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首页> 外文期刊>Journal of Engineering & Applied Sciences >Tsunami Prediction Using Electromagnetic Wave Sensor via. Tsunami Buoys
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Tsunami Prediction Using Electromagnetic Wave Sensor via. Tsunami Buoys

机译:电磁波传感器通过电磁波传感器预测。 海啸浮标

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摘要

Our environment currently suffering from multiple issues due to change in nature like global warming, natural disasters like Tsunami, earthquake, floods, volcanic eruptions, etc. To predict before disaster is challenging task where scientist invent devices to get simultaneous data regarding environment changes with the help of sensors. In the study, we designed a device which senses waves in seas that manipulates via Tsunami buoys. Tsunami buoys are deployed in deep seas and high wave regions to get various surrounding data that helps to predict Tsunami. National geographic centers have the facility to collect the data from various Tsunami buoys, each data is been analyzed, manipulated, systemized into a centralized prediction mechanism. Electromagnetic wave sensors embedded in each Tsunami buoys that plot courses among others to simulate variation on waves. According to that Wide Range Angle Calculation (WRAC) methodology, arc kind of diplomatic solution is implemented to check and calculate the wave radius which is later then derived, predicting damage circles. By this device, circle radius of damage is identified and avoiding the damage percentage before it started to destroy surroundings as well as human beings.
机译:我们的环境目前因自然变化而遭受多重问题,如全球变暖,像海啸,地震,洪水,火山岩爆发等自然灾害等待预测,在灾难发生挑战性的任务之前,科学家发明设备在有关环境变化的同步数据的情况下传感器的帮助。在该研究中,我们设计了一种在通过海啸浮标操纵的海域中感测的装置。海啸浮标部署在深海和高波浪地区,以获得各种周围数据,有助于预测海啸。国家地理中心具有从各种海啸浮标收集数据的设施,每个数据都被分析,操纵,系统化为集中预测机制。嵌入在每个海啸浮标中的电磁波传感器,其中绘图课程等方面的课程模拟波浪的变化。根据该宽范围角计算(WRAC)方法,实施弧的外交解决方案以检查并计算稍后导出的波半径,预测损伤圆圈。通过该设备,圆圆半径被识别并避免损坏百分比,然后才开始摧毁周围环境以及人类。

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