- 姓名: 蔣映德
- 性別: 男
- 職務(wù):
- 職稱(chēng): 研究員
- 學(xué)歷: 博士研究生
- 電子郵件: jiangyd@gig.ac.cn
1982年生,理學(xué)博士,研究員,博士生導(dǎo)師。2004年畢業(yè)于中南大學(xué)地學(xué)與環(huán)境工程學(xué)院獲學(xué)士學(xué)位,2004-2007在中國(guó)科學(xué)院廣州地球化學(xué)研究所學(xué)習(xí),并于2007年獲得碩士學(xué)位;2007-2011年于香港大學(xué)地球科學(xué)系學(xué)習(xí)并獲得博士學(xué)位;2011-2013,香港大學(xué)地球科學(xué)系研究助理/博士后;2013-2015,捷克查理大學(xué)博士后。獲國(guó)家自然科學(xué)基金優(yōu)秀青年基金資助,入選中科院高層次人才引進(jìn)計(jì)劃(2015)、廣東省“特支計(jì)劃”科技創(chuàng)新青年拔尖人才(2017)及中國(guó)地質(zhì)學(xué)會(huì)金錘獎(jiǎng)(2022)。?
簡(jiǎn) 歷:
社會(huì)任職:
- 主要從事造山帶深部構(gòu)造動(dòng)力學(xué)研究,當(dāng)前研究主要關(guān)注中亞及喜馬拉雅造山帶的構(gòu)造演化,研究工作本著將變質(zhì)演化與構(gòu)造變形緊密結(jié)合為特色,從宏觀(guān)構(gòu)造和顯微組構(gòu)著手,開(kāi)展構(gòu)造變形、變質(zhì)演化和巖漿過(guò)程綜合研究,以此建立深部地殼變形歷史和熱演化過(guò)程的溫度-壓力-變形-時(shí)代(P-T-D-t)軌跡。以變質(zhì)巖石學(xué)為主,同時(shí)輔以構(gòu)造地質(zhì)學(xué)、地質(zhì)年代學(xué)、地球化學(xué)及地球物理等分析方法及技術(shù)手段,是本人近年來(lái)致力于發(fā)展的方向。通過(guò)多學(xué)科相結(jié)合的研究思路,擬將這種創(chuàng)新型的現(xiàn)代變質(zhì)地質(zhì)學(xué)研究方法應(yīng)用于有關(guān)造山帶的構(gòu)造演化研究中。?
研究生及博士后招募:?歡迎熱愛(ài)野外地質(zhì)工作及熱衷于造山帶構(gòu)造變形觀(guān)測(cè),多期次構(gòu)造變形樣式恢復(fù),變質(zhì)組構(gòu)顯微構(gòu)造解析、變質(zhì)相平衡模擬及同位素精細(xì)定年等方面的畢業(yè)生加盟。
研究方向:
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獲獎(jiǎng)及榮譽(yù):
1. Jiang, Y.D., Shu, T., Soejono, I., Nádaskay, R., Schulmann, K., Ning, J., Zhang, J., Kong, L., 2024. Late Paleozoic sedimentation recording back-arc basin evolution in response to Chinese Altai–East Junggar convergence in Central Asia. GSA Bulletin 136, 3939-3964, https://doi.org/10.1130/B37247.1.
2. Soldner, J., Jiang, Y.D*, ?típská, P., Schulmann, K., Yuan, C., Huang, Z., Zhang, Y., 2024. Devonian Andean-type convergence in the southern Dunhuang block (NW China): Petro-structural, metamorphic P–T and geochronological constraints. Journal of Metamorphic Geology 42, 665-702,?https://doi.org/10.1111/jmg.12768.
3. Shi, S., Jiang, Y.D*, Weinberg, R.F., Zhang, Z., Wang, Q., 2024. Eocene crustal thickening in the Tethyan Himalaya: Insights from Barrovian metamorphism and granite geochemistry from the Ramba area. GSA Bulletin 136, 3649-3672,?https://doi.org/10.1130/B37284.1.
4. Li, Z., Jiang, Y.D*, Collett, S., ?típská, P., Schulmann, K., Wang, S., Sukhorukov, V., Bai, X.J., Zhang, W.F., 2023. Peri-Siberian Ordovician to Devonian tectonic switching in the Olkhon Terrane (southern Siberia): structural and geochronological constraints. Tectonics, in press, https://doi.org/10.1029/2023TC007826.
5. Ning, J., Jiang, Y.D*., Schulmann, K., Wang, S., Li, P.-F., Shi, S., Qiu, H.-N., 2023. Silurian-Devonian Lithospheric Thinning and Thermally Softening Along the Northern Margin of the Tarim Craton: Geological Mapping, Petro-Structural Analysis and Geochronological Constraints. Tectonics, 42, e2023TC007792, https://doi.org/10.1029/2023TC007792.
6. Xiao, M., Jiang, Y.D*, Zhao, G., Yuan, C., Cai, Y., Qiu, H., Hao, L., Zhang, W., Kong, L., 2023. Syn-tectonic fluids decoding effects of tectono-metamorphic cycles on regional metallogenic evolution of the Chinese Altai, central Asia. GSA Bulletin. https://doi.org/10.1130/B36903.1.
7. Li, Z., Jiang, Y.D*, Collett, S., ?típská, P., Schulmann, K., Wang, S., Sukhorukov, V., 2023. Metamorphic and chronological constraints on the early Paleozoic tectono-thermal evolution of the Olkhon Terrane, southern Siberia. Journal of Metamorphic Geology, 41, 525-556, https://doi.org/10.1111/jmg.12706.
8. Shu, T., Jiang, Y.D.*, Schulmann, K., Yu, Y., Yuan, C., Wang, S., Li, Z.Y., Kong, L.Z., 2022. Structure, geochronology, and petrogenesis of Permian peraluminous granite dykes in the southern Chinese Altai as indicators of Altai?East Junggar convergence. GSA Bulletin, 135, 1243-1264, https://doi.org/10.1130/B36408.1.
9. Kong, L.Z., Jiang, Y.D*., Schulmann, K., Zhang, J., Weinberg, R.F., Sun, M., Wang, S., Shu, T., ?Ning, J., 2022. Petrostructural and Geochronological Constraints on Devonian Extension-Shortening Cycle in the Chinese Altai: Implications for Retreating-Advancing Subduction. Tectonics,?41(9): e2021TC007195, https://doi.org/10.1029/2021TC007195.
10.?Jiang, Y.D., Stípská, P., Schulmann, K., Aguilar, C., Wang, S., Anczkiewicz, R., Zhang, J., Li, P., Chopin, F., 2022. Barrovian and Buchan metamorphic series in the Chinese Altai: P–T–t–D evolution and tectonic implications.?Journal?of Metamorphic Geology 40, 823-857, https://doi.org/10.1111/jmg.12647.
11.?Xiao, M., Jiang, Y.D.*, Zhao, G.C., Qiu, H.N., Cai, Y., Bai, X.J., Yuan, C., Zhang, W.F., Kong, L.Z., Wang, S., 2022. Fluid inclusion 40Ar/39Ar geochronology of andalusite from syn-tectonic quartz veins: new perspectives on dating deformation and metamorphism in low-pressure metamorphic belts.?Geochimica?et Cosmochimica Acta 323, 141-163, https://doi.org/10.1016/j.gca.2022.01.025.
12. Wang, S., Jiang, Y.D.*, Weinberg, R., Schulmann, K., Zhang, J., Li, P., Xiao, M., Xia, X.-P., 2021. Flow of Devonian anatectic crust in the accretionary Altai Orogenic Belt, central Asia: Insights into horizontal and vertical magma transfer.?GSA Bulletin?133 (11-12): 2501–2523, https://doi.org/10.1130/B35645.1.
13. Xiao, M., Qiu, H.N.*, Jiang, Y.D.*, Cai, Y., Bai, X.J., Zhang, W.F., Liu, M., Qin, C.J., 2019. Gas release systematics of mineral-hosted fluid inclusions during stepwise crushing, implications for 40Ar/39Ar geochronology of hydrothermal fluids.?Geochimica et Cosmochimica Acta?251, 36-55, https://doi.org/10.1016/j.gca.2019.02.016.
14. Jiang, Y.D., Schulmann, K., Sun, M., Weinberg, R.F.,?Stípská, P., Li, P.F., Zhang, J., Chopin, F., Wang, S., Xia, X.P., Xiao, W.J., 2019. Structural and geochronological constraints on Devonian supra-subduction tectonic switching and Permian collisional dynamics in the Chinese Altai, central Asia.?Tectonics?38, 253-280, https://doi.org/10.1029/2018TC005231.
15. Jiang, Y. D., Schulmann, K., Kroner, A., Sun, M., Lexa, O., Janou?ek, V., Buriánek, D., Yuan, C., and Han?l, P., 2017. Neoproterozoic–early Paleozoic peri-Pacific accretionary evolution of the Mongolian collage system: Insights from geochemical and U–Pb zircon data from the Ordovician sedimentary wedge in the Mongolian Altai.?Tectonics?36, 2305-2331, https://doi.org/10.1002/2017TC004533.
16. Jiang, Y. D., Schulmann, K., Sun, M.,?Stípská, P., Guy, A., Janou?ek, V., Lexa, O., and Yuan, C., 2016, Anatexis of accretionary wedge, Pacific-type magmatism, and formation of vertically stratified continental crust in the Altai Orogenic Belt.?Tectonics, v. 35, no. 12, p. 3095-3118, https://doi.org/10.1002/2016TC004271.
17. Jiang, Y.D., Stípská, P., Sun, M., Schulmann, K., Zhang, J., Wu, Q.H., Long, X.P., Yuan, C., Racek, M., Zhao, G.C., Xiao, W.J., 2015. Juxtaposition of Barrovian and migmatite domains in the Chinese Altai: a result of crustal thickening followed by doming of partially molten lower crust.?Journal of Metamorphic Geology?33, 45-70, https://doi.org/10.1111/jmg.12110.
18. Jiang, Y.D., Qiu, H.N., Xu, Y.G., 2012. Hydrothermal fluids, argon isotopes and mineralization ages of the Fankou Pb–Zn deposit in south China: Insights from sphalerite 40Ar/39Ar progressive crushing.?Geochimica et Cosmochimica Acta?84, 369-379, https://doi.org/10.1016/j.gca.2012.01.044.
19. Qiu, H.N., Jiang, Y.D., 2007. Sphalerite 40Ar/39Ar progressive crushing and stepwise heating techniques.?Earth and Planetary Science Letters?256, 224-232, https://doi.org/10.1016/j.epsl.2007.01.028.
近期合作論文發(fā)表于GCA, Tectonics, Journal of Structural Geology及Tectonophysics等期刊上,詳見(jiàn):ResearcherID網(wǎng)站列表(G-5978-2014).
代表論著:
[1]?深地專(zhuān)項(xiàng)課題任務(wù):喜馬拉雅構(gòu)造演化過(guò)程對(duì)成巖成礦的控制作用(2025-2029)
研究要點(diǎn):通過(guò)對(duì)典型穹窿構(gòu)造、裂谷體系及藏南拆離系等關(guān)鍵構(gòu)造單元開(kāi)展多尺度構(gòu)造解析,系統(tǒng)揭示區(qū)域構(gòu)造演化與成巖成礦作用的時(shí)空耦合關(guān)系。深入解析區(qū)域構(gòu)造變形樣式及組合、構(gòu)造疊加復(fù)合與多期次巖漿侵位、不同類(lèi)型礦床形成與就位之間的時(shí)空配置關(guān)系,最終建立喜馬拉雅碰撞造山過(guò)程中錫–銻多金屬礦床的構(gòu)造控礦模型。
[2]?中科院先導(dǎo)(B)科技專(zhuān)項(xiàng)課題:板塊俯沖、地幔柱與關(guān)鍵元素超常富集(2024-2029)
研究要點(diǎn):將板塊俯沖、地幔柱與關(guān)鍵元素超常富集內(nèi)在成因相關(guān)聯(lián),主要針對(duì)關(guān)鍵成礦元素在這些深地過(guò)程的驅(qū)動(dòng)下發(fā)生活化、遷移和聚集,了解成礦元素在不同的動(dòng)力學(xué)條件下的賦存狀態(tài)、物理化學(xué)行為和富集規(guī)律,重點(diǎn)揭示板片俯沖、地幔柱過(guò)程中鈮、鉭、鋰、鈹?shù)汝P(guān)鍵成礦元素的遷移和富集機(jī)制,為礦產(chǎn)勘探和深部找礦提供科學(xué)支撐。
[3]?國(guó)家自然科學(xué)基金優(yōu)秀青年科學(xué)基金:變質(zhì)變形與造山帶動(dòng)力學(xué)演化(2021-2023)
研究要點(diǎn):以宏觀(guān)至微觀(guān)尺度下變質(zhì)演化與構(gòu)造變形的耦合關(guān)系為突破口,開(kāi)展精細(xì)的構(gòu)造-熱演化剖析及高精度同位素測(cè)年等工作,以期實(shí)現(xiàn)對(duì)中亞造山帶內(nèi)部關(guān)鍵區(qū)域地殼演化的壓力-溫度-變形-時(shí)代的全面解譯,從而系統(tǒng)構(gòu)建其從俯沖增生、變質(zhì)-變形改造到地殼成熟化的系統(tǒng)連續(xù)演化過(guò)程,并為增生型造山帶大陸動(dòng)力學(xué)研究提供重要參考范例。
[4]?中科院國(guó)際伙伴計(jì)劃一帶一路科技專(zhuān)項(xiàng):中哈俄蒙增生體系地殼演化與成礦耦合(2020-2023)
研究要點(diǎn):在“一帶一路”專(zhuān)項(xiàng)框架下,聯(lián)合國(guó)內(nèi)外多家研究機(jī)構(gòu)開(kāi)展中哈俄蒙關(guān)鍵剖面跨境跨學(xué)科對(duì)比研究。旨在明確中哈俄蒙增生系統(tǒng)地殼屬性及其演化過(guò)程,查明地殼演化與成礦的內(nèi)在聯(lián)系,并為增生型造山帶大陸地殼演化與成礦研究帶來(lái)新的視角和突破。
[5]?國(guó)家自然科學(xué)基金面上項(xiàng)目:中國(guó)阿爾泰造山帶多期次變質(zhì)-變形組構(gòu)形成和演化研究(2017-2020)
研究要點(diǎn):立足于構(gòu)造變形分析和變質(zhì)巖石學(xué)研究,結(jié)合相平衡計(jì)算及同位素測(cè)年,對(duì)中國(guó)阿爾泰變質(zhì)演化和構(gòu)造變形開(kāi)展系統(tǒng)研究。建立區(qū)域構(gòu)造變形框架,明確變質(zhì)礦物組合和變形期次的關(guān)系,限定不同變質(zhì)-變形期次的時(shí)代并獲得其P-T-t-D演化軌跡,探究區(qū)內(nèi)變質(zhì)作用的成因機(jī)制及揭示多期次構(gòu)造-熱事件的歷史,為重建整體阿爾泰造山帶演化及理解中亞造山帶內(nèi)部造山過(guò)程提供重要制約。
[6]?中科院前沿科學(xué)重點(diǎn)研究項(xiàng)目:青藏高原中北部新生代陸內(nèi)巖石圈演化(2016-2020,共同主持)
研究要點(diǎn):聚焦大陸內(nèi)部巖石圈演化與高原隆升,構(gòu)建青藏高原中北部新生代巖漿巖的時(shí)空格架,闡明巖石成因和巖體冷卻與剝露歷史,刻畫(huà)地殼部分熔融的精細(xì)過(guò)程及其與低速高導(dǎo)層形成的內(nèi)在聯(lián)系,闡明巖石圈演化與高原隆升的深部動(dòng)力學(xué)機(jī)制。
[7]?中科院對(duì)外合作重點(diǎn)項(xiàng)目:增生型造山帶大陸地殼形成與演化(2016-2018)
研究要點(diǎn):采用構(gòu)造地質(zhì)學(xué)、巖石學(xué)、地球化學(xué)、地球物理等多學(xué)科融合的研究方法對(duì)中亞腹地增生雜巖深熔、花崗巖成因及大陸地殼成熟化內(nèi)在成因關(guān)聯(lián)開(kāi)展研究,從新的視角審視增生型大陸地殼的形成與穩(wěn)定。

研究隊(duì)伍