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首页> 外文期刊>Renewable energy >UAV-based thermal imaging and heat output estimation of a coastal geothermal resource: La Jolla beach, Baja California, Mexico
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UAV-based thermal imaging and heat output estimation of a coastal geothermal resource: La Jolla beach, Baja California, Mexico

机译:基于UAV的热成像和热输出估计沿海地热资源:La Jolla Beach,Baja California,墨西哥

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The exploration of unexploited geothermal resources is required to encourage the use of renewable energy. This study focuses on La Jolla beach, Ensenada, Mexico. The beach hosts a thermal anomaly with temperatures of up to 52 degrees C at the surface and up to 93 degrees C at 20 cm depth. The objectives were to: map the thermal anomaly, understand the impact of tides, quantify the thermal water discharge rate and heat output, and discuss a direct use of the energy. The mapping was performed with Unmanned Aerial Vehicles equipped with optical and thermal cameras at two different dates. Additional temperature measurements were performed with a thermocouple, while the total fluid discharge was estimated from flow measurements. A comparison between the campaigns indicated that the highest surface temperature area was more than three times larger in 2019 than in 2018 (259 m(2) vs. 69 m(2)). Such change was due to the tidal range and associated hydrostatic pressure variations. The total thermal water discharge is 330 +/- 44 L s(-1), which corresponds to an advective heat output of 40.5 +/- 5.2 MWt. The use of this energy in a Multi-Effect Distillation desalinization plant can contribute to cover the shortage of freshwater in Ensenada. (c) 2020 Elsevier Ltd. All rights reserved.
机译:需要探索未开发的地热资源,以鼓励使用可再生能源。本研究重点介绍了La Jolla Beach,墨西哥伊连安纳达。海滩在表面迎热温度高达52摄氏度的温度,高达93摄氏度深度深度。目的是:映射热异常,了解潮汐的影响,量化热排放率和热输出,并讨论直接使用的能量。使用在两个不同的日期配备有光学和热摄像头的无人机车辆进行映射。用热电偶进行额外的温度测量,而总流体放电估计从流量测量估计。运动之间的比较表明,最高表面温度面积在2019年比2018年大于三倍(259米(2)与69米(2))。这种变化是由于潮汐范围和相关的静水压压力变化。总热排放量为330 +/- 44L s(-1),其对应于40.5 +/- 5.2 mwt的平均热输出。在多效蒸馏除去植物中使用这种能量可以有助于涵盖埃塞纳达州淡水的短缺。 (c)2020 elestvier有限公司保留所有权利。

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