obsidian_backup/工作OKRs/25.2-5 OKR.canvas

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{"id":"b698e88ca5fb9c51","type":"text","text":"状态指标:\n推进OKR的时候也要关注这些事情它们是完成OKR的保障。\n\n\n效率状态 green","x":-96,"y":80,"width":456,"height":347},
{"id":"2b068bfe5df15a72","type":"text","text":"# 目标:多体动力学模块完善\n### 每周盘点一下它们\n\n\n关键结果建模原理、建模方法掌握 7.5/10\n\n关键结果对标Bladed模块完成 7.2/10\n\n关键结果风机多体动力学文献调研情况完成 5/10","x":-96,"y":-307,"width":456,"height":347},
{"id":"01ee5c157d0deeae","type":"text","text":"# 推进计划\n未来四周计划推进的重要事情\n\n文献调研启动\n\n建模重新推导\n\n\n","x":-620,"y":80,"width":456,"height":347},
{"id":"1ebeabaf5c73ddbb","type":"text","text":"# 本月已完成\n\n多体原理学习 YouTube课程 018\n气动模块联合调试跑通\n使用python搭建风电机组多体模型 刚性部件主动力、惯性力计算 ","x":-440,"y":520,"width":440,"height":340},
{"id":"58be7961ae7275a7","type":"text","text":"# 计划\n这周要做的3~5件重要的事情这些事情能有效推进实现OKR。\n\nP1 必须做。P2 应该做\n\nP1 稳态工况多体动力学求解方法 --龙格库塔+ed_caloutput 初步方案完成\nP1 柔性部件 叶片、塔架主动力惯性力算法\n- 变形体动力学 简略看看ing\n- 浮动坐标系方法 如何用与梁模型\n\nP1 编写Steady Operational Loads求解器\n- 框架 完成\n- 多体设置参数 完成\n- 每个风速直接是否需要重新初始化 需要 根据参数重建坐标系和网格 \n\nP1 Steady Operational Loads求解器测试\nP1 yaw 自由度再bug确认 已知原理了\nP1 generator torque计算\n","x":-614,"y":-307,"width":450,"height":347}
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