
常健,男,漢族,1982年生,河北衡水市人,博士,教授,博士生導(dǎo)師。盆地與油藏研究中心副主任,油氣資源與探測(cè)國(guó)家重點(diǎn)實(shí)驗(yàn)室地質(zhì)年代學(xué)實(shí)驗(yàn)平臺(tái)負(fù)責(zé)人,中國(guó)地質(zhì)學(xué)會(huì)銀錘獎(jiǎng)獲得者。2007年在中國(guó)地質(zhì)大學(xué)(北京)獲學(xué)士學(xué)位,2013年獲中國(guó)石油大學(xué)(北京)博士學(xué)位。長(zhǎng)期從事沉積盆地溫壓場(chǎng)及資源環(huán)境效應(yīng)和地質(zhì)年代學(xué)方面的教學(xué)和科研工作;曾多次赴美國(guó)和英國(guó)開(kāi)展熱年代學(xué)合作研究?,F(xiàn)已發(fā)表學(xué)術(shù)論文近90篇,其中以第一/通訊作者在Geophysical Research Letters、Gondwana Research、科學(xué)通報(bào)等國(guó)內(nèi)外知名期刊發(fā)表40余篇。申請(qǐng)發(fā)明專(zhuān)利14項(xiàng),已授權(quán)7項(xiàng);獲軟件著作權(quán)2項(xiàng);獲省部級(jí)獎(jiǎng)勵(lì)共5項(xiàng)。2014年入選中國(guó)石油大學(xué)(北京)青年拔尖人才資助計(jì)劃,連續(xù)兩屆(2018-2020年度和2020-2022年度)獲得中國(guó)石油大學(xué)(北京)“優(yōu)秀教師”稱(chēng)號(hào)。
聯(lián)系電話(huà):010-89733332,E-mail: [email protected]
1、研究領(lǐng)域
(1)沉積盆地溫壓場(chǎng)及資源環(huán)境效應(yīng);(2)油氣構(gòu)造-成藏年代學(xué);(3)地?zé)岷秃つ芸碧脚c評(píng)價(jià);(4)地質(zhì)儲(chǔ)能
2、主講課程
(1)本科生課程《普通地質(zhì)學(xué)》和《普通地質(zhì)實(shí)習(xí)》
(2)研究生課程《含油氣盆地溫壓場(chǎng)》
3、科研項(xiàng)目
(1)在研項(xiàng)目
[1] 國(guó)家自然科學(xué)基金面上項(xiàng)目“塔里木臺(tái)盆區(qū)深層、古老層系有效古溫標(biāo)探索與熱史重建”(2023-2026,主持)
[2] 國(guó)家科技重大專(zhuān)項(xiàng)專(zhuān)題“深部含水層有利圈閉有效性評(píng)價(jià)技術(shù)”(2025-2029,主持)
[3] 國(guó)家自然科學(xué)基金聯(lián)合基金子任務(wù)“典型烴源灶埋藏史與古溫壓場(chǎng)研究”(2025-2028,主持)
[4] 中石化新星公司項(xiàng)目“碳酸鹽巖潛山熱儲(chǔ)聚熱機(jī)制研究—華北克拉通碳酸鹽巖潛山地?zé)崽锞蹮釞C(jī)制”(2025-2026,主持)
[5] 國(guó)家重點(diǎn)研發(fā)計(jì)劃課題“中國(guó)東部挽近時(shí)期熱體制與深層高溫地?zé)峋奂J健保?/span>2022-2026,研究骨干)
(2)部分結(jié)題項(xiàng)目
[1] 國(guó)家自然科學(xué)基金面上項(xiàng)目“塔里木北緣庫(kù)車(chē)逆沖推覆帶盆山耦合的構(gòu)造-熱演化研究-來(lái)自低溫?zé)崮甏鷮W(xué)的約束”(2020-2023,主持)
[2] 國(guó)家自然科學(xué)基金青年項(xiàng)目“塔里木盆地西北緣柯坪逆沖推覆帶構(gòu)造-熱演化的低溫?zé)崮甏鷮W(xué)約束”(2015-2017,主持)
[3] 國(guó)家油氣重大專(zhuān)項(xiàng)子專(zhuān)題“深層、古老大型氣田形成的溫壓條件”(2016-2020,主持)
[4] 國(guó)家自然科學(xué)基金聯(lián)合基金“典型海相深層溫壓場(chǎng)與烴源巖生烴演化研究”(2020-2023,參與)
[5] 國(guó)家自然科學(xué)基金重大項(xiàng)目“頁(yè)巖氣改造-散失途徑與保存條件”子專(zhuān)題(2017-2021,參與)
[6] 中海石油深海開(kāi)發(fā)有限公司項(xiàng)目“珠江口盆地深水區(qū)油氣高效運(yùn)聚機(jī)理與成藏差異性研究”(2022-2025,第二負(fù)責(zé)人)
[7] 中石油塔里木油田項(xiàng)目“塔里木盆地主要地質(zhì)時(shí)期溫壓系統(tǒng)恢復(fù)及地層水研究”(2020-2022,研究骨干)
[8] 中石化西部研究中心項(xiàng)目“塔里木盆地典型地區(qū)特深層溫壓場(chǎng)研究”(2018-2019,研究骨干)
[9] 中石化西北油田項(xiàng)目“順北地區(qū)奧陶系不同斷裂帶油氣成藏差異及主控因素研究”(2018-2019,研究骨干)
[10] 中石油華北油田項(xiàng)目“冀中坳陷重點(diǎn)潛山帶油氣成藏動(dòng)力與優(yōu)勢(shì)運(yùn)移方向”(2015-2016,研究骨干)
4、代表性論文
[1] Qiwen Yao, Diao Hui, Chang Jian*, et al. 2026. Cenozoic tectonic-thermal evolution of the Xihu Sag, East China Sea Basin: Implications for hydrocarbon generation in continental margin basins. Geothermics, 136, 103530.
[2] Li Chenxing, Chang Jian*,Qiu Nansheng. 2025. Detrital Zircon Records of Meso-Neoproterozoic Strata in the Yan-Liao Rift Zone, North China Craton, and Their Implications of Tectono-Sedimentary Evolution. Basin Research, 37(6), e70068. [SCI]
[3] Huang Yue, Chang Jian*, Qiu Nansheng, et al. 2025. Present-day temperature and pressure fields in key areas of Northeast China: Implications for unconventional resource evaluation. Geoscience Frontiers, 16(6),102148. [SCI, 地學(xué)TOP1區(qū)]
[4] Li Chenxing, Chang Jian*, Qiu Nansheng, et al. 2025. Present-day geothermal regime of the Junggar Basin, northwest China: Implication for hydrocarbon distribution and geothermal resources. Journal of Asian Earth Sciences, 284, 106540.
[5] Zhang Kaixun, He Zhiyuan, Liang Yong, Song Shida, De Grave Johan, Zhu Wenbin, Tong Haifei, Nurtaev Bakhiter, Zhong Linglin, Li Chunlin, Chang Jian*. 2025. Mesozoic?��������Cenozoic source provenance and thermal evolution of the southwestern Tien Shan, SE Uzbekistan. GSA Bulletin, https://doi.org/10.1130/B38250.1.
[6] Chang Jian*, Yang Lei, Li Chenxing, et al. 2024. Tectono-thermal evolution of the northern Tarim Basin, Central Asia: New insights from apatite low-temperature thermochronometers. Journal of Asian Earth Sciences, 259, 105919.
[7] Chang Jian*, Li Dan, Qiu Nansheng, et al. 2022. Differential Thermal Regimes of the Tarim and Sichuan Basins in China: Implications for Hydrocarbon Generation and Conservation. Acta Geologica Sinica-English edition, 96(4), 1308-1322.
[8] Chang Jian*, Yang Xin, Qiu Nansheng, et al. 2022. Zircon (U-Th)/He thermochronology and thermal evolution of the Tarim Basin, Western China. Journal of Asian Earth Sciences, 230, 105210.
[9] Li Dan, Chang Jian*, Qiu Nansheng, et al. 2022. The thermal history in sedimentary basins: A case study of the central Tarim Basin, Western China. Journal of Asian Earth Sciences, 229, 105149.
[10] Chang Jian*, Zhang Zhenlin, Qiu Nansheng, et al. 2022. Uplift and exhumation in the Tianshan, western China: New insights from detrital zircon morphology and thermochronology. Science China-Earth Sciences, 65(3):449-461. (中英文對(duì)照)
[11] Chang Jian*, Glorie Stijn, Qiu Nansheng, et al. 2021. Late Miocene (10~6Ma) rapid exhumation of the Chinese South Tianshan: implications for the timing of aridification in the Tarim Basin. Geophysical Research Letters, 48, e2020GL090623. [SCI, NI期刊]
[12] Chang Jian*, Qiu Nansheng, Liu Shuai, et al. 2019. Post-Triassic multiple exhumation of the Taihang Mountains revealed via low-T thermochronology: implications for the paleo-geomorphologic reconstruction of the North China Craton. Gondwana Research, 68: 34-49.[SCI, 地學(xué)TOP1區(qū)]
[13] Chang Jian*, Li Dan, Kyle Min, et al. 2019. Cenozoic deformation of the Kalpin fold-and-thrust belt, southern Chinese Tian Shan: insights from low-T thermochronology and sandbox modeling. Tectonophysics, 766, 416-432. [SCI]
[14] Chang Jian, Tian Yuntao, Qiu Nansheng. 2017. Mid-Late Miocene deformation of the northern Kuqa fold-and-thrust belt (southern Chinese Tian Shan): an apatite (U-Th-Sm)/He study. Tectonophysics, 694: 101-113. [SCI]
[15] Chang Jian, Qiu Nansheng, Zhao Xianzheng, et al. 2018. Mesozoic and Cenozoic tectono-thermal reconstruction of the western Bohai Bay Basin (East China) with implications for hydrocarbon generation and migration. Journal of Asian Earth Sciences, 160: 380-395. [SCI]
[16] Chang Jian, Qiu Nansheng, Li Jiawei. 2012. Tectono-thermal evolution of the northwestern edge of the Tarim Basin in China: constraints from apatite (U-Th)/He thermochoronology. Journal of Asian Earth Sciences, 61: 187-198. [SCI]
[17] Chang Jian, Qiu Nansheng, Xu Wei. 2017. Thermal regime of the Tarim Basin, Northwest China: a review. International geology review, 59(1):45-61. [SCI]
[18] Chang Jian, Qiu Nansheng, Song Xinying et al. 2016. Multiple cooling episodes in the Central Tarim (Northwest China) revealed by apatite fission track analysis and vitrinite reflectance data. International Journal of Earth Sciences, 105:1257-1272. [SCI]
[19] Chang Jian, Qiu Nansheng. 2012. Closure temperature of (U-Th)/He system in apatite obtained from natural drillhore samples in the Tarim Basin and its geological significance. Chinese Science Bulletin, 57(26): 3482-3490. [SCI]
[20] Chang Jian, Brown, R. W., Yuan Wanming, et al. 2014. Mesozoic cooling history of the "Bachu Uplift" in the Tarim Basin, China: Constraints from zircon fission-track thermochronology. Radiation Measurement, 67: 5-14. [SCI]
[21] 孫現(xiàn)瑤,常健*,邱楠生,姚啟文,戰(zhàn)瑞恒,李晨星,劉鑫.塔里木盆地北緣早二疊世熱異常事件——來(lái)自碳酸鹽團(tuán)簇同位素和原位U-Pb定年的約束[J].地球物理學(xué)報(bào),2025,68(11):4387-4412.
[22] 徐甲博,常健*,郭華軍,李晨星,單祥,彭博,邱楠生,張澤.準(zhǔn)噶爾盆地西部現(xiàn)今地溫場(chǎng)特征及成因機(jī)制[J].高校地質(zhì)學(xué)報(bào),2025,31(05):618-631.
[23] 付秀麗,常健*,唐博寧,朱傳慶,李瀟,黃越,蘇楊鑫,徐慶霞,蒙啟安.熱盆環(huán)境對(duì)頁(yè)巖油快速成熟演化的影響——以松遼盆地齊家古龍凹陷為例[J].地球物理學(xué)報(bào),2025,68(01):182-198.
[24] 黃越,常健*,邱楠生,林鐵鋒,付秀麗,唐博寧,李軍輝.松遼盆地齊家—古龍凹陷青山口組壓力場(chǎng)特征和超壓成因[J].石油學(xué)報(bào),2024,45(12):1800-1817.
[25] 張澤,常健*,單祥,李晨星,郭華軍,彭博,徐甲博,黃越.瑪湖凹陷及周緣二疊系超壓分布特征及成因研究[J].地質(zhì)科學(xué),2024,59(05):1229-1244.
[26] 李晨星,常健*,邱楠生,曹世紀(jì),張應(yīng)鱗,鄭立慶.原位LA-ICP-MS磷灰石裂變徑跡實(shí)驗(yàn)流程建立與應(yīng)用[J].地球?qū)W報(bào),2025,46(02):471-482.
[27] 張軍振,常健*,李晨星,馮乾乾,張海祖,李丹.新疆庫(kù)車(chē)坳陷東部中—新生代構(gòu)造-熱演化與油氣勘探遠(yuǎn)景分析[J].中國(guó)地質(zhì),2024,51(03):799-810.
[28] 李丹,常健*,邱楠生,吳鮮,王祥,韓俊,李慧莉.塔北—阿滿(mǎn)北部地區(qū)超深層現(xiàn)今地溫場(chǎng)特征[J].地球物理學(xué)報(bào),2023,66(08):3353-3373.
[29] 李丹,常健*,邱楠生,熊昱杰.塔里木盆地臺(tái)盆區(qū)超深層熱演化及對(duì)儲(chǔ)層的影響[J].地學(xué)前緣,2023,30(06):135-149.
[30] 張建勇,常健*,李文正,付小東,楊磊,和源.川北米倉(cāng)山隆起構(gòu)造-熱演化特征[J].沉積與特提斯地質(zhì),2024,44(01):58-70.
[31] 李晨星,常健*,邱楠生,李美俊,肖洪.華北克拉通北緣中—新元古界構(gòu)造-熱演化:來(lái)自鋯石(U-Th)/He年齡的約束[J].地質(zhì)力學(xué)學(xué)報(bào),2022,28(01):113-125.
[32] 常健*,邱楠生,李晨星,張建勇,李文正,付小東.鋯石He擴(kuò)散模型與中國(guó)典型克拉通盆地古老層系熱史重建[J].地球物理學(xué)報(bào),2022,65(02):711-725.
[33] 常健,邱楠生,趙賢正等. 2016. 渤海灣盆地冀中坳陷現(xiàn)今地?zé)崽卣?/span>. 地球物理學(xué)報(bào), 59(3): 1003-1016. [SCI]
[34] 常健,邱楠生,左銀輝等. 2011. 塔里木柯坪塔格地區(qū)構(gòu)造抬升的新證據(jù)-來(lái)自(U-Th)/He年齡的約束. 地球物理學(xué)報(bào), 54(1): 163-172. [SCI]
[35] 常健,邱楠生. 2017. 磷灰石低溫?zé)崮甏鷮W(xué)技術(shù)及在塔里木盆地演化研究中的應(yīng)用. 地學(xué)前緣, 24(3): 79-93. [EI]
[36] 常健,邱楠生,李佳蔚. 2012. 塔里木盆地與南天山的耦合關(guān)系:來(lái)自(U-Th)/He年齡的新證據(jù). 地學(xué)前緣, 19(5): 234-243. [EI]
5、發(fā)明專(zhuān)利授權(quán)情況
[1] 常健,邱楠生,李丹,李晨星. 一種獲取沉積盆地坳陷區(qū)古地表熱流的方法、裝置及系統(tǒng). (專(zhuān)利號(hào):ZL201911133466.8)
[2] 常健,邱楠生,劉念,周圓圓. 一種裂變徑跡薄片的制備方法(專(zhuān)利號(hào):ZL201510259524.7)
[3] 常健,邱楠生,左銀輝. 古熱巖石圈厚度的確定方法及裝置(專(zhuān)利號(hào):ZL201510711349.0)
[4] 常健, 吳世祥, 吳航,邱楠生, 劉帥, 肖瑤. 利用太赫茲時(shí)域光譜分析磷灰石裂變徑跡退火程度的方法(專(zhuān)利號(hào): ZL201710045132.X)
[5] 吳航, 吳世祥, 邱楠生, 常健, 劉帥, 肖瑤. 一種用于裂變徑跡化學(xué)蝕刻的設(shè)備及方法(專(zhuān)利號(hào): ZL201710045131.5)
[6] 邱楠生, 吳世祥, 吳航, 常健, 肖瑤, 劉帥. 快速獲得磷灰石裂變徑跡退火率和自發(fā)徑跡密度的方法(專(zhuān)利號(hào): ZL201710045133.4)
[7] 馮乾乾,邱楠生,劉鑫,常健,朱傳慶,徐秋晨. 一種獲取沉積盆地深層古老層系熱歷史的方法(專(zhuān)利號(hào):ZL202311191382.6)
6、獲獎(jiǎng)情況
[1] 2022年中國(guó)地質(zhì)學(xué)會(huì)第十八屆青年地質(zhì)科技銀錘獎(jiǎng)(個(gè)人獎(jiǎng));
[2] 2024年中國(guó)商業(yè)聯(lián)合會(huì)全國(guó)服務(wù)業(yè)科技創(chuàng)新一等獎(jiǎng),排名第1;
[3] 2025年中國(guó)發(fā)明協(xié)會(huì)發(fā)明創(chuàng)業(yè)創(chuàng)新二等獎(jiǎng),排名第1;
[4] 2023年北京市科學(xué)技術(shù)獎(jiǎng)自然科學(xué)二等獎(jiǎng),排名第4;
[5] 2024年中國(guó)發(fā)明協(xié)會(huì)發(fā)明創(chuàng)業(yè)成果一等獎(jiǎng),排名第3;
[6] 2020年中國(guó)石油和化學(xué)工業(yè)聯(lián)合會(huì)科技進(jìn)步二等獎(jiǎng),排名第4.