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Damage to a monumental organ due to wood deformation caused by church heating

机译:由于教堂加热引起的木材变形,对纪念器官的损坏

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In a PhD study on the heating of monumental churches one of the problems, which was encountered, was the damage to wooden interior parts due to the changing of the indoor climate. Particularly warm air heating frequently leads to sudden changes in relative humidity, which turned out to be dramatically hard for monumental organs during wintertime. The warm air inlet conditions and their result on the airflow and air conditions were examined experimentally and by CFD-simulation. These results provided boundary temperature and humidity conditions, to which the monumental organ was exposed. In an experimental study the response of wooden parts to changing indoor conditions was tested. In a Nuclear Magnetic Resonance (NMR) test setup the moisture content of samples was measured as a function of time and place. These moisture content changes were related to the free mechanical deformation of samples. Together with the measurement of typical material properties of wood, a two-dimensional model was developed in FlexPDE: a finite element program to solve partial differential equations simultaneously.
机译:在博士学位研究纪念教堂的加热中,遇到的问题之一,由于室内气候变化而导致木质内部部件损坏。特别温暖的空气热量经常导致相对湿度的突然变化,这结果在冬季期间造成巨大的器官巨大地难以困难。通过CFD仿真检查温暖的空气入口条件及其对气流和空气条件的结果。这些结果提供了巨大器官暴露的边界温度和湿度条件。在一个实验研究中,测试了木质零件到改变室内条件的响应。在核磁共振(NMR)测试设置中,样品的水分含量为时间和地点。这些水分含量变化与样品的自由机械变形有关。与木材的典型材料特性的测量一起,在FlexPDE中开发了二维模型:一种有限元件,可以同时求解部分微分方程。

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