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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集热器

摘要

the present invention is a frame structure, high efficiency and energy corridors parallel solar heat collecting apparatus and method relates to the frame and that of the highly efficient solar heat collecting apparatus and method of energy transfer path in parallel structure, house thermal energy flow channel expansion temperature of the heat collecting effect relatively by the combined energy circulation conduit inside the outer frame for through the long through the heat flow channel of an improved solar heat collecting apparatus air is further heated is circulated and blown into the interior of heated air obtained a high-temperature heat energy from a solar collector, a temperature sensor and the temperature sensor controller and a temperature controller (thermostat) a collecting energy delivery port with / circulation inlet - with respect to the external air inlet to provide a temperature-sensing automatic opening and closing structure to adjust the room temperature is a high temperature heat through the house heat outlet by the solar heat collecting apparatus provided outside the house. High efficiency solar energy collecting device of the frame and the moving path parallel structure 100 includes a transparent cover of transmitting sunlight; Corrugated panels of black to raise the internal temperature to collecting most of the solar radiation that passes through the transparent cover (100-1); Fresh air outside the air as the outside air inlet port flows into the collector and to filter the dust and the air filter having a mesh with a mesh (mesh) structure to block the insect inlet inlet 108; To a high temperature of heat it is heated in the solar collector heat supplied to the room being air-cooled heat exchanger is composed of a material (cold air inlet) solar collector circulation inlet from the room 107; The outside air inlet port 108 and the circulation inlet 107 of the heat collecting apparatus outside the energy circulation path for circulating the air in the frame supplied from the outside (101); Jimyeo a pipe made of a bent structure, and the inverted pipe structure, outside the energy circulation path 101 corrugated heat the black temperature is raised according to the heat collection of heat by the supply received solar energy to the circulating air from the heat absorption pipe 109 ; By collecting the thermal energy of the corrugated heat absorbing pipe 109 by driving the motor for sucking the hot air of high temperature (30 ~ 70 & 0 & C) is the heat collecting by the solar heat from the heat collecting unit hot air at elevated temperature (30 ~ 70 & 0 & C) blower motor for blowing into a room (105); T-shaped outlet (warm air outlet) as passing through the corrugated heat absorbing pipe 109 of the black and the heat collection by the solar higher temperature heat collecting outlet which blows hot air to the inside of the (30-70) 103; Hangers for mounting to mount a collecting device (102); At least one handle is provided with a pair of the left and right sides of the collecting device 106; Is provided at the bottom left and right sides of the collecting device for supporting a bridge collecting device 110; Collecting heat energy of the hot air outlet for blowing air to the inside of the heat collecting apparatus collecting from a first temperature sensor for measuring 103 the vicinity of the temperature (111-A); Thermal energy is supplied to the indoor heat exchanger consists of a cold air in the room have to measure the temperature in the vicinity of the circular inlet 107 is circulated in the heat collecting device, the second inlet temperature sensor (111-b); Set the temperature to the desired temperature in order to adjust the room temperature sensor controller 120; Temperature sensor controller 120, a temperature controller to control the open / close of the opening and closing apparatus for controlling the temperature of air introduced into the room depending on (thermostat) (130); Collecting heat energy to control the opening and closing of the outlet opening and closing device by the heat collector outlet temperature control device (130) (103-A); And the temperature control consists of a unit external air intake opening and closing device for controlling the opening and closing of the thermal energy outside air inlet port by the (130) (108-a). ;
机译:本发明是一种框架结构,高效节能走廊的平行太阳能集热装置及方法,涉及该框架,以及一种高效太阳能集热装置的平行结构,能量传递路径,房屋热能流道的扩展方法。通过改进的太阳能集热设备的热流通道,外框内部的组合能量循环导管相对于集热效果的温度相对较高,空气进一步被加热并循环吹入加热的空气内部,从而获得较高的热量。来自太阳能收集器,温度传感器和温度传感器控制器以及温度控制器(恒温器)的温度热能,具有/循环入口的收集能量输送端口-相对于外部空气入口提供温度感应自动打开和封闭结构,调节室内温度是很高的温度设置在房屋外部的太阳能集热装置通过房屋的排热口回收热量。框架和移动路径平行结构100的高效太阳能收集装置包括透射日光的透明盖;黑色波纹板提高内部温度,以收集通过透明盖(100-1)的大部分太阳辐射;作为外部空气进入口的空气外部的新鲜空气流入集尘器并过滤灰尘,该空气过滤器具有网眼(网眼)结构以堵塞昆虫入口108;达到高温的热量在集热器中被加热,提供给作为空气冷却热交换器的房间的热量由来自房间107的材料(冷空气入口)集热器循环入口组成;集热装置的外部空气入口108和循环入口107在能量循环路径的外部,用于使从外部供给的框体内的空气循环(101)。 Jimyeo一种由弯曲结构制成的管子,以及倒置的管子结构,在能量循环路径101的波纹状热的外部,根据热量的收集,通过从吸热管向循环空气提供接收的太阳能,黑色温度升高109;通过驱动用于抽吸高温(30〜70°C <0°C)的热空气的电动机来驱动波纹状吸热管109的热能,是来自集热单元的太阳热的集热。高温(30〜70°C; 0°C)的鼓风马达用于吹入房间(105); T形出口(暖风出口)通过黑色的波纹状吸热管109并通过太阳能高温集热口收集热量,将热风吹到(30-70)103的内部;用于安装以安装收集装置(102)的衣架;至少一个手柄设置有收集装置106的左右一对。设置在收集装置的底部底部的左侧和右侧,用于支撑桥收集装置110。收集用于将空气吹到集热设备内部的热空气出口的热能,该热能从用于测量温度附近的第一温度传感器103收集(111-A);将热能供应到由室内冷空气组成的室内热交换器,以测量在圆形入口107附近在集热装置中循环的温度的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,将温度调节到室温。温度传感器控制器120,用于根据(恒温器)控制用于控制引入到室内的空气温度的开闭装置的打开/关闭的温度控制器(130);通过集热器出口温度控制装置(130)收集热能,以控制出口开闭装置的开闭(103-A);并且温度控制包括单元外部进气打开和关闭装置,该单元用于通过(130)(108-a)控制外部进气口的热能的打开和关闭。 ;

著录项

  • 公开/公告号KR101532956B1

    专利类型

  • 公开/公告日2015-07-01

    原文格式PDF

  • 申请/专利权人 황석근;

    申请/专利号KR20130153390

  • 发明设计人 황석근;

    申请日2013-12-10

  • 分类号F24J2/04;F24J2/46;

  • 国家 KR

  • 入库时间 2022-08-21 14:58:02

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