科研成果

2025
Su L, Tang Y. The evolution of archival policies and regulations in China: a topic modelling approach. Archives and Records. 2025:1-19.
Xie J. The existence of Zariski dense orbits for endomorphisms of projective surfaces. With an appendix in collaboration with Thomas Tucker. J. Amer. Math. Soc. [Internet]. 2025;38(1):1-62. pdf
Ma JZ, Hou Y, Zhang X, Wang Y, He X, Wang J-P. Experimental study of average and high-frequency wall heat flux characteristics in a compact rotating detonation engine. Aerospace Science and Technology [Internet]. 2025;164:110458. 访问链接
Lufungulo, E. S. JMJ & K. Exploring factors of open educational resources (OER) in Zambian community schools: A qualitative study. Social Sciences & Humanities Open [Internet]. 2025;11(101465). 访问链接
Zhang X, Shen Q, Zhang Z, Gao Y, Zou J, Yang Y, Wu Z. Fantastic Interrupts and Where to Find Them: Exploiting Non-movable Interrupts on x86. IEEE Transactions on Information Forensics & Security (TIFS). 2025.
Lian Y, others. The FAST Globular Cluster Pulsar Survey (GC FANS). Astrophys. J. Suppl. 2025;279:51.
Yan G, Xie L, Gao X, Zhang W, Shen Q, Fang Y, Wu Z. FedVCK: Non-IID Robust and Communication-Efficient Federated Learning via Valuable Condensed Knowledge for Medical Image Analysis, in AAAI-25, Sponsored by the Association for the Advancement of Artificial Intelligence, February 25 - March 4, 2025, Philadelphia, PA, USA. AAAI Press; 2025:21904–21912. 访问链接
Yu X, Zhong N, Cheng Y, Xin T, Luo Q, Gong T, Chen J, Wu J, Cheng R, Fu Z, et al. Ferroelectric materials, devices, and chips technologies for advanced computing and memory applications: development and challenges. Science China Information Sciences [Internet]. 2025;68:160401. 访问链接
Hou Y, Bert C, Gomaa A, Lahmer G, Höfler D, Weissmann T, Voigt R, Schubert P, Schmitter C, Depardon A, et al. Fine-tuning a local LLaMA-3 large language model for automated privacy-preserving physician letter generation in radiation oncology. Frontiers in Artificial Intelligence. 2025;7:1493716.
Huang Z, Yang K, He Y, Dong Z, Sun Z, TANG X, Li M, WANG R, Cheng Z. First Demonstration of Three-Dimensional Thermal Conductivity Distribution Measurements of Interconnect Stacks Down to 3 nm Process Nodes, in IEEE IEDM.; 2025.
Fuli Bai JH. Fluorinated greenhouse gas mitigation potential and routes in China and globally. Journal of Environmental Management. 2025;377.
Chen T, Ying X. FPSMix: data augmentation strategy for point cloud classification. Frontiers Comput. Sci. [Internet]. 2025;19:192701. 访问链接
Zeng F, Wu H, Zhang K, Liu Y. Fracture aperture evolution in subsurface fractured reservoirs: Insights from thermo-hydro-mechanical simulations and implications for field-scale applications. International Journal of Rock Mechanics and Mining Sciences [Internet]. 2025;195:106254. 访问链接
Zhang K, Wu H. Fracture network characterization and thermal performance prediction in enhanced geothermal reservoirs using covariance matrix adaptation and embedded discrete fracture model. Water Resources Research [Internet]. 2025;61:e2024WR039452. 访问链接
Yue W, Liu Y, Ying X, Xing B, Guo R, Shi J. FreEformer: Frequency Enhanced Transformer for Multivariate Time Series Forecasting, in Proceedings of the Thirty-Fourth International Joint Conference on Artificial Intelligence, IJCAI 2025, Montreal, Canada, August 16-22, 2025. ijcai.org; 2025:3606–3614. 访问链接
Tang X, He P, Zhang Y, Xu Y, Jiang X*. From bench to bucks: measuring the medical technology transfer. The Journal of Technology Transfer [Internet]. 2025:1-24. 访问链接
Nuo M, Zhong M, Fan Z, Lao Y, Liu L, Wang M, Wei J. Full-Range Investigation of Drain-Dependent Bidirectional Dynamic Threshold Voltage Shift in Schottky-Type p-GaN Gate HEMT. IEEE Transactions on Electron Devices. 2025;72:1021-1026.
Ayzenberg D, others. Fundamental physics opportunities with future ground-based mm/sub-mm VLBI arrays. Living Rev. Rel. 2025;28:4.
Teng Z, Wu H, Zhang J, Ju X, Qi S. Generating high-fidelity discrete fracture networks from low-dimensional latent spaces using generative adversarial network. International Journal of Rock Mechanics and Mining Sciences [Internet]. 2025;196:106301. 访问链接
Xiong W, Deng H, Stuckman M, Jew A, Moore J, Crandall D, Lopano C, Hakala AJ. Geochemical Impact of Acid Spearhead and Slickwater Stimulation on Wolfcamp Shale from the Hydraulic Fracturing Test Site. SPE Journal [Internet]. 2025. 访问链接Abstract
The Hydraulic Fracturing Test Site 1 (HFTS-1) was a field study performed in the Wolfcamp Formation in the West Texas Permian (Midland) Basin, USA, with a focus on improving the efficiency of hydraulic fracturing. Investigating site-specific rock-fluid geochemical interactions during hydraulic fracturing is an important step to understanding the impact on formation shale porosity, permeability, and long-term shale gas production. During field operations in this region, hydraulic fracturing fluid (HFF) injection usually starts with a concentrated acid spearhead for rapid rock dissolution, followed by the injection of near-neutral pH slickwater containing chemicals and proppants. A multistep sequential injection approach was used to investigate different stages of rock-fluid interactions. The carbonate content in the host rock is important when acid spearhead is considered, as carbonate mineral dissolution is rapid and can result in porosity and permeability changes in the shale matrix. In this study, we designed flow-through experiments using fractured carbonate-rich and clay-rich Wolfcamp shale cores with (1) a short-time acid soaking step and (2) a long-term slickwater flow-through step to simulate the injection method used at HFTS-1. The fluid chemistry was analyzed. A thorough mineralogical progression [e.g., Calcium (Ca) dissolution and iron (Fe) redox progression] in the cores during HFF injection was also characterized and imaged by synchrotron microprobe. Reactive transport modeling was performed based on the experimental setup. The results showed that the acid spearhead is a crucial step in creating a reaction front by mineral dissolution, especially in carbonate-rich shales. A slight layer of ferrihydrite precipitated during the slickwater flow-through period. This study provides insights into potential geochemical impact due to hydraulic fracturing operations in the Permian Basin.

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