TWM616181U - Energy production symbiotic system - Google Patents
Energy production symbiotic system Download PDFInfo
- Publication number
- TWM616181U TWM616181U TW109214343U TW109214343U TWM616181U TW M616181 U TWM616181 U TW M616181U TW 109214343 U TW109214343 U TW 109214343U TW 109214343 U TW109214343 U TW 109214343U TW M616181 U TWM616181 U TW M616181U
- Authority
- TW
- Taiwan
- Prior art keywords
- unit
- energy production
- reflecting
- symbiosis
- production
- Prior art date
Links
Images
Classifications
-
- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
Landscapes
- Photovoltaic Devices (AREA)
Abstract
一種能源生產共生系統,包含一支撐單元、一發電單元、至少一反光單元及一生產單元。該支撐單元具有六環繞連接成六邊形的邊桿,及六分別由該等邊桿之連接處向下延伸的支柱,該等邊桿與該等支柱相配合界定一呈六角柱狀的培育空間。該反光單元具有一用以反射陽光至該太陽能板模組的反光面。該生產單元設置於該培育空間中且位於該太陽能板模組下方。藉此,可形成六角柱的模組化架構,不僅在力學上可以得到穩固的建築架構,還可以方便視需求進行擴建,並獲得極佳的空間利用率。An energy production symbiosis system includes a support unit, a power generation unit, at least one reflection unit and a production unit. The support unit has six side rods that are connected in a hexagonal shape around and six pillars extending downward from the connection points of the side rods. The side rods cooperate with the pillars to define a hexagonal column-shaped cultivation. space. The reflecting unit has a reflecting surface for reflecting sunlight to the solar panel module. The production unit is arranged in the cultivation space and located under the solar panel module. In this way, a modular structure of hexagonal columns can be formed, which not only can obtain a stable architectural structure in terms of mechanics, but also facilitates expansion as required, and obtains excellent space utilization.
Description
本新型是有關於一種生產系統,特別是指一種能源生產共生系統。This new model relates to a production system, especially an energy production symbiosis system.
傳統生產漁獲方式為使用天然水面或人造池塭進行養殖,然而,此種養殖方式受天候影響較大,一旦遭遇天災,將蒙受巨大損失。The traditional method of production and catch is the use of natural water or artificial ponds for aquaculture. However, this type of aquaculture is greatly affected by the weather and will suffer huge losses if it encounters natural disasters.
近年來,室內養殖技術不斷發展,然而,目前之養殖場多是在建築內部挖設水槽養殖漁產,於建築完成後,不易再根據需求而進行變更擴建。In recent years, indoor breeding technology has continued to develop. However, most of the current breeding farms are digging tanks inside the buildings to breed fish. After the construction is completed, it is not easy to change and expand according to demand.
因此,本新型之目的,即在提供一種便於擴建的能源生產共生系統。Therefore, the purpose of the present invention is to provide an energy production symbiosis system that is convenient for expansion.
於是,本新型能源生產共生系統,包含至少一能源生產共生裝置。Therefore, the new energy production symbiosis system includes at least one energy production symbiosis device.
該至少一能源生產共生裝置包括一支撐單元、一發電單元、至少一反光單元及一生產單元。The at least one energy production symbiosis device includes a support unit, a power generation unit, at least one reflection unit and a production unit.
該支撐單元具有六環繞連接成六邊形的邊桿,及六分別由該等邊桿之連接處向下延伸的支柱,該等邊桿與該等支柱相配合界定一呈六角柱狀的培育空間。The support unit has six side rods that are connected in a hexagonal shape around and six pillars extending downward from the connection points of the side rods. The side rods cooperate with the pillars to define a hexagonal column-shaped cultivation. space.
該發電單元具有一設置於該支撐單元的發電支架,及一設置於該發電支架的太陽能板模組。The power generation unit has a power generation support set on the support unit, and a solar panel module set on the power generation support.
該至少一反光單元設置於該支撐單元,並具有一用以反射陽光至該太陽能板模組的反光面。The at least one light reflecting unit is arranged on the supporting unit and has a light reflecting surface for reflecting sunlight to the solar panel module.
該生產單元設置於該培育空間中且位於該太陽能板模組下方。The production unit is arranged in the cultivation space and located under the solar panel module.
本新型之功效在於:藉由設置呈六角柱形的該支撐單元,並搭配設置該發電單元、該至少一反光單元與該生產單元而形成模組化架構,不僅在力學上可以得到穩固的建築架構,還可以方便視需求進行擴建,並獲得極佳的空間利用率。The effect of the present invention is that by arranging the supporting unit in the shape of a hexagonal column, the power generating unit, the at least one reflecting unit and the production unit are arranged to form a modular structure, which not only can obtain a stable building mechanically The architecture can also facilitate expansion based on demand and obtain excellent space utilization.
在本新型被詳細描述之前,應當注意在以下的說明內容中,類似的元件是以相同的編號來表示。Before the present invention is described in detail, it should be noted that in the following description, similar elements are represented by the same numbers.
參閱圖1、圖2及圖3,本新型能源生產共生系統之一第一實施例,包含一能源生產共生裝置1。Referring to Figure 1, Figure 2 and Figure 3, a first embodiment of the new energy production symbiosis system includes an energy
該能源生產共生裝置1包括一支撐單元2、一發電單元3、六反光單元4,及一生產單元5。該能源生產共生裝置1較佳是還包括一種植單元6、一照明單元7及一排進風單元8。The energy
該支撐單元2具有六環繞連接成六邊形的邊桿21,及六分別由該等邊桿21之連接處向下延伸的支柱22,該等邊桿21與該等支柱22相配合界定一呈六角柱狀的培育空間23。其中,該等邊桿21較佳是長度相等,以連接呈正六邊形,如此,可以具有較佳的穩固性及較高的空間利用率。其中,圖1為圖式清楚起見,省略了位於圖面最上層的一根支柱22,以避免遮擋了其他元件。The
該發電單元3具有一設置於該支撐單元2的發電支架31,及一設置於該發電支架31且位於該培育空間23上方的太陽能板模組32。參閱圖2、圖3、圖4及圖5,該發電支架31具有六樞設於該支撐單元2的調整桿311,及一設置於該等調整桿311並供該太陽能板模組32設置的支撐架312。每一調整桿311之兩端分別樞設於其中二該邊桿21之連接處與該支撐架312,藉此,該太陽能板模組32可以根據所在地緯度及季節調整傾斜角度以達到具有最佳效率的照光角度。The
每一反光單元4具有二設置於其中一邊桿21的反光支架41,及一可轉動地設置於該等反光支架41且具有一反光面421的反光板42。其中,該等反光支架41之數量可依實際需求而設置,亦可為三、四以上之數量。Each reflecting
每一反光支架41具有一設置於其中一邊桿21且呈U型的基架411,及至少一可樞轉地連接該基架411的連接桿412,每一反光板42可轉動地設置於該連接桿412而調整該反光面421的反光角度。如圖5中所示,由於對應該太陽能板模組32的傾斜角度,右側之該反光板42所需設置的高度較低,因此,其反光支架41具有單一個基架411及單一個連接桿412,該反光板42則是樞設於該基架411靠近內側之一端與該連接桿412相反於該基架411的一端。相對地,由於左側之該反光板42所需設置的高度較高,因此,其反光支架41具有單一個基架411及二個連接桿412,每一連接桿412之兩端分別可樞轉地設置於該基架411與該反光板42。藉此,該反光板42可以轉動而調整該反光面421的反光角度,以得到更佳的集光效果。Each
參閱圖1、圖2及圖3,於本實施例中,該能源生產共生裝置1具有六個該反光單元4,並各自對應該太陽能板模組32的傾斜角度而呈高低設置。但該能源生產共生裝置1亦可僅具有二個相向設置的該等反光單元4。此時,該等反光單元4較佳是沿東西方向設置,即,該等反光面421是垂直於東西方向設置,如此,由於無論在哪個緯度,太陽之主要軌道皆是由東向西運行,因此,可以涵蓋太陽一天之中的主要運行軌跡,而仍能達到一定程度的集光效益。或是,如圖6所示,該能源生產共生裝置1僅具有單一個該反光單元4,且將該反光面421設計為一個半圓弧的樣式,如此,可簡化安裝作業,並同樣能夠反射太陽光線而具有集光效果。Referring to FIGS. 1, 2 and 3, in this embodiment, the energy
參閱圖1、圖2及圖3,該生產單元5設置於該培育空間23中且位於該太陽能板模組32下方,具有一適用於容置水及漁產的漁業養殖槽51。於本實施例中,該生產單元5是以漁業養殖作為說明,但該生產單元5也可以是作為畜牧養殖,或是農業種植等,並不以此為限。1, 2 and 3, the
其中,該漁業養殖槽51較佳是使用輕量材質製作,例如,可使用玻璃纖維強化塑膠(Fiber-reinforced plastic,縮寫為FRP)與保麗龍之複合材料、或高密度聚乙烯塑料(High Density Polyethylene,縮寫為HDPE)與保麗龍之複合材料製作,或是,亦可以利用金屬材料、PU、金屬材料的三明治結構之方式製作,如此,可使該漁業養殖槽51能漂浮於水面。並且,該生產單元5較佳是配合輕量的該漁業養殖槽51而還具有複數連接件52,每一連接件52連接該漁業養殖槽51且可上下移動地設置於對應的該支柱22,例如,每一連接件52可以呈環狀或是呈鍊狀圈住對應的該支柱22。藉此,若是遭遇颱風暴雨或是洪水時,該漁業養殖槽51可以不受阻礙地隨水面上升,避免水流淹入該漁業養殖槽51而導致漁產外流造成損失。另外,該生產單元5還可具有一由該漁業養殖槽51外側向外延伸的作業平台53,該作業平台53可利於養殖人員作業活動所需。Among them, the
該種植單元6設置於該培育空間23且位於該漁業養殖槽51與該太陽能板模組32間,並適用於種植農產,該農產於圖1中是以蔬菜類作為說明,但亦可為如草莓、番茄等小型水果類,或是植栽、園藝花木等草木類,並不以此為限。The
該種植單元6具有一培育架61、一抽水馬達62、一入水管63,及一灌溉水道64。該培育架61連接該等支柱22,並適用以供複數農產箱9設置,該培育架61具有複數通孔611,該等通孔611用以供灌溉水在經由農產吸收雜質及根莖過濾後向下流至該漁業養殖槽51。該抽水馬達62適用於將該漁業養殖槽51中的水經該入水管63抽取至該灌溉水道64以灌溉該農產。該入水管63可使用軟管實施,方便配合該漁業養殖槽51上下移動而進行調整。The
該照明單元7設置於該支撐單元2對應該種植單元6處,包括一設置於該等支柱22的燈具支架71,及複數設置於該燈具支架71的燈具72。該照明單元7可依實際需求而包括二個、三個或四個以上的燈具72,該等燈具72用以於日照不足時提供該種植單元6的農產照明。The
該排進風單元8設置於支撐單元2對應該種植單元6處,並包括複數設置於該等支柱22的風扇81,該等風扇81用以令該種植單元6處維持通風,並使該種植單元6處溫度均勻。The
實際運用時,可將水及漁產置放於該漁業養殖槽51進行養殖,並藉由該抽水馬達62抽取該漁業養殖槽51的水以灌溉該種植單元6的農產,由於魚的排泄物在經由細菌作用後,可以產生植物生長所需的養分,因此藉由取用該漁業養殖槽51內的水進行灌溉,不僅可以藉由農產吸收及濾淨水質後,回復為乾淨的水並往下回流到該漁業養殖槽51供漁產生存使用,還可以藉由排泄物所產生的養分令農產長得更好、更快,因此,具有循環利用而幾乎不會產生汙染的優點,符合當今的環保有機趨勢。In actual use, water and fishery products can be placed in the
並且,可以依照所在地緯度及季節調整該發電支架31及該等反光支架41,使該太陽能板模組32之傾斜角度能夠配合所在地的緯度及季節而對應太陽的運行角度,並使該等反光板42的角度可以配合太陽運行的軌跡而更好地將太陽能反射至該太陽能板模組32。In addition, the
參閱圖7,為本新型能源生產共生系統的一第二實施例,該第二實施例是類似於該第一實施例,該第二實施例與該第一實施例的差異在於:Refer to Figure 7, which is a second embodiment of the new energy production symbiosis system. The second embodiment is similar to the first embodiment. The difference between the second embodiment and the first embodiment is:
該第二實施例包含二能源生產共生裝置1,每一該支撐單元2與相鄰之該支撐單元2共用其中一該邊桿21與連接該其中一邊桿21的二個該支柱22。並且,於共邊的該邊桿21上,一共間隔設置了四個反光支架41,兩兩成組而分別供相鄰之該等反光板42設置。相較於架設單一個能源生產共生裝置1,相鄰之能源生產共生裝置1的共邊處,位於同一該邊桿21上的該等反光板42,需各自內縮設置以提供各自足夠的轉動調整角度之空間。The second embodiment includes two energy
值得一提的是,於該第二實施例中,是以兩個能源生產共生裝置1作為說明,但實際上,該能源生產共生系統可以依需求而包含任意數量的能源生產共生裝置1,每一能源生產共生裝置1會與相鄰的六個能源生產共生裝置1共邊及共柱,而形成如蜂巢狀的建築群,並達到穩固的建築架構及良好的空間利用率。It is worth mentioning that, in the second embodiment, two energy
參閱圖1、圖2及圖7,經由以上的說明,本新型的功效如下:Referring to Figure 1, Figure 2 and Figure 7, through the above description, the effects of the present invention are as follows:
一、藉由設置呈六角柱形的該支撐單元2,並搭配設置該發電單元3、該等反光單元4與該生產單元5而形成模組化架構,不僅在力學上可以得到穩固的建築架構,還可以方便視需求進行擴建。在建構複數能源生產共生裝置1時,使每一該支撐單元2與相鄰之該支撐單元2共用該邊桿21與該支柱22(即,使每一該支撐單元2與相鄰的該支撐單元2共邊及共柱),如此,可以建構成蜂巢狀的建築群,不僅增建便利,架構穩固,亦可獲得極佳的空間利用率。1. By arranging the supporting
二、藉由將該反光板42可轉動地設置於該等反光支架41,可使該反光板42能夠依所在地的緯度和季節調整角度而對應太陽運行軌跡,能得到更佳的集光效果。2. By rotatably setting the
三、藉由設置複數連接該漁業養殖槽51且可上下移動地設置於該等支柱22的連接件52,並搭配使用輕質材料實施該漁業養殖槽51,即便是遭遇颱風暴雨或是洪水時,該漁業養殖槽51仍然可以不受阻礙地隨水面上升,避免水流淹入該漁業養殖槽51而導致漁產外流造成損失之問題。3. A plurality of connecting
四、藉由設置樞設於該支撐單元2的調整桿311及搭配的該支撐架312,可以供該太陽能板模組32依所在地的緯度和季節調整角度,得到更佳的發電效率。4. By setting the adjusting
五、藉由設置該種植單元6,可以使該能源生產共生系統增加能種植農產之功能。5. By setting up the
綜上所述,本新型能源生產共生系統,故確實能達成本新型的目的。In summary, the new type of energy production symbiosis system can indeed achieve the goal of a new type of cost.
惟以上所述者,僅為本新型之實施例而已,當不能以此限定本新型實施之範圍,凡是依本新型申請專利範圍及專利說明書內容所作之簡單的等效變化與修飾,皆仍屬本新型專利涵蓋之範圍內。However, the above are only examples of the present model, and should not be used to limit the scope of implementation of the present model, all simple equivalent changes and modifications made in accordance with the patent scope of the present model application and the contents of the patent specification still belong to This new patent covers the scope.
1:能源生產共生裝置 2:支撐單元 21:邊桿 22:支柱 23:培育空間 3:發電單元 31:發電支架 311:調整桿 312:支撐架 32:太陽能板模組 4:反光單元 41:反光支架 411:基架 412:連接桿 42:反光板 421:反光面 5:生產單元 51:漁業養殖槽 52:連接件 53:作業平台 6:種植單元 61:培育架 611:通孔 62:抽水馬達 63:入水管 64:灌溉水道 7:照明單元 71:燈具支架 72:燈具 8:排進風單元 81:風扇 9:農產箱1: Energy production symbiosis device 2: Support unit 21: Side pole 22: Pillar 23: Cultivation space 3: Power generation unit 31: Power generation bracket 311: Adjusting lever 312: Support frame 32: Solar panel module 4: reflective unit 41: Reflective bracket 411: base frame 412: connecting rod 42: reflector 421: reflective surface 5: Production unit 51: fish farming tank 52: connecting piece 53: Operating platform 6: Planting unit 61: Cultivation Frame 611: Through Hole 62: Pumping motor 63: inlet pipe 64: Irrigation Channel 7: Lighting unit 71: Lamp bracket 72: lamps 8: Exhaust air unit 81: Fan 9: Agricultural production box
本新型之其他的特徵及功效,將於參照圖式的實施方式中清楚地呈現,其中: 圖1是本新型能源生產共生系統的一第一實施例的一不完整的示意圖; 圖2是該第一實施例的一不完整的立體圖; 圖3是該第一實施例的一不完整的俯視圖; 圖4是該第一實施例的一不完整的仰視圖; 圖5是該第一實施例的不完整的側視圖; 圖6是一不完整的立體圖,說明該第一實施例具有一反光單元之樣態;及 圖7是本新型能源生產共生系統的一第二實施例的一不完整的示意圖。 The other features and effects of the present invention will be clearly presented in the embodiments with reference to the drawings, among which: Figure 1 is an incomplete schematic diagram of a first embodiment of the new energy production symbiosis system; Figure 2 is an incomplete perspective view of the first embodiment; Figure 3 is an incomplete top view of the first embodiment; Figure 4 is an incomplete bottom view of the first embodiment; Figure 5 is an incomplete side view of the first embodiment; Figure 6 is an incomplete perspective view illustrating the first embodiment with a reflective unit; and Fig. 7 is an incomplete schematic diagram of a second embodiment of the new energy production symbiosis system.
2:支撐單元 2: Support unit
21:邊桿 21: Side pole
22:支柱 22: Pillar
3:發電單元 3: Power generation unit
31:發電支架 31: Power generation bracket
311:調整桿 311: Adjusting lever
32:太陽能板模組 32: Solar panel module
4:反光單元 4: reflective unit
41:反光支架 41: Reflective bracket
42:反光板 42: reflector
421:反光面 421: reflective surface
Claims (10)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TW109214343U TWM616181U (en) | 2020-10-30 | 2020-10-30 | Energy production symbiotic system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TW109214343U TWM616181U (en) | 2020-10-30 | 2020-10-30 | Energy production symbiotic system |
Publications (1)
Publication Number | Publication Date |
---|---|
TWM616181U true TWM616181U (en) | 2021-09-01 |
Family
ID=78778326
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
TW109214343U TWM616181U (en) | 2020-10-30 | 2020-10-30 | Energy production symbiotic system |
Country Status (1)
Country | Link |
---|---|
TW (1) | TWM616181U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWI758927B (en) * | 2020-10-30 | 2022-03-21 | 施維政 | Symbiotic system for energy production |
-
2020
- 2020-10-30 TW TW109214343U patent/TWM616181U/en unknown
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWI758927B (en) * | 2020-10-30 | 2022-03-21 | 施維政 | Symbiotic system for energy production |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US8181391B1 (en) | Vertical aquaponic micro farm | |
JP5683733B2 (en) | Farm and photovoltaic system | |
CN204272804U (en) | A kind of agriculture planting greenhouse | |
CN103125307B (en) | Spray-type snow cleaning and dust removing double-cavity intermediate-ventilation arched sunlight greenhouse | |
CN108271580A (en) | Heat-collection and heat-accumulation greenhouse | |
CN210168578U (en) | Novel planting and cultivating greenhouse | |
CA2882972A1 (en) | Vertically integrated industrial scale multilevel closed ecosystem greenhouse | |
JP2012182998A (en) | Hydroponic system | |
CN1653880A (en) | Facility sited sun-facing garden | |
TWM616181U (en) | Energy production symbiotic system | |
CN113615645B (en) | Low-carbon efficient ecological planting and breeding factory and planting and breeding method | |
TWI758927B (en) | Symbiotic system for energy production | |
WO2024134637A2 (en) | A solar plant with enclosed space system | |
CN102613028A (en) | One-wall energy-saving sunlight greenhouse | |
CN210641830U (en) | Greenhouse system used under large temperature difference day and night and limited sunshine time | |
KR102114528B1 (en) | Energy collection device for air purification in planted water | |
CN116722794A (en) | A three-dimensional photovoltaic power generation system | |
JP3370021B2 (en) | Greenhouse | |
CN214155611U (en) | Layered pyramid greenhouse with photovoltaic power generation and wind power generation | |
GB2613903A (en) | Agricultural photovoltaic structure with controlled cooling | |
CN204047369U (en) | A kind of high and cold energy saving greenhouse | |
CN208047486U (en) | Heat-collection and heat-accumulation greenhouse | |
CN202535811U (en) | One-wall energy-saving sunlight greenhouse | |
CN208657476U (en) | Cold ground daylight rural area greenhouse | |
CN217217593U (en) | Arch photovoltaic ecological greenhouse |