Invention Grant
- Patent Title: Monte Carlo molecular simulation method for efficient calculation of the interfacial tension of water/benzene liquid phase by improving Ewald sum
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Application No.: US17055605Application Date: 2019-10-17
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Publication No.: US11853663B2Publication Date: 2023-12-26
- Inventor: Bai Xue , Jian Ma , Lipeng Lai , Shuhao Wen , Peiyu Zhang
- Applicant: SHENZHEN JINGTAI TECHNOLOGY CO., LTD.
- Applicant Address: CN Guangdong
- Assignee: SHENZHEN JINGTAI TECHNOLOGY CO., LTD.
- Current Assignee: SHENZHEN JINGTAI TECHNOLOGY CO., LTD.
- Current Assignee Address: CN Guangdong
- Agency: MUNCY, GEISSLER, OLDS & LOWE, P.C.
- International Application: PCT/CN2019/111632 2019.10.17
- International Announcement: WO2020/228238A 2020.11.19
- Date entered country: 2020-11-16
- Main IPC: G06F30/28
- IPC: G06F30/28 ; G06N7/01

Abstract:
The disclosure provides an efficient Monte Carlo molecular simulation method for calculating the liquid phase interfacial tension between benzene and water by improving Ewald sum, including the following steps: Step A: Initialize the simulation: two simulation boxes were prepared, both with the size (30×30×45 Å)-(35×35×55 Å), and 1200-2000 water molecules and 230-380 benzene molecules were respectively put on the grid point of the two boxes; Step B: Select the force field used for simulation; Step C: Perform Monte Carlo simulations on the two boxes separately under the canonical ensemble; Step D: Join the water box and the benzene box along the z direction to form a large box of (30×30×90 Å)-(35×35×110 Å), and run 50000-80000 Monte Carlo cycles to make the system reach equilibrium; Step E: After the system reaches equilibrium, the data was collected during the production period.
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