精品素人自拍偷拍|91精品国产av国产|杨思敏伦理片|91制片厂杨柳信息|亚洲激情综合|蜜桃影像传媒ios下载|亚洲精品视频在线看|打屁股色网站|爱豆文化传媒影片|国产欧美精品一区二区色,明星换脸 av,国产日韩成人av,亚洲成a人影院

 
 
 
文章檢索
首頁» 過刊瀏覽» 2025» Vol.10» lssue(1) 156-168???? DOI : 10.3969/j.issn.2096-1693.2025.02.001
最新目錄| | 過刊瀏覽| 高級檢索
天然氣水合物巖心樣品帶壓參數(shù)測試系統(tǒng)與實驗研究
魯浩然, 盧春華, 黃柳松, 譚疇江, 喬夢迪
中國地質(zhì)大學(xué)( 武漢) 工程學(xué)院,武漢 430074
Testing system and experimental study on pressure parameters of natural gas hydrate core samples
LU Haoran, LU Chunhua, HUANG Liusong, TAN Choujiang, QIAO Mengdi.
Faculty of Engineering, China University of Geosciences, Wuhan 430074, China

全文: ? HTML (1 KB)?
文章導(dǎo)讀??
摘要? 天然氣水合物被認為極有可能成為未來最有遠景的新型接替能源,引起世界各國的廣泛關(guān)注,。天然氣水合物性能參數(shù)帶壓測試分析,對解釋賦存于地層中的水合物生長機理與預(yù)測水合物分解過程中地層物理力學(xué)性質(zhì)變化等極為重要,,更是構(gòu)建上述復(fù)雜情況下水合物賦存地層行為預(yù)測模型的關(guān)鍵所在,對評估儲層內(nèi)天然氣水合物賦存方式和資源量都具有重要意義,。通過地震或者測井所得數(shù)據(jù)對水合物巖心各項參數(shù)進行估算往往與實際值存在較大誤差,,且在現(xiàn)有技術(shù)條件下又很難進行原位地層參數(shù)測試,所以通過鉆井獲取水合物地層巖心再對其物理化學(xué)及力學(xué)性質(zhì)進行測試與分析是最為可靠的方法,。歐盟、美國,、德國等少數(shù)發(fā)達國家和地區(qū)已成功研制出水合物保真巖心樣品后處理和現(xiàn)場測試分析裝置并在生產(chǎn)現(xiàn)場應(yīng)用,,中國目前與深部海洋天然氣水合物保壓取樣鉆具對接的巖心現(xiàn)場測試分析和后處理技術(shù)仍不成熟,現(xiàn)場測試多數(shù)依靠國外相關(guān)檢測裝置和檢測方法,。本文介紹了一種天然氣水合物保壓巖心樣品現(xiàn)場參數(shù)測試分析系統(tǒng)的工作原理,、關(guān)鍵技術(shù)及相關(guān)實驗研究。該系統(tǒng)主要由巖心抓捕和切割單元,,取樣器保壓單元,,巖心樣品參數(shù)測試單元,巖心樣品存儲單元,、溫度和壓力維持單元等組成,,論文詳細介紹了各單元的結(jié)構(gòu)和工作原理。為了驗證參數(shù)測試系統(tǒng)的工作性能及不同壓力環(huán)境對參數(shù)測試的影響,,制備了3 種不同組分的模擬巖心,,在不同壓力下進行了縱波波速、電阻率和剪切強度測試,。研究表明:該天然氣水合物巖心樣品帶壓參數(shù)測試系統(tǒng)能夠在30 MPa的高壓下穩(wěn)定可靠工作,;壓力對巖心樣品電阻率的影響不大;對波速測試有影響,,壓力越大,,縱波波速度越大;壓力對巖心剪切強度的影響也比較大,。
服務(wù)
把本文推薦給朋友
加入我的書架
加入引用管理器
關(guān)鍵詞 : 天然氣水合物,保壓,巖心樣品,參數(shù)測試,實驗研究
Abstract

Natural gas hydrates are considered highly likely to become the most promising new alternative energy source in the future, attracting widespread attention from countries around the world.The analysis of performance parameters of natural gas hydrates through pressure testing is extremely important for explaining the growth mechanism of hydrates existing in the formation and predicting changes in the physical and mechanical properties of the formation during hydrate decomposition. It is also the key to constructing a prediction model for the occurrence behavior of gas hydrates in the complex situations mentioned above, which is of great significance for evaluating the occurrence mode and resource quantity of natural gas hydrates in the reservoir. Estimating various parameters of hydrate cores using seismic or logging data often results in significant errors from actual values, and it is difficult to conduct in-situ formation parameter testing under existing technical conditions. So obtaining hydrate formation cores through drilling and testing their physical, chemical, and mechanical properties is the most reliable method. A few developed countries and regions, such as the European Union, the United States, and Germany, have successfully developed post-processing and on-site testing analysis devices for hydrate fidelity core samples and applied them in production sites. Currently, China’s on-site testing analysis and post-processing technology for core samples connected to deep marine natural gas hydrate pressure sampling drilling tools is still immature, and most on-site testing relies on relevant foreign detection devices and methods. This article introduces the working principle, key technologies, and related experimental research of a field parameter testing and analysis system for natural gas hydrate pressure retaining core samples. The system is mainly composed of core capture and cutting units, sampler pressure maintaining units, core sample parameter testing units, core sample storage units, temperature and pressure maintaining units, etc. The structure and working principle of each unit are introduced in detail. In order to verify the working performance of the parameter testing system and the influence of different pressure environments on the parameter testing, the system tested the longitudinal wave velocity, resistivity and shear strength of three different hydrate simulation cores under different pressures. Research has shown that the pressure parameter testing system for natural gas hydrate core samples can work stably and reliably at a high pressure of 30 MPa. The influence of pressure on resistivity testing of hydrate core samples is not significant. Pressure has an impact on the wave velocity testing of hydrate core samples, and the higher the pressure, the greater the longitudinal wave velocity. The pressure has a great influence on test of core shear strength.


Key words: natural gas hydrate; pressure maintaining; core samples; parameter testing; experimental research
收稿日期: 2025-02-26 ????
PACS: ? ?
基金資助:國家重點研發(fā)計劃戰(zhàn)略性國際科技創(chuàng)新合作重點專項“天然氣水合物勘查開發(fā)技術(shù)聯(lián)合研究”(2018YFE0208200) 資助
通訊作者: [email protected]
引用本文: ??
魯浩然, 盧春華, 黃柳松, 譚疇江, 喬夢迪. 天然氣水合物巖心樣品帶壓參數(shù)測試系統(tǒng)與實驗研究. 石油科學(xué)通報, 2025, 10(01): 156-168 LU Haoran, LU Chunhua, HUANG Liusong, TAN Choujiang, QIAO Mengdi. Testing system and experimental study on pressure parameters of natural gas hydrate core samples. Petroleum Science Bulletin, 2025, 10(01): 156-168.
鏈接本文: ?
版權(quán)所有 2016 《石油科學(xué)通報》雜志社