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Novel Wireless Sensor System for Dynamic Characterization of Borehole Heat Exchangers

机译:用于井眼换热器动态特性的新型无线传感器系统

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摘要

The design and field test of a novel sensor system based in autonomous wireless sensors to measure the temperature of the heat transfer fluid along a borehole heat exchanger (BHE) is presented. The system, by means of two specials valves, inserts and extracts miniaturized wireless sensors inside the pipes of the borehole, which are carried by the thermal fluid. Each sensor is embedded in a small sphere of just 25 mm diameter and 8 gr weight, containing a transceiver, a microcontroller, a temperature sensor and a power supply. A wireless data processing unit transmits to the sensors the acquisition configuration before the measurements, and also downloads the temperature data measured by the sensor along its way through the BHE U-tube. This sensor system is intended to improve the conventional thermal response test (TRT) and it allows the collection of information about the thermal characteristics of the geological structure of subsurface and its influence in borehole thermal behaviour, which in turn, facilitates the implementation of TRTs in a more cost-effective and reliable way.
机译:提出了一种基于自主无线传感器的新型传感器系统的设计和现场测试,以测量沿井壁热交换器(BHE)的传热流体的温度。该系统通过两个特殊阀将微型无线传感器插入并提取到井眼管道内,这些传感器由导热液携带。每个传感器都嵌入直径仅为25 mm,重量为8 gr的小球体中,其中包含一个收发器,一个微控制器,一个温度传感器和一个电源。无线数据处理单元在测量之前将采集配置发送到传感器,并通过BHE U型管下载传感器测量的温度数据。该传感器系统旨在改进常规的热响应测试(TRT),并允许收集有关地下地质结构的热特性及其对井眼热行为的影响的信息,从而有助于在矿井中实施TRT。更具成本效益和更可靠的方式。

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