Collaborative Research: Submersible Humidity Sensor research and development for measuring surface air humidity and evaporative flux on autonomous ocean floats
Collaborative Research: Submersible Humidity Sensor research and development for measuring surface air humidity and evaporative flux on autonomous ocean floats
批准号:
2122786
负责人:
John Farrar
金额:
$94.8万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
已结题
起止时间:
2022-01-01 至 2024-12-31
中文摘要
水蒸气是地球上最强大、最多变的温室气体,是降水和大气中凝结潜热的来源。卫星对湿度的观测很差。耐用的传感器和观测平台的成本限制了对海面空气湿度的精确观测。开发一种用于低成本无人值机海洋浮子的潜水式湿度传感器,可以在更多地点更准确地测量空气表面湿度和蒸发。更精确的湿度测量将减少蒸发和大气-海洋热收支的最大误差。潜水浮子的湿度测量将改善季节到亚季节时间尺度的天气预报。具体来说,在距离热带气旋(飓风)太遥远或太危险的条件下对船员船只进行测量将改善热带气旋强度预报,从而挽救生命和财产。该项目旨在开发和测试一种强大的潜水式表面空气湿度传感器,并将其集成到标准的自主海洋剖面浮标中。研究人员将与经过验证的观测系统一起测试湿度传感器,表征其在各种天气条件下的准确性和误差。这项研究将评估海面浮子测量结果的代表性。该研究将确定在整体气动公式中使用湿度观测来估算蒸发的准确性。本研究将探讨用湿温度计测量的温度瞬变是否可以作为测量蒸发通量的替代方法。湿度传感器的开发提高了“海洋科学研究界的观测、实验或分析能力”,以响应海洋技术和跨学科协调计划的目标。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Water vapor is Earth’s most potent and variable greenhouse gas, the source of its precipitation, and of its latent heat of condensation in the atmosphere. Humidity is poorly observed by satellites. Accurate marine observations of surface air humidity are prohibited by the cost of durable sensors and observing platforms. Development of a submersible humidity sensor for low-cost unattended ocean floats will allow measurement of air surface humidity and evaporation more accurately and in more locations. More accurate humidity measurements will reduce the largest error in evaporation and atmosphere-ocean heat budgets. Humidity measurements from submersible floats will improve weather forecasting on seasonal to subseasonal time scales. Specifically, measurements in conditions too remote or too dangerous for crewed vessels near tropical cyclones (hurricanes) will improve tropical cyclone intensity forecasts, saving life and property. This project is to develop and test a robust submersible surface air humidity sensor and integrate it into standard autonomous ocean profiling floats. The researchers will test the humidity sensor alongside proven observing systems, characterizing its accuracy and error in various weather conditions. The research will assess the representativeness of measurements from surfacing ocean floats. The research will determine the accuracy of evaporation estimates using humidity observations in bulk aerodynamic formulae. The research will explore whether temperature transients measured at a wet thermometer can be used as an alternative method for measuring evaporative flux. The development of the humidity sensor enhances “observational, experimental or analytical capabilities of the ocean science research community,” in response to goals of Ocean Technology and Interdisciplinary Coordination program.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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会议论文
Collaborative Research: A Study of Submesoscale Mixed-Layer Dynamics at a Mid-Latitude Oceanic Front: Isolating the Sub- and Super-Inertial Response to Atmospheric Forcing
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批准号:1536359
-
项目类别:Standard Grant
-
资助金额:$35.47万
-
财政年份:2015
-
负责人:John Farrar
-
依托单位:
Red Sea Circulation and Dynamics
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批准号:1435665
-
项目类别:Standard Grant
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资助金额:$70.0万
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财政年份:2014
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负责人:John Farrar
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依托单位:
国内基金
海外基金
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