开放资源库 · 软件项目

PINN-ECS-HAB: Physics-Informed Neural Network with Strong PDE Residuals and a Learnable Cyst-Germination Source for Forecasting Harmful Algal Blooms in the East China Sea (code )

v1.3.0 (2026-08-13): resubmission to Environmental Modelling & Software. Adds scripts/interpretability_analysis.py, a post-hoc interpretability diagnostic that (i) quantifies the consistency of the prescribed cyst beds with the benthic-survey envelope and the SST shelf front (2.48x front gradient over ocean background; beds within 78 km of the front), and (ii) evaluates the transport-consistency residual of the released PINN-step3 vs PINN-nophys mean fields with a single finite-difference operator (PINN-step3 residual RMS 0.83 vs 1.29 mg m-3 d-1, 1.56x smaller, with the gap largest where MODIS coverage is thinnest), outputs processed/pinn_step3/interpretability_{metrics.json,pde_residual.png,cyst_vs_benthic.png}. README, CITATION.cff and ZENODO_GUIDE updated to the EMS resubmission. All headline numbers and data are unchanged from v1.2.1; this release only adds the interpretability artifacts required by the new manuscript figures.

← 返回资源筛选结果
RESOURCE OVERVIEW

资源说明

v1.3.0 (2026-08-13): resubmission to Environmental Modelling & Software. Adds scripts/interpretability_analysis.py, a post-hoc interpretability diagnostic that (i) quantifies the consistency of the prescribed cyst beds with the benthic-survey envelope and the SST shelf front (2.48x front gradient over ocean background; beds within 78 km of the front), and (ii) evaluates the transport-consistency residual of the released PINN-step3 vs PINN-nophys mean fields with a single finite-difference operator (PINN-step3 residual RMS 0.83 vs 1.29 mg m-3 d-1, 1.56x smaller, with the gap largest where MODIS coverage is thinnest), outputs processed/pinn_step3/interpretability_{metrics.json,pde_residual.png,cyst_vs_benthic.png}. README, CITATION.cff and ZENODO_GUIDE updated to the EMS resubmission. All headline numbers and data are unchanged from v1.2.1; this release only adds the interpretability artifacts required by the new manuscript figures.

聚变仿真科学计算软件生态
RESEARCH USE PROFILE

研究使用指引

适用任务物理求解、集成建模、工程仿真、数据处理与研究工作流构建
使用准备核对软件版本、依赖环境、输入格式、求解设置与示例算例
核验重点正式研究应完成代码验证、基准对比、结果复现和必要的实验验证
RESOURCE FEEDBACK

资源信息需要更新?

可报告链接失效、文件异常、信息错误或版本变化,我们会核对并更新资源记录。