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使用离散元法针对连续直接压片过程开发高保真数字孪生模型。第2部分。校准工作流程的验证。

Development of a high-fidelity digital twin using the discrete element method for a continuous direct compression process. Part 2. Validation of calibration workflow.

作者信息

Jajcevic Dalibor, Remmelgas Johan, Toson Peter, Matić Marko, Hörmann-Kincses Theresa, Beretta Michela, Rehrl Jakob, Poms Johannes, Boehling Peter, O'Connor Thomas, Koolivand Abdollah, Tian Geng, Krull Scott M, Khinast Johannes G

机构信息

Research Center Pharmaceutical Engineering GmbH, Graz, Austria.

Research Center Pharmaceutical Engineering GmbH, Graz, Austria.

出版信息

Int J Pharm. 2024 Dec 5;666:124797. doi: 10.1016/j.ijpharm.2024.124797. Epub 2024 Oct 3.

Abstract

This paper is the second in a series of two that describes the application of discrete element method (DEM) and reduced order modeling to predict the effect of disturbances in the concentration of drug substance at the inlet of a continuous powder mixer on the concentration of the drug substance at the outlet of the mixer. In the companion publication, small-scale material characterization tests, a careful DEM parameter calibration and DEM simulations of the manufacturing process were used to develop a reliable RTD models. In the current work, the same calibration workflow was employed to evaluate the predictive ability of the resulting reduced-order model for an extended design space. DEM simulations were extrapolated using a relay race method and the cumulative RTD was accurately parameterized using the n-CSTR model. By performing experiments and simulations, a calibrated DEM model predicted the response of a continuous powder mixer to step changes in the inlet concentration of an API. Thus, carefully calibrated DEM models was used to guide and reduce experimental work and to establish an adequate control strategy. In addition, a further reduction in the computational effort was obtained by using the relay race method to extrapolate results. The predicted RTD curves were then parameterized to develop reduced order models and used to simulate the process in a matter of seconds. Overall, a control strategy evaluation tool based on high-fidelity DEM simulations was developed using material-sparing small-scale characterization tests.

摘要

本文是系列两篇论文中的第二篇,描述了应用离散元法(DEM)和降阶建模来预测连续粉末混合器入口处药物浓度的扰动对混合器出口处药物浓度的影响。在配套出版物中,通过小规模材料表征试验、仔细的DEM参数校准以及制造过程的DEM模拟,开发了可靠的RTD模型。在当前工作中,采用相同的校准工作流程来评估所得降阶模型在扩展设计空间内的预测能力。使用接力赛方法外推DEM模拟结果,并使用n - CSTR模型对累积RTD进行精确参数化。通过进行实验和模拟,校准后的DEM模型预测了连续粉末混合器对活性药物成分(API)入口浓度阶跃变化的响应。因此,经过仔细校准的DEM模型用于指导和减少实验工作,并建立适当的控制策略。此外,通过使用接力赛方法外推结果,进一步减少了计算量。然后对预测的RTD曲线进行参数化以开发降阶模型,并用于在几秒钟内模拟该过程。总体而言,利用节省材料的小规模表征试验,开发了一种基于高保真DEM模拟的控制策略评估工具。

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