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Flow Characterization of Vapor Phase of Geothermal Fluid in Pipe Using Isotope 85Kr and Residence TIME Distribution Modeling

机译:同位素85Kr和停留时间分布建模表征地热流体在管道中的气相流动。

摘要

Measurement of vapor flow in geothermal pipe faces great challenges due to fast fluids flow in high-temperature and high-pressure environment. In present study the flow rate measurement has been performed to characterization the geothermal vapor flow in a pipe. The experiment was carried out in a pipe which is connected to a geothermal production well, KMJ-14. The pipe has a 10” outside diameter and contains dry vapor at a pressure of 8 kg/cm2 and a temperature of 170 oC. Krypton-85 gas isotope (85Kr) has been injected into the pipe. Three collimated radiation detectors positioned respectively at 127, 177 and 227m from injection point were used to obtain experimental data which represent radiotracer residence time distribution (RTD) in the pipe. The last detector at the position of 227 m did not respond, which might be due to problems in cable connections. Flow properties calculated using mean residence time (MRT) shows that the flow rate of the vapor in pipe is 10.98 m/s, much faster than fluid flow commonly found in various industrial process plants. Best fitting evaluated using dedicated software developed by IAEA expert obtained the Péclet number Pe as 223. This means that the flow of vapor of geothermal fluids in pipe is plug flow in character. The molecular diffusion coefficient is 0.45 m2/s, calculated from the axial dispersion model. Received: 21 November 2013; Revised: 16 May 2014; Accepted: 23 May 2014
机译:由于高温高压环境中流体的快速流动,地热管道中蒸汽流量的测量面临着巨大的挑战。在当前的研究中,已经进行了流量测量以表征管道中的地热蒸气流。实验是在与地热采油井KMJ-14连接的管道中进行的。该管的外径为10英寸,并包含压力为8 kg / cm2和温度为170 oC的干蒸汽。 the 85气体同位素(85Kr)已注入管道。使用三个分别位于距注入点127、177和227m处的准直辐射探测器获取代表管道中放射性示踪剂停留时间分布(RTD)的实验数据。 227 m位置的最后一个检测器没有响应,这可能是由于电缆连接问题所致。使用平均停留时间(MRT)计算的流动特性表明,管道中蒸汽的流速为10.98 m / s,比各种工业过程工厂中常见的流体流速要快得多。使用由国际原子能机构专家开发的专用软件评估的最佳拟合得出的佩克莱特数Pe(PE)为223。这意味着管道中的地热流体的蒸汽流具有塞流特性。根据轴向分散模型计算得出的分子扩散系数为0.45 m2 / s。收到:2013年11月21日;修订日期:2014年5月16日;接受:2014年5月23日

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