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A Bio-Inspired Downhole Power Supply using Vibration Energy

机译:一种使用振动能量的生物启发井下电源

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With the rapid development of the petroleum industry, downhole tools in used in are gradually developing from mechanization towards automation and intelligence. Now most of the electrical devices used in the downhole tools utlizize the wellbore control technolgy to work in differenl situation. These devices usually adopt traditional battery technology as the solution of power supply. It is unavoidable to fish up the devices using disposable batteries or to put the charger into the accurate downhole position to charge the rechargeable batteries if the the batteries run out. As a result of these situaion, the normal working process is interrupted, which leads to a significant decline in productivity. Facing the delimma, this paper proposes a bionics piezoelectric energy harvester based on vortex-shedding vibration to solve the existing problem of traditional battery technology in the fluid environment. The harvester mainly consists of bluff body, piezoelectric energy transducer, and the rectifying circuit. PZT and PVDF are used as functioanl materials in the key component of the piezoelectric energy transducer. Finally PZT shows the superior performance than the one of PVDF considering the experimental results about the working condition, service life and awful operating process. Testing results also showed that the voltage of the harvester can achieve 4.88V under the condition of 0.8m/s flow velocity and 25mm pipeline diameter and the power can reach 1600mW when the load resistance is about 360 kΩ. The bionic vibration energy harvester offers an intriguing alternative to collect ambient energy from liquid environment for long-term use of power.
机译:随着石油工业的快速发展,在井下使用的工具逐渐从向自动化,智能化机械化发展的。现在,井下工具中使用的大多数电气设备利用井眼控制技术在不同的情况下工作。这些设备通常采用传统电池技术作为电源的解决方案。使用一次性电池捕获设备或将充电器放入准确的井下位置,以将充电器放入准确的井下位置,如果电池耗尽,则可以将充电电池充电。由于这些赛时,正常的工作过程被中断,这导致生产力显着下降。本文面对德米玛,提出了一种基于涡流振动的仿生学压电能源收割机,以解决流体环境中传统电池技术的现有问题。收割机主要由虚B体,压电能输电和整流电路组成。 PZT和PVDF用作压电能换能器的关键部件中的FUNCTIOANL材料。最后,PZT表现出比PVDF的优越性,考虑到工作条件,使用寿命和可怕操作过程的实验结果。测试结果还表明,在载荷电阻约为360kΩ时,收割机的电压可以在0.8m / s的流速和25mm管道直径的条件下实现4.88V,电源可以达到1600mW。仿生振动能量收割机提供了一种有趣的替代方案,可以从液体环境中收集环境能量,以便长期使用电力。

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