首页> 外文会议>Energy Nanotechnology International Conference; 20070905-07; Santa Clara,CA(US) >THERMAL MANAGEMENT OF DOWNHOLE OIL GAS LOGGING SENSORS FOR HTHP APPLICATIONS USING NANOPOROUS MATERIALS
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THERMAL MANAGEMENT OF DOWNHOLE OIL GAS LOGGING SENSORS FOR HTHP APPLICATIONS USING NANOPOROUS MATERIALS

机译:使用非多孔材料对高温高压应用的井下石油和天然气测井传感器进行热管理

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One of the main challenges in designing oil & gas downhole wireline logging tools for high temperature and high pressure (HTHP) environments is to put together the most efficient thermal packaging to enhance the tool's temperature survival time. In general, not all electronic components and sensors can withstand severe downhole temperature (max 500 degrees Fahrenheit). For those heat sensitive components, their electrical response and performance either decay or in some cases they completely fail when their temperature exceeds 300?F. In oil & gas wireline logging applications, the heat sensitive components can be thermally protected inside a Dewar vacuum flask that includes one or two thermal isolators and heat sinks. Cooler electronic components results in longer logging times that lead to a much higher performance and profitability. This paper first discusses the development of a one-dimensional analytical model to determine the transient temperature of heat sensitive sensors and electronic components in wireline logging tools. Second, it introduces a new and improved thermal packaging scheme based on a newly developed and commercially available nanoporous material. This material has a very low thermal conductivity and is used as a thermal shield between the outside environment and the electronics inside the flask. The new packaging scheme also includes a new design for the heat sink which is made of several solid disks separated by this nanoporous material. Results from this new design have shown roughly a 30% improvement compared with the conventional design. Results from both analytical and laboratory tests are discussed in this paper.
机译:设计用于高温和高压(HTHP)环境的石油和天然气井下电缆测井仪的主要挑战之一是将最有效的热包装放在一起以延长该仪器的温度生存时间。通常,并非所有的电子组件和传感器都能承受严苛的井下温度(最高华氏500度)。对于那些热敏感组件,其电响应和性能会下降,或者在某些情况下,当温度超过300°F时它们会完全失效。在石油和天然气电缆测井应用中,可以在带有一个或两个热隔离器和散热器的杜瓦真空瓶内对热敏感组件进行热保护。较凉的电子元件会导致更长的记录时间,从而带来更高的性能和收益。本文首先讨论一维分析模型的发展,以确定电缆测井工具中热敏传感器和电子元件的瞬态温度。其次,它基于新开发的和可商购的纳米多孔材料引入了一种新的改进的热包装方案。这种材料的导热系数非常低,可用作外部环境和烧瓶内部电子设备之间的隔热板。新的包装方案还包括散热器的新设计,该散热器由被这种纳米多孔材料隔开的多个固态盘制成。与常规设计相比,该新设计的结果显示大约有30%的改进。本文讨论了分析和实验室测试的结果。

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