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    • 34. 发明授权
    • 슬라이딩되는 하향식 유속센서가 구비되는 조간대 3-D 유속측정장치 및 그 운용방법
    • 具有用于测量潮汐平坦上的3维流速的向下电流传感器的上下滑动装置及其管理方法
    • KR101447979B1
    • 2014-10-13
    • KR1020140089302
    • 2014-07-15
    • 한국지질자원연구원
    • 장태수
    • G01P5/02
    • G01P5/065E02D27/52G01P5/001G01W1/08
    • A 3-dimensional intertidal zone flow rate measuring apparatus having a slidable downward flow rate sensor includes: a pair of first and second sliding supports (110a, 110b), which are parallel to each other and vertically provided on a seafloor (G) of an intertidal zone; a sliding bar (120) having both ends supported by the pair of first and second sliding supports (110a,110b) and slidable up and down; a floating member (130) coupled to a side of the sliding bar (120) to generate buoyance by sea water of the intertidal zone; and a flow rate sensor (140) provided on a side of the floating member (130) or the sliding bar (120) to measure a flow rate of the sea water. Therefore, according to the 3-dimensional intertidal zone flow rate measuring apparatus having a slidable downward flow rate sensor and a method of operating the same of an embodiment of the present invention, the flow rate can be measured regardless of the sea water depth of the target to be observed.
    • 具有可滑动的向下流量传感器的三维潮间带流量测量装置包括:一对第一和第二滑动支撑件(110a,110b),它们彼此平行并垂直设置在海底(G)上, 潮间带; 滑动杆(120),其两端由所述一对第一和第二滑动支撑件(110a,110b)支撑并可上下滑动; 浮动构件(130),其联接到所述滑动杆(120)的一侧,以通过所述潮间带的海水产生浮力; 以及设置在所述浮动部件(130)或所述滑杆(120)侧的流量传感器(140),以测量所述海水的流量。 因此,根据具有可滑动的向下流量传感器的3维潮间带流量测量装置及其操作方法,可以测量流量,而不管其是否具有海水深度 目标被观察。
    • 35. 发明公开
    • 주행풍 속도 및 풍속의 검출 방법
    • 确定风速和航空速度的方法
    • KR1020140060248A
    • 2014-05-19
    • KR1020130135510
    • 2013-11-08
    • 로베르트 보쉬 게엠베하
    • 콧트하우스슈테판슐츠우도바그너안드레아스
    • G01P5/02
    • B60W40/02G01P5/06G01P21/025
    • The present invention relates to a method for determining speed of travelling wind acting on a moving motor vehicle along a travel direction, which includes the steps of: measuring a characteristic value for a force of the travelling wind of the moving motor vehicle on a rotor of an engine fan; and calculating the speed of the travelling wind acting on the motor vehicle along the travel direction from the characteristic value. In addition, the present invention relates to a method for determining airstream speed along the travel direction of the moving motor vehicle, which includes the steps of: detecting the speed of the travelling wind acting on the moving motor vehicle along the travel direction in accordance with the method of the present invention; detecting a travel speed of the motor vehicle; and calculating the speed of the travelling wind acting on the motor vehicle along the travel direction and the airstream speed along the travel direction of the motor vehicle from the travel speed of the motor vehicle.
    • 本发明涉及一种确定沿行驶方向作用于移动机动车辆的行驶风的速度的方法,包括以下步骤:测量运动中的机动车辆的行驶风力的转速特性值 发动机风扇; 以及从所述特征值计算沿行驶方向作用在所述机动车辆上的行驶速度。 另外,本发明涉及一种用于确定沿着移动机动车辆的行驶方向的气流速度的方法,其包括以下步骤:根据行驶方向检测沿行驶方向作用在移动机动车辆上的行驶速度 本发明的方法; 检测机动车辆的行驶速度; 以及从所述机动车辆的行驶速度沿着所述行驶方向和所述机动车辆的行驶方向的气流速度计算作用在所述机动车辆上的行驶风的速度。
    • 36. 发明公开
    • 풍력발전단지 네트워크망을 활용한 풍향 및 풍속 예측 시스템 및 예측 방법
    • 风景公园网络的风向和风速预测系统及其预测方法
    • KR1020140054529A
    • 2014-05-09
    • KR1020120120110
    • 2012-10-29
    • 대우조선해양 주식회사
    • 김영국
    • G01P5/02G01P13/00
    • G01P5/07F03D7/0208G01P13/025
    • The present invention relates to a wind direction and velocity forecasting system and method using a network of a wind park and, more particularly, to a wind direction and velocity forecasting system and method using a network of a wind park, which corrects each wind direction and velocity of wind turbines through the network of the wind park and analyzes information about the wind direction and velocity of a normally operating wind turbine to utilize the analyzed result to forecast a wind direction and velocity of a troubled wind turbine. In addition, although an anemoscope and an anemometer are out of order, the wind direction and velocity forecasting system allows the corresponding wind turbine to be normally operated so that the operation ratio can be increased. The wind direction and velocity forecasting system according to the present invention includes a network installed in a wind park to allow a plurality of wind turbines in the wind park to communicate with each other; anemoscopes and anemometers installed at each of the wind turbines to sense wind directions and velocities, respectively; and a wind direction/velocity forecasting unit for receiving the signals sensed by the anemoscopes and anemometers, wherein, when an anemoscope and anemometer are out of order, wind direction/velocity forecasting unit forecasts a wind direction and velocity at a position at which a wind turbine having the troubled anemoscope and anemometer is located such that the forecasted wind direction and velocity is utilized to normally operate the corresponding wind turbine.
    • 本发明涉及一种使用风力发电场网络的风向和速度预测系统及方法,更具体地涉及使用风场的网络的风向和速度预测系统及方法,该系统和方法校正每个风向, 通过风力发电场网络的风力发电机的速度,分析正常运行的风力涡轮机的风向和速度的信息,以利用分析结果来预测遇难的风力涡轮机的风向和速度。 另外,尽管风速计和风速计有故障,风向和速度预报系统可以使相应的风力发电机正常运行,从而可以提高运行比。 根据本发明的风向和速度预测系统包括安装在风力发电场中的网络,以允许风场中的多个风力涡轮机彼此通信; 安装在每个风力涡轮机上的风向器和风速计分别感测风向和速度; 以及风向/速度预测单元,用于接收由所述风向仪和风速计感测到的信号,其中,当风速计和风速计出现故障​​时,风向/速度预测单元预测风向和风速在风的位置处的风向和速度 具有麻烦的风速计和风速计的涡轮机被定位成使得预测的风向和速度被用于正常操作相应的风力涡轮机。
    • 37. 发明授权
    • 압전 필름을 이용한 와류 주파수 측정장치
    • 使用压电薄膜的VORTEX频率测量装置
    • KR101218331B1
    • 2013-01-21
    • KR1020110102557
    • 2011-10-07
    • 숭실대학교산학협력단
    • 김진오오세환홍종한
    • G01P5/02G01L9/08G01F1/32
    • G01P5/07G01D21/02G01F1/3236G01L9/085
    • PURPOSE: An eddy frequency measuring device is provided to prevent a fracture due to external shock or a case of repeated curving by an eddy. CONSTITUTION: An eddy frequency measuring device comprises the following details: A body(310) is adhered outside of a structure within the occurrence of an eddy. An eddy frequency measuring part(200) comprises an piezoelectric film(210) and an electrode(220), and measures the eddy frequency. The piezoelectric film is fixed in a side of the body, generates a deformation due to a vibration caused by an eddy occurred in the structure, and generates an electronic signal. The electrode is placed on an extended line of the piezoelectric film, fixed in another side of the body, and generates the electric signal caused by the deformation of the piezoelectric film. An eddy frequency confirming part confirms coincidence of the natural frequency of the structure and the eddy frequency measured by the eddy frequency measuring part. [Reference numerals] (AA) Turbulence
    • 目的:提供涡流频率测量装置,以防止外部冲击导致的断裂或涡流反复弯曲的情况。 构成:涡流频率测量装置包括以下细节:主体(310)被附着在涡流发生的结构的外部。 涡流频率测量部件(200)包括压电薄膜(210)和电极(220),并测量涡流频率。 压电膜固定在主体的一侧,由于在结构中发生的涡流引起的振动而产生变形,并产生电子信号。 电极被放置在压电膜的延伸线上,固定在身体的另一侧,并产生由压电膜变形引起的电信号。 涡流频率确认部确认结构的固有频率与涡流频率测量部所测量的涡流频率的一致。 (附图标记)(AA)湍流
    • 38. 发明公开
    • 풍속계 및 풍속 측정 방법
    • 用于测量风速的测速仪和方法
    • KR1020110123126A
    • 2011-11-14
    • KR1020100042597
    • 2010-05-06
    • 삼성중공업 주식회사
    • 권도훈
    • G01P5/07G01P5/06G01P5/02
    • G01P5/07G01P5/065G01P13/04H02K7/1807Y02E10/721
    • PURPOSE: An anemometer with a fan and a method for measuring a wind speed are provided to measure the same speed of wind even though wind flows in at various angles. CONSTITUTION: A first frame(100) comprises a frame body(110), a fan shaft supporter(120), and a fan shaft(130). The frame body includes a space inside. The fan shaft is placed at the center of the space. The fan shaft supporter supports the frame body in one side and supports the fan shaft in the other side. A fan(200) is supported by the fan shaft in the space and rotates around the fan shaft. A rotary shaft(300) is extended from the frame body to an outside direction. A supporting part(500) supports the rotary shaft to be rotatable so that the fan faces a wind direction.
    • 目的:提供具有风扇的风速计和用于测量风速的方法,以便即使风以各种角度流动来测量相同的风速。 构成:第一框架(100)包括框体(110),风扇轴支撑件(120)和风扇轴(130)。 框体包括内部空间。 风扇轴位于空间的中心。 风扇轴支撑件支撑在一侧的框体,并在另一侧支撑风扇轴。 风扇(200)由空间中的风扇轴支撑并围绕风扇轴旋转。 旋转轴(300)从框体延伸到外侧方向。 支撑部分(500)支撑旋转轴以使风扇面向风向。