首页> 外国专利> HIGH EFFICIENCY SOLAR THERMAL COLLECTOR HAVING FRAME AND ENERGY TRANSFER PATH PARALLEL STRUCTURE

HIGH EFFICIENCY SOLAR THERMAL COLLECTOR HAVING FRAME AND ENERGY TRANSFER PATH PARALLEL STRUCTURE

机译:具有框架和能量传递路径平行结构的高效太阳能热收集器

摘要

The present invention is a frame structure,The high efficiency solar heat collecting apparatus parallel with Energy Corridor and method are related to framework and the efficient solar heat collecting apparatus,The method of energy transmission path is constituted parallel,The receiving thermal energy stream channel expansion temperature of opposite heat collecting effect is by combined energy circulation conduit because the inside for being further heated circulation and the gas of appearance heating suddenly by the long heat passage by an improved solar heat collecting apparatus air obtains a high melt energy from a solar collector in outer frame,One temperature sensor and temperature sensor controller and a temperature controller(Thermostat)One collecting energy port of delivery use/circulation inlet -- in order to provide a pair of of temperature change sensitive automatic open close structure relative to external air inlet,Adjustment room temperature is being warmed by the height that house heat exports by the external solar heat collecting apparatus provided in house. The high efficiency solar energy collecting device of framework and movement routine parallel organization 100 includes the transparency cover for transmiting sunlight; Most of solar radiation is collected in order to promote the corrugated panel of the black of internal temperature, is passed through transparency cover (100-1); Fresh air outside air, which enters collector and filtering dust and air filter as outside air inlet port flow, has a grid, grid (grid) structure blocks insect inlet entrance 108; From room 107, it includes a kind of material (cold air inlet) solar collector circulation inlet to the room for being oil-to-air heat exchanger that a high temperature of heat, it is heated in solar collector heating load; (101) are provided for the outside air inlet port 108 of the heat collecting device of outside of the circulation air in framework and circulation inlet 107 from outside in energy circulation path; The Jimyeo mono- made of a bent structure is managed and inverted pipe structure, in energy circulation path 101, the black temperature in the outside of rugous heat is enhanced according to the heat collection of heat, the solar energy being received by the supply of the circulation air from heated absorption tube 109; The thermal energy that rugous thermopipette 109 is collected by drive motor is used to suck the high temperature (hot-air of 30~70& 0&gt ; It C) is heat collecting, by solar heat, from high temperature (the heat collecting unit hot-air of 30~70 Ge & 0&gt ; C) blower motor is used to a room (105) occur suddenly; The outlet (warm air outlet) of T shapes as by the outlet of the higher temperature heat collecting of the sun by the rugous thermopipette 109 of black as heat collection, hot-air is blown to the inside of (30-70) 103; Hook installation, is installed a collecting device (102); At least one handle is provided with the left and right sides of a pair of of collecting device 106; It is provided in the left and right side of lower left and collecting device, is used to support a bridge collecting device 110; The residual-heat heating energy of hot air outlet is collected for inside of the blowing air to heat collecting device from a first temperature sensor, is used to measure near 103 temperature (111-a); Thermal energy be supplied to indoor heat exchanger include a cold air in a room must temperature cycles of the measure near circular inlet 107 in heat collecting device, second entrance temperature sensor (111-b); Temperature is set to desired temperature in order to adjust room temperature sensor controller 120; Temperature sensor controller 120, the temperature controller opened/closed that control beginning and end device is used to control the temperature of air introduce room, depend on (thermostat) (130); The residual-heat heating energy, control pass through the outlet opening of heat collector outlet temperature control device (130) (103-a) and the beginning and end of pass hull closure; Temperature control includes a unit external air inlet and pass hull closure, is used to control through (130) a) (beginning and ends of the thermal energy outside air inlet port of 108-.
机译:本发明是一种框架结构,与能量走廊平行的高效太阳能集热装置及方法,涉及框架和高效太阳能集热装置,能量传递路径的方法平行构成,接收热能流通道的扩展集热效果相反的温度是通过组合能量循环管道进行的,这是因为用于进一步加热循环的内部和由改进的太阳能集热装置通过长的热通道而突然长出的外表加热气体突然从空气收集器中获得了较高的熔融能。外框,一个温度传感器和温度传感器控制器以及一个温度控制器(Thermostat)一个供运输使用/循环入口的收集能量端口-为了提供相对于外部空气入口的一对温度变化敏感的自动开闭结构,调节室温度被高度加热房屋内的热量通过房屋内提供的外部太阳能集热装置输出。构架和运行程序并行组织100的高效太阳能收集装置包括用于透射阳光的透明盖;太阳辐射的大部分被收集以促进内部温度的黑色瓦楞板,通过透明盖(100-1);外部空气的新鲜空气进入收集器,并随着外部空气入口的流动而过滤灰尘和空气过滤器,该外部空气具有格栅,格栅(格栅)结构,该结构阻挡了昆虫的入口108。从房间107开始,包括一种材料(冷空气入口)的太阳能集热器循环入口,该房间是供油-空气热交换器使用的高温热气,在太阳能集热器的热负荷下被加热; (101)在能量循环路径上从外部向框架内的循环空气的外部的集热装置的外部空气入口108和循环入口107设置。通过弯曲结构的Jimyeo单管和倒置管结构,在能量循环路径101中,根据热量的收集,在粗热外部的黑温度升高,太阳能通过供给来自加热吸收管109的循环空气。粗糙的热吸管109通过驱动马达收集的热能被用于抽吸高温(30〜70°C和0°C的热空气),通过太阳能从高温中收集热量(集热单元)。 30〜70 Ge <0> C的热风)鼓风机电动机用于房间(105)时突然发生; T形的出口(暖风出口)的形状为黑色的皱褶状的热吸管109将太阳的高温集热的出口作为集热,将热风吹到(30-70)103的内部。钩安装,安装有收集装置(102);一对收集装置106的左右两侧分别设有至少一个把手。它设置在左下收集装置的左侧和右侧,用于支撑桥收集装置110。从第一温度传感器收集热空气出口的残留热量,供吹入空气的热量收集到集热装置,用于测量接近103的温度(111-a);向室内热交换器供应的热能包括室内的冷空气,该温度循环的措施必须靠近集热装置中的圆形入口107,第二入口温度传感器(111-b);将温度设置为期望温度以便调节室温传感器控制器120;否则,将温度设置为期望温度。温度传感器控制器120,用于控制始末装置用于控制空气导入室的温度的温度控制器的开闭,取决于(恒温器)(130);余热加热能量的控制通过集热器出口温度控制装置(130)(103-a)的出口以及船体闭合的开始和结束;温度控制装置包括一个单元外部进气口和通过船体的封闭装置,用于控制(130)a)(进气口外部热能的起点和终点)108-。

著录项

  • 公开/公告号KR20150067661A

    专利类型

  • 公开/公告日2015-06-18

    原文格式PDF

  • 申请/专利权人 HWANG SEOK GEUN;

    申请/专利号KR20130153390

  • 发明设计人 HWANG SEOK GEUN;

    申请日2013-12-10

  • 分类号F24J2/04;F24J2/46;

  • 国家 KR

  • 入库时间 2022-08-21 14:59:51

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