집광식 태양열 집열기를 위한 혼합식 태양추적제어장치
    41.
    发明授权
    집광식 태양열 집열기를 위한 혼합식 태양추적제어장치 有权
    집광식태양열집열기를위한혼합식태양추적제어장치

    公开(公告)号:KR100369897B1

    公开(公告)日:2003-01-30

    申请号:KR1019990062759

    申请日:1999-12-27

    CPC classification number: Y02E10/47

    Abstract: PURPOSE: A hybrid sun tracking controller for a solar collector is provided to use mid and high temperature solar heat by adopting an anemometer and an anemoscope as a protecting device for protecting a solar collector from the sudden change of surroundings. CONSTITUTION: A controller using a computer(10) or a microprocessor of a sun tracking controller calculates an azimuth angle and altitude of the sun by using latitude, longitude, and the current time at a mounting position of a solar collector. The calculated azimuth angle and altitude are transmitted to a servo motor controller(11) available for communicating with the controller. The servo motor controller drives a servo motor at a maximum allowable RPM(Revolutions Per Minute) by using a servo motor drive(12). Thereby, the solar collector is rotated in the incident direction of sunbeams. The collector continues sun tracking by using the calculated position and the input position of the sun from the sun tracking sensor so that sun tracking is exactly performed.

    Abstract translation: 目的:提供一种用于太阳能集热器的混合太阳跟踪控制器,通过采用风速计和风速仪作为保护太阳能集热器免受环境突然变化的保护装置,使用中高温太阳能热。 构成:使用计算机(10)或太阳跟踪控制器的微处理器的控制器通过使用纬度,经度和太阳能收集器的安装位置处的当前时间来计算太阳的方位角和高度。 计算出的方位角和高度被传送到可用于与控制器通信的伺服电动机控制器(11)。 伺服电机控制器通过伺服电机驱动器(12)以最大允许RPM(每分钟转数)驱动伺服电机。 从而,太阳能收集器沿着阳光的入射方向旋转。 收集器通过使用计算出的位置和来自太阳跟踪传感器的太阳的输入位置继续进行太阳跟踪,以便准确执行太阳跟踪。

    경사 접합용 유리조성물 및 그 응용
    42.
    发明授权
    경사 접합용 유리조성물 및 그 응용 失效
    玻璃成分及其应用于分级密封

    公开(公告)号:KR100344939B1

    公开(公告)日:2002-07-20

    申请号:KR1019990065809

    申请日:1999-12-30

    CPC classification number: C03C3/091

    Abstract: 본발명은진공관형태양열집열기에사용되는동관과붕규산염계(Pyrex) 유리를접합시키기위한접합용유리조성물에관한것이다. 본발명동관과붕규산염계유리를접합시키기위한접합용유리조성물은조성물 100중량%에대하여 AlO1∼3중량%, BO5∼20중량%, CuO 0.1∼5중량%, LiO와 NaO 그리고 KO 를합하여 1∼20중량%, CaO와 SrO을합하여 1∼15중량%, SiO65∼75중량%로이루어짐에기술적특징이있다. 본발명의동관-파이렉스재질유리경사접합용유리조성물은동관및 파이렉스재질양쪽에적합한점도, 유동성및 열팽창계수의특성을유지하면서구리와접합유리사이에접합력향상에기여하는반응층으로서의구리산화물층이형성되도록함으로써높은접합력을띠며, 접합온도에서유리조성물과파이렉스재질유리의점도를비슷하게제어하여접합가공성을향상시키고냉각시발생되는열 응력에의한크랙발생을방지하였다.

    집광식 태양열 집열기를 위한 혼합식 태양추적제어장치
    43.
    发明公开
    집광식 태양열 집열기를 위한 혼합식 태양추적제어장치 有权
    用于太阳能收集器的混合太阳跟踪控制器

    公开(公告)号:KR1020010060470A

    公开(公告)日:2001-07-07

    申请号:KR1019990062759

    申请日:1999-12-27

    CPC classification number: Y02E10/47 H02S20/30 H02S20/32

    Abstract: PURPOSE: A hybrid sun tracking controller for a solar collector is provided to use mid and high temperature solar heat by adopting an anemometer and an anemoscope as a protecting device for protecting a solar collector from the sudden change of surroundings. CONSTITUTION: A controller using a computer(10) or a microprocessor of a sun tracking controller calculates an azimuth angle and altitude of the sun by using latitude, longitude, and the current time at a mounting position of a solar collector. The calculated azimuth angle and altitude are transmitted to a servo motor controller(11) available for communicating with the controller. The servo motor controller drives a servo motor at a maximum allowable RPM(Revolutions Per Minute) by using a servo motor drive(12). Thereby, the solar collector is rotated in the incident direction of sunbeams. The collector continues sun tracking by using the calculated position and the input position of the sun from the sun tracking sensor so that sun tracking is exactly performed.

    Abstract translation: 目的:提供一种用于太阳能收集器的混合太阳跟踪控制器,通过采用风速计和风速计作为保护太阳能收集器免受周围环境突然变化的保护装置,使用中高温太阳能热量。 构成:使用计算机(10)或太阳跟踪控制器的微处理器的控制器通过使用纬度,经度和太阳能收集器的安装位置处的当前时间来计算太阳的方位角和高度。 计算出的方位角和高度被传送到可与控制器通信的伺服电动机控制器(11)。 伺服电机控制器通过使用伺服电机驱动器(12)以最大允许RPM(每分钟转数)驱动伺服电机。 由此,太阳能收集器沿着阳光的入射方向旋转。 收集器通过使用计算的位置和来自太阳跟踪传感器的太阳的输入位置来继续太阳跟踪,使得正确执行太阳跟踪。

    접합용 유리조성물
    44.
    发明公开
    접합용 유리조성물 有权
    用于粘合工艺的玻璃组合物

    公开(公告)号:KR1020010017756A

    公开(公告)日:2001-03-05

    申请号:KR1019990033424

    申请日:1999-08-13

    CPC classification number: C03C8/245 C03C3/072 C03C8/10 C03C8/18

    Abstract: PURPOSE: A glass composition is provided to be used in adhesion process to enhance adhesive strength while maintaining low-melting point and high thermal expansion coefficient. CONSTITUTION: A process for producing glass composition comprises: blending 70-85 wt.% of PbO, 13-20 wt.% of B2O3, 1-12 wt.% of SrO and 1-5 wt.% of SiO2 into a glass powder; mixing the resultant powder with 85-99 wt.% of CuO and 1-15 wt.% of CaF2. The PbO-B2O3-SrO crystalline glass powder added with CaF2 and CuO is preferably useful in adhesion process of a copper product such as a copper pipe of a solar collector. The glass powder has excellent fluidity and adhesion with the copper pipe and can reduce time required for the adhesion process.

    Abstract translation: 目的:提供一种玻璃组合物,用于粘合过程中,以提高粘合强度,同时保持低熔点和高热膨胀系数。 构成:玻璃组合物的制造方法包括:将70〜85重量%的PbO,13〜20重量%的B 2 O 3,1〜12重量%的SrO和1〜5重量%的SiO 2与玻璃粉末 ; 将所得粉末与85-99重量%的CuO和1-15重量%的CaF 2混合。 添加有CaF 2和CuO的PbO-B 2 O 3 -SiO晶体玻璃粉末优选用于铜制品等太阳能收集体的铜制品的粘接工序。 玻璃粉末与铜管具有优异的流动性和粘附性,并且可以减少粘合过程所需的时间。

    평판형 태양열 집열기의 일체식 판형 집열판 제작 및 제작
    45.
    发明公开
    평판형 태양열 집열기의 일체식 판형 집열판 제작 및 제작 有权
    平板式太阳能热收集器的集成板式热收集板及其制造方法

    公开(公告)号:KR1020000051996A

    公开(公告)日:2000-08-16

    申请号:KR1019990002757

    申请日:1999-01-28

    CPC classification number: Y02E10/40

    Abstract: PURPOSE: An integrated plate type heat collecting plate of flat plate type solar heat collector and method for making the same are provided to improve heat performance without limitations of a configuration type of the prior heat collecting plate, welding method, and the number of risers and also to approach an integrated plate type solar heat collector with high efficiency and low cost through a development of a process for mass producing the heat collecting plate. CONSTITUTION: In an integrated plate type heat collecting plate of flat plate type solar heat collector and method for making the same, the method is featured in that two pairs of an upper absorber plate(18) and a lower absorber plate(20) are formed by pressing metal moulds in which an absorber plate, a riser tube, and a header with various configurations are formed to be integrated and be symmetric each other, the upper absorber plate(18) and the lower absorber plate(20) are abutted each other and then the outer periphery(10) thereof is seam welded for preventing leakage of water, the interior(12) thereof is spot welded to obtain a circuit for riser tube and to prevent an extension of tube.

    Abstract translation: 目的:提供一种平板式太阳能热收集器的集成板式集热板及其制造方法,以提高热性能,而不会限制现有的集热板的结构形式,焊接方法以及上升管的数量, 还通过开发用于大规模生产集热板的方法,以高效率和低成本地接近集成板式太阳能集热器。 构成:在平板型太阳能集热板的集成板式集热板及其制造方法中,形成有两对上吸收板(18)和下吸收板(20), 通过压制金属模具,其中形成吸收板,提升管和具有各种构造的集管,以一体化并彼此对称,上吸收板(18)和下吸收板(20)彼此抵接 然后对其外周(10)进行缝焊,以防止水的泄漏,其内部(12)被点焊,以获得用于提升管的电路并防止管的延伸。

    미세캡슐화된상변화물질을이용한이중온수관
    46.
    发明公开
    미세캡슐화된상변화물질을이용한이중온수관 失效
    双热水管,使用细小的相位变化物质

    公开(公告)号:KR1020000025037A

    公开(公告)日:2000-05-06

    申请号:KR1019980041914

    申请日:1998-10-08

    Abstract: PURPOSE: A dual hot water pipe is provided to reduce the consumption of energy by extending the heat radiation time by adding the latent heat effect to the sensitive heat effect, to improve the degree of pleasant of the living environment, to offer the effects of the regeneration and prevention of the bursting in winter. CONSTITUTION: A duplicated hot water pipe uses the latent heat by filling capsuled fine phase variable material in the gap(4) of the duplicated pipes(2,3). The latent heat regenerating material able to be applied is within 50-85°C of temperature in its melting point to lengthen the heat radiation time when heating by adding the heat latent function to the sensitive heat function of a general hot water pipe.

    Abstract translation: 目的:提供双热水管道,通过将热效应加到敏感热效应上来延长热辐射时间,从而提高生活环境的舒适度,从而减少能量的消耗,提供 再生和预防冬季爆发。 构成:复制热水管通过在复制管道(2,3)的间隙(4)中填充胶囊细相变材料来使用潜热。 能够施加的潜热再生材料在其熔点的温度在50-85℃之内,通过将热潜功能添加到一般热水管的敏感热功能来加热加热时的热辐射时间。

    LFR(Linear Fresnel Reflector)를 이용한 집광 방법 및 장치
    49.
    发明公开
    LFR(Linear Fresnel Reflector)를 이용한 집광 방법 및 장치 无效
    使用LFR(线性菲涅尔反射镜)的冷凝方法和设备

    公开(公告)号:KR1020170032635A

    公开(公告)日:2017-03-23

    申请号:KR1020150130209

    申请日:2015-09-15

    CPC classification number: Y02E10/42 Y02E10/44 Y02E10/47

    Abstract: 본발명의일 실시예는태양광집광기가설치된지점의위도, 경도및 현재시간을사용하여태양의방위각및 고도각을계산하여태양의위치를추적하는태양추적제어장치와, 상기태양추적제어장치로부터신호를입력받아피니언을회전시키는구동부와, 상기피니언의회전동작에맞추어직선운동을수행하는랙 상의복수개의반사판및 상기반사판을통해반사된태양광을흡수하는흡수기를포함하는 LFR을이용한태양광집광장치를제공한다.

    Abstract translation: 本发明的一个实施方式的太阳能收集器使用纬度,经度和通过计算太阳方位角和仰角提供当前时间点以跟踪太阳的位置跟踪控制装置的太阳能跟踪控制装置中,来自太阳 根据小齿轮的旋转进行直线运动的齿条上的多个反射器和吸收通过反射器反射的太阳光的吸收器, 它提供了一种装置。

    신재생에너지 자원지도 생성 장치 및 방법
    50.
    发明公开
    신재생에너지 자원지도 생성 장치 및 방법 审中-实审
    用于生成可再生能源资源的装置和方法

    公开(公告)号:KR1020160134947A

    公开(公告)日:2016-11-24

    申请号:KR1020150067065

    申请日:2015-05-14

    CPC classification number: G06Q50/06 G06Q50/10 Y04S10/60

    Abstract: 신재생에너지자원지도생성장치및 방법이개시된다. 본발명에따른신재생에너지자원지도생성장치는, 신재생에너지자원지도를생성하는장치에있어서, 신재생에너지자원에대한데이터를수집하여분석하는자료수집부; 상기자료수집부로부터수집된데이터를기반으로지리정보, 에너지정보및 잠재량정보가포함된신재생에너지자원지도를생성하는지도생성부; 및상기지도생성부로부터생성된지도를기반으로정책분야, 산업분야, 학술분야및 공공분야에대한분석데이터를제공하는정보활용부를포함하는것을특징으로한다.

    Abstract translation: 公开了一种用于产生新的和可再生的能量资源图的装置和方法。 根据本发明的用于产生新的和可再生能源图的装置是用于产生新的和可再生的能量资源图的装置,该装置包括:用于收集和分析新的和可再生能源的数据的材料收集单元 ; 地图生成单元,其基于从所述材料收集单元收集的数据,生成包含地理信息,能量信息和潜在信息的新的和可再生的能量资源图; 以及信息利用单元,其基于从地图生成单元生成的地图,提供关于策略部门,工业部门,学术部门和公共部门的分析数据。

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