°</sup>C ;對(duì)比室內(nèi)試驗(yàn)和數(shù)值模擬結(jié)果,不同環(huán)境溫度下的導(dǎo)熱板各測(cè)溫點(diǎn)溫度曲線變化趨勢(shì)接近,其導(dǎo)熱能力穩(wěn)定性好。研究結(jié)果可為隨鉆設(shè)備抗高溫技術(shù)研究提供理論參考。-龍?jiān)雌诳W(wǎng)" />

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基于石墨烯導(dǎo)熱工具的隨鉆儀器溫度調(diào)控研究

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Liu Ke,Guan Kang,Zhang Haiyan,et al. Temperature control of MWD instruments based on graphene thermal conductivity tool [J]. China Petroleum Machinery,2025,53(5):70-76.

關(guān)鍵詞:隨鉆儀器;導(dǎo)熱板模型;導(dǎo)熱能力;模擬溫度曲線;試驗(yàn)驗(yàn)證中圖分類號(hào):TE927 文獻(xiàn)標(biāo)識(shí)碼:A DOI:10.12473/CPM.202405060

Temperature Control of MWD Instruments Based on Graphene Thermal Conductivity Tool

Liu Ke 1,2 Guan Kang12Zhang Haiyan3.4Peng Hao1.2Xi Xiaowan1.2Zhang Hengrui 3,4 Liao Maolin 3,4 (1.CNPCEngineering TechnologyR&DCompanyLimited;2.National Enginering Research CenterofOil&GasDrillngand CompletinTechology3.DounoleIntellgentControleseachIstitute,UniversityofSciencendechnologyBeijing;4hoolf Mechanical Engineering,University of Science & Technology Beijing)

Abstract:The high temperature environment in the wellbore hasadverse impacts on the performance and service life of numerous temperature-sensing elements (e.g.sensors and circuit boards)of measurement while driling(MWD) instruments.This paper presents a passive cooling method for temperature-sensing elements of MWD instruments basedonan efficient grapheme thermal conductivity tool.The heat generation of electronic elements in their services was simulated and tested to understandthe performanceof the thermal conductivity tool,andthe test results of simulationand test werecompared.Itis indicated that the overallthermal conductivityof thethermal conductivity tool exceeds 650W/(m?K) ,which is 3.27 times that of 6O61 aluminum alloy material. At different laboratorytesttemperatures,the temperature difference between diffrent areas on the surface of the thermal conductive plate after reaching a thermal equilibrium is extremely small, below 3°C in all costs. By comparing the laboratory test results with the numerical simulationresults,itis found that the temperature curves of the thermal conductive plate at all temperature measuring points under different environmental temperatures are similar in trends,suggesting a good stability in thermal conductivity.The research results provide theoretical reference for the study of high-temperature resistance technology for MWD instruments.

Keywords:MWD instrument; thermal conductive plate model; thermal conductivity;temperature curvefrom simulation;test verification

0引言

深層油氣資源是世界能源的重要組成部分[1]我國(guó)油氣資源對(duì)外依存度較高,2023年我國(guó)原油進(jìn)口量為5.6億t,生產(chǎn)量為2.1億t,對(duì)外依存度達(dá)到了 72.73%[2] 。(剩余9834字)

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