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    • 3. 发明授权
    • 풍력발전기에서 풍력유도용 태양광발전판
    • 太阳能电池板风在风力涡轮机引起的
    • KR101557697B1
    • 2015-10-13
    • KR1020110018275
    • 2011-02-25
    • 민승기
    • 민승기
    • H02S40/42H02S20/10F24J2/52F03G6/00
    • Y02E10/46
    • 본발명은풍력발전기에서풍력유도용태양광발전판에관한것으로서, 보다상세하게는건축물의외측면이나연안지역과같은넓은지역에서, 연설로구비되는태양광발전기를연동시켜주는구조에서태양광발전을위함과동시에풍력발전기의회전날개방향으로대류가발생함으로서불어주는풍력을유도하도록구비되는태양광발전장치에관한것이다. 일반적으로풍력발전기의설치는대부분바람이부는지역에서소정의간격을유지하면서각각의풍력발전기를구비하여사용하는것이다. 고로본 발명에서제공되는풍력발전장치에대한구성은, 태양광발전을위한태양광발전판(101)의배면에는태양광발전판(101)의냉각을위하여태양광발전판(101)의배면구간인그늘진지역에다미도시된냉각펌프로연결되도록냉각파이프(228)가구비되면서태양광발전장치를위한제어장치를설치하여주고, 태양광발전장치의앞면에는이격구간(207)을유지하면서고정되는모듈(210)이설치됨으로서서로격자형으로교차되는교차구간(208)이형성되는태양광발전판에있어서, 상기교차구간(208)에관통으로구비되는공급구(202)와, 상기공급구(202)의배면에고정되는냉각파이프(228)와, 상기공급구(202)에고정되는냉각파이프(228)에서냉각공기나냉각수를뿜어주기위한조절핀(215)을구비시켜서제공하는발명이다. 또한또한상기태양광발전판(101)의상측단구간에회전드럼(165')의회전익(166')을구비한수평형회전장치(195)가맞추어구비되고, 상기수평형회전장치(195)에는지지벽체(168)과유입구(141)을구비시켜주도록외벽(144)을구비시켜주되, 가이더벽(145)을외장으로확대시켜서회전구간의형성과아울러유도공기를유입시켜주고, 상기태양광발전판(101)의하측이나중측구간에다분출구(230)가구비된파이프(240)을구성시켜주고, 상기발전장치(155)용회전축(160')과발전기(185)용축 사이를절단된이격구간으로구비시켜주되, 상기절단된이격된회전축(160')과발전기(185)용축의단부에는태엽(175)의양측가장자리를각각고정으로구비시켜서제공하는발명이다. 또한지지기둥(112)의상측단부에결합되는발전장치(155)용회전축에서회전날개(152)가회전함으로서풍력발전을제공하는풍력발전장치(150) 또는수직형회전장치(151)용지지기둥(112)의상,하측구간에각각의반원형베아링을고정시켜주기위한반원형하우징(125)에연결되는지지빔(130)과, 상기지지빔(130)에연결되는상,하측의고정캡(160)이배면에구비된태양광발전판(101)으로형성되는제1발전판(105)과, 상기지지빔(130)에서하측으로돌출되면서지지시켜주는바퀴(127)와, 상기바퀴(127)을구동시켜주기위한레일(140)을구비시켜서풍력이부는방향이나태양광의비치는방향에따라회전구동을시켜주는회전수단; 으로결합되는태양광발전블럭(100)과, 상기태양광발전판(101)의앞면에는모듈(210)이설치되는사이사이의이격구간(207)이서로격자형으로교차되는교차구간(208)으로구비시켜주되, 태양열의가열로인하여회전날개(152)로바람이불어주도록경사지게구비시켜주는태양광발전블럭(100)에있어서, 상기제1발전판(105)을상,하측구간(a)(b)으로구분시켜주되, 하측구간(b)은제1발전판(105)의구간으로형성시켜주고, 상측구간(a)에는격벽(117)과이동구간(110)을교호상으로형성시켜주면서, 상기격벽(117)의상측단부에맞추어서제2발전판(115)을구비시켜주고, 상기교차구간(208)에관통으로구비되는공급구(202)을천공시켜
    • 本发明涉及一种风致医疗状况提升电源板中的风力涡轮机,并且更具体地,为了在结构中为PV,一个广域诸如建筑物意外侧或沿海地区,通过连接其被提供给语音太阳能发电机 由gwadongsi对流在风力涡轮机的旋转方向上发生叶片它涉及一种包括以引导风吹一个光电发电装置。 而通常保持从seolchineun最多风的风力涡轮机的一个预定的距离是使用设置有相应的风力涡轮机。 用于本发明中,对于光伏发电太阳能电池板101的后表面的后部通过提供了一种风力涡轮发电机高炉构造中,太阳能电池板101中,太阳能电池板101,以冷却 作为非阴影大米厂冷却管228被连接到冷却水泵所示家具通过用于太阳能发电设备中安装的控制装置得到的区域中,光伏器件的前侧被固定,而如果隔开的间隔207 eulyu 模块210通过被驰重定位在所述太阳能板的横截面208释放彼此相交格子状,交叉部供给口202,其上设置有贯通至208,供给口(202 )本发明的由具有冷却管228被固定到后表面提供,供给口202被控制以给出一个吹冷却空气或冷却水在冷却管(228)引脚EGO信息215的 此外,此外,该太阳能电池板的单核细胞鼓(165“)之间101服装侧旋转国会jeonik 166”被提供以适合具有的水平旋转装置(195),水平旋转装置195具有 支撑壁168,得到具有gwayu入口141,由具有(144)的外壁judoe,从而扩大了导向器壁145与外部给予的旋转部的形成以及引入感应空气中,PV 板101,得到配置乌伊哈岛侧或吹出端口230,家具比管240的eda侧面部分的,间隔开的发电机155之间切割,旋转轴160“和发电机185 yongchuk为 judoe通过具有部分,所述轴端用于切削间隔开的旋转轴160“和发电机185通过本发明的具有绕组(175)的一个侧边缘设置在固定的,分别。 此外,支撑柱112,旋转刀片152由支撑用于风力涡轮发电机150或垂直转动装置151,以提供在连接到所述衣服侧端部发电单元155的旋转轴的风力发电极旋转 112装,和支承梁130,这是由在下部区域各半圆形轴承的固定连接到所述半圆形壳体125循环,在其上连接到支撑梁130,下固定帽160 形成在设置有双重表面的太阳能电池板101的第一和一个电源板105,轮127和轮127,这是不从支撑梁向下突出(130) 通过具有用于根据所述风的吹出方向或反射的太阳光的方向通过旋转驱动装置驱动旋转的轨道(140); 与相交的组合太阳能功率块100和,在太阳能面板101的前表面上,模块210,移值的间隔207的横截面的格子状的以关闭在其中间是208 在judoe通过由于具有倾斜到太阳能旋转叶片152流动站人是给法国,第一代板105 eulsang的热提供,光伏电源块100中,下段的(a)( b)一种judoe通过分级,以得到以形成下部分(b)中银1电源板105,上部分的部分(a)中,同时通过形成在分隔壁117和移动部110 eulgyo弧,其中 阻挡肋(117)由与所述衣服侧端整合给人一种第二代板115,通过钻出该贯通部设置有向横208的供给口202
    • 7. 发明公开
    • 근거리 무선통신 기반의 자동 관수제어를 통한 관비재배 시스템
    • 基于本地区无线通信的自动控制供水系统的自动生成系统
    • KR1020140072588A
    • 2014-06-13
    • KR1020120140264
    • 2012-12-05
    • (주)이지정보기술
    • 이성준강우석
    • A01G25/16G06Q50/02F03G6/00F03D9/00
    • Y02E10/46Y02E10/72Y02P60/122A01G25/167A01G25/16F03D9/00F03G6/00G06Q50/02
    • The present invention relates to a fertigation system which supplies, to soil, raw water stored in a raw water tank, and fertilizer in liquid form to be mixed in the raw water, the fertigation system including: a sensor unit having a sensor and a sensor transmitting part; a main control unit configured to receive data sensed by the sensor through a communication network, monitor storage of the sensed data received and states of water and nutrition of soil in real time, transmit a control signal for controlling a pump through the communication network, and control a valve of a pipe connected from the raw water tank to the soil to be opened/closed; and a pump unit receiving the control signal transmitted from the main control unit and controlling on/off operations of the pump. Thus, the water and nutrition are accurately and automatically supplied to the soil in each section by an accurate analysis of the water and nutrition contained in soil, so that man power for the irrigation water and the fertilizer is decreased; an over-supply of the irrigation water, and the fertilizer is prevented and cost is saved; the occurrence of the insect attack is decreased by minimizing the variation of soil moisture content; and damages on crops caused by excessively humid and drying conditions are prevented to result in a high crop yield.
    • 本发明涉及一种给土壤供给原料水中储存的原水和液态混合肥料的施肥系统,该灌溉系统包括:具有传感器和传感器的传感器单元 传送部分; 主控制单元,被配置为通过通信网络接收由传感器感测的数据,实时监测感测到的数据的接收状态和水的状态以及土壤的营养状况,通过通信网络发送用于控制泵的控制信号;以及 控制从原水箱连接到要打开/关闭的土壤的管道的阀门; 以及泵单元,接收从主控制单元发送的控制信号并控制泵的开/关操作。 因此,通过准确分析土壤中的水分和营养物质,精确自动地将水分和营养物质供应到每个部分的土壤中,使灌溉水和肥料的人力减少; 灌溉水供应过剩,防治肥料,节省成本; 通过最小化土壤含水量的变化来减少昆虫攻击的发生; 并且防止由于过度潮湿和干燥条件导致的作物损害,导致高的作物产量。
    • 9. 发明公开
    • 자체발열장치를 갖는 벌통
    • 拥有自动工具的BEEHIVE
    • KR1020140062619A
    • 2014-05-26
    • KR1020120128593
    • 2012-11-14
    • 청운대학교산학협력단
    • 한두희
    • A01K47/06A01K47/00F03G6/00
    • Y02E10/46Y02P60/70A01K47/06F03G6/00
    • The present invention relates to a beehive with a self-heating device driven by solar energy generation which helps bees to maintain proper body temperature in extremely cold winter. The present invention as described above, in a modified beehive with a self-heating device driven by sunlight which is automatically operated by illumination level, comprises: a charging and discharging device to control whether to save or use solar energy; a light sensor-applied cotton fiber heating device which actively generates heat when there is no light; and an electrical energy storage device which transforms light energy into electrical energy.
    • 本发明涉及具有由太阳能发电驱动的自加热装置的蜂巢,其有助于蜜蜂在极冷的冬季保持适当的体温。 如上所述的本发明,在具有由照明水平自动操作的太阳光驱动的自加热装置的改进蜂巢中,包括:充放电装置,用于控制是否储存或使用太阳能; 一种光传感器应用棉纤维加热装置,当无光时主动发热; 以及将光能转换成电能的电能存储装置。
    • 10. 发明公开
    • 태양에너지를 이용한 발전 및 난방 시스템
    • 发电机系统和加热系统采用太阳能
    • KR1020140062402A
    • 2014-05-23
    • KR1020130069472
    • 2013-06-18
    • 전영춘전영민권오성
    • 전영춘전영민권오성
    • F03G6/00F03G6/02F24J2/00F03G6/06
    • Y02E10/46F03G6/00F03G6/02F03G6/06
    • A power generating and heating system which uses solar energy is able to efficiently use the solar energy by including: a solar cell module for converting the solar energy into electric energy; a heat collecting means which is composed of multiple heat collecting rods for collecting the heat of the solar energy; a heat exchanging storage tank which enables heat medium oil which contains heat which is collected in the sunlight heat collecting means to exchange heat through a pipe, has a heating element which emits heat from the electric energy which is generated in the solar cell module, and stores fluid; a turbine unit which rotates a turbine by enabling the inflow of steam which is generated from the fluid which is stored in the heat exchanging storage tank; a power generator which generates power by the turbine rotation of the turbine unit; a condenser which condenses steam by collecting the steam which rotates the turbine in the turbine unit; a heating unit which heats a building by using fluid which is condensed in the condenser; a water supply pump which collects fluid whose temperature becomes lower by a heating through the heating unit of the building and supplies water to the heat exchanging storage tank; and a storage battery which stores power generated from the generator and is electrically connected to the heating element.
    • 使用太阳能的发电和供热系统能够通过包括:将太阳能转换成电能的太阳能电池模块来有效地利用太阳能; 集热装置,其由用于收集太阳能的热量的多个集热棒组成; 一种热交换储罐,其能够将收集在太阳光收集装置中的热量的热介质油通过管交换热量,具有从太阳能电池模块中产生的电能发出热量的加热元件, 储存液体; 涡轮单元,其通过使能够从存储在所述热交换储罐中的流体产生的蒸汽的流入来使涡轮旋转; 发电机,其通过涡轮机单元的涡轮机旋转而产生动力; 冷凝器,通过收集在涡轮机单元中使涡轮旋转的蒸汽冷凝蒸汽; 加热单元,其通过使用在冷凝器中冷凝的流体来加热建筑物; 供水泵,其通过建筑物的加热单元通过加热收集温度变低的流体,并将水供应到热交换存储罐; 以及蓄电池,其存储从所述发电机产生的电力并与所述加热元件电连接。