and composition design, the following is the description of the use of this creation. Please refer to the first, second, third and fourth figures for better implementation of this creation. The three-dimensional combination diagram, the schematic diagram of the aquaculture system, the schematic diagram of the movement of the cloud, and the schematic diagram of the transportation operation, it can be clearly seen from the figure that the fry breeding tank 21 defines the algae culture area 2 1 2, which can simultaneously raise the fry And algae achieve the advantage of double profit, while using algae to remove nitrogen and phosphorus in water, and has the function of absorbing and regulating greenhouse gases, while using chromatographic filtration of filter tank 2 2, 6 M436335. adsorption tank 2 3 adsorption of halide And the sterilizing tank 24 is sterilized, and the above-mentioned transition tank 2, the adsorption tank 2 3 and the sterilizing tank 24 can be arranged in the same container body 1 as the fry breeding tank 21 or separately. In the case of the container 1 of the container, in addition, the pore filter unit 21 1 can provide basic filtration, and the above equipment can maintain the quality of the water in a stable manner. The monitoring device 3 in the aquaculture system 2 can further record the physicochemical and physiological phase conditions in the water, and transfer it to the central control system 4 for collection and uploading of the cloud database device 5, and the cloud database device 5 is utilized. The quality management unit 51 and the early warning control unit 52 monitor and establish a production history for the network communication device 6 to perform inquiry and control. In addition, when various conditions such as water quality are abnormal, in addition to manual manual control, It will also be alerted and adjusted to the best conditions previously calculated to achieve the advantages of automatic decision-making. In addition, the container of the container aspect 1 • Convenient transportation can effectively reduce the rate of the fish fry to replace the environment. However, the above description is only a preferred embodiment of the present invention, and thus does not limit the scope of the patent of the present invention. Therefore, all the simple modifications and equivalent structural changes using the present specification and the schema should be the same. It is included in the scope of this creation patent and is given to Chen Ming. In summary, the structure of the fry breeding device of the present invention can achieve its efficacy and purpose when used, so the creation of this 7 M436335 is a practical and excellent creation, in order to meet the requirements of the new patent application, To file an application, I hope that the trial committee will grant this creation as early as possible to protect the creators' hard work. If there is any doubt in the ruling committee, please do not hesitate to give instructions. The creators will try their best to cooperate and feel good. The example of M436335 is better than that of JUJ1. The example of this is a single-line simplified diagram. The example of the t-combination system is better than the creation. For the diagram, Figure 2, Figure 3, Figure 4, and Figure 4 are diagrams of the system. Jiatu prefers to create this example. The example of this is to send il. It is better than the creation of M436335. [Main component symbol description] Housing...1 Aquatic slimming system...2 Fry breeding tank...21 Pore filter device."211 Algae culture area...212 Over-tank... 2 2 Adsorption tank... 23 Sterilization tank... 24 Monitoring device...3 Central control unit... 4 Cloud database unit...5 Quality management unit."51 Early warning control unit...52 Network communication unit 6

Claims (1)

M436335 ..六、申請專利範圍: 1 、一種魚苗養殖裝置之結構,係包含至少 殼體,該殼體内係裝設至少一水產養殖 統,該水產養殖系統係包括: 至少一魚苗養殖槽; 至少一藻類養殖區域,該藻類養殖區域 界定於該魚苗養殖槽内; 至少一監控裝置,該監控裝置係裝設於 • 魚苗養殖槽内以及該藻類養殖區域内; 及 一中控裝置,該中控裝置係與該監控裝 及一雲端資料庫裝置資訊連接。 2 、如申請專利範圍第1項所述之魚苗養殖 置之結構,其中該魚苗養殖槽底部係分 裝設一孔隙過濾裝置。 3 、如申請專利範圍第1項所述之魚苗養殖 Φ 置之結構,其中該水產養殖系統更包括 一層析過濾、之過濾池,該過濾池一端係 通該魚苗養殖槽之底部; 一鹵化物吸附之吸附池,該吸附池一端 連通該過濾池背離連通該魚苗養殖槽處 以及 一滅菌池,該滅菌池一端係連通該吸附 背離該過濾池處,且該滅菌池另一端係 通該魚苗養殖槽頂部。 系 係 該 以 置 裝 別 裝 連 係 池 連 M436335 .. 4、如申請專利範圍第3項所述之魚苗養殖裝 置之結構,其中該裝設於該過濾池内之監 控裝置係為濁度感測裝置。 5 、如申請專利範圍第3項所述之魚苗養殖裝 置之結構,其中該裝設於該吸附池内之監 控裝置係為胺鹽感測裝置。 6 、如申請專利範圍第3項所述之魚苗養殖裝 置之結構,其中該裝設於該滅菌池内之監 φ 控裝置係為氧化還原電位感測裝置。 7 、如申請專利範圍第1項所述之魚苗養殖裝 置之結構,其中該監控裝置裝設於該魚苗 養殖槽内係分別為pH值感測裝置、含氧量 檢測裝置、硝酸鹽感測裝置及流量控制裝 置。 8 、如申請專利範圍第1項所述之魚苗養殖裝 置之結構,其中該雲端資料庫裝置係與至 # 少一網路通訊裝置資訊連接。 9 、如申請專利範圍第1項所述之魚苗養殖裝 置之結構,其中該雲端資料庫裝置係包括 一品質管理單元及一預警控制單元。 1 0 、如申請專利範圍第1項所述之魚苗養殖 裝置之結構,其中該殼體係為貨櫃。 12M436335 .. 6. Patent application scope: 1. The structure of a fry breeding device comprises at least a casing, wherein the casing is provided with at least one aquaculture system, the aquaculture system comprising: at least one fry breeding tank; At least one algae culture area, the algae culture area is defined in the fry breeding tank; at least one monitoring device installed in the fry breeding tank and the algae culture area; and a central control device, wherein The control device is connected to the monitoring device and a cloud database device. 2. The structure of the fry breeding device according to claim 1, wherein the bottom of the fry breeding tank is provided with a pore filtering device. 3. The structure of the fry breeding apparatus according to item 1 of the patent application scope, wherein the aquaculture system further comprises a chromatographic filtration filter tank, one end of the filter tank is connected to the bottom of the fry breeding tank; An adsorbent adsorption tank, wherein one end of the adsorption tank communicates with the filter tank away from the fry breeding tank and a sterilization tank, one end of the sterilization tank is connected to the adsorption away from the filter tank, and the other end of the sterilization tank is connected to the fry The top of the culture tank. The structure of the fry breeding device according to claim 3, wherein the monitoring device installed in the filter tank is a turbidity sensing device. . 5. The structure of the fry breeding apparatus of claim 3, wherein the monitoring device installed in the adsorption tank is an amine salt sensing device. 6. The structure of the fry breeding device according to claim 3, wherein the monitoring device installed in the sterilization tank is a redox potential sensing device. 7. The structure of the fry breeding device according to claim 1, wherein the monitoring device is installed in the fry breeding tank as a pH sensing device, an oxygen detecting device, and a nitrate sensing device. And flow control device. 8. The structure of the fry breeding device according to claim 1, wherein the cloud database device is connected to the information communication device. 9. The structure of a fry breeding device according to claim 1, wherein the cloud database device comprises a quality management unit and an early warning control unit. The structure of the fry breeding device according to claim 1, wherein the casing is a container. 12
TW101203805U 2012-03-03 2012-03-03 Cultivation device structure for larval fish TWM436335U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI721871B (en) * 2020-04-22 2021-03-11 國立成功大學 Intelligent fish fry production system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI721871B (en) * 2020-04-22 2021-03-11 國立成功大學 Intelligent fish fry production system

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