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Theoretical modeling of the effects of temperature and moisture content on the acoustic velocity of Pinus resinosa wood

机译:温度和水分含量对松材松木材声速影响的理论模型

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摘要

To investigate the effects of temperature and moisture content (MC) on acoustic wave velocity (AWV) in wood,the relationships between wood temperature,MC, and AWV were theoretically analyzed. According to the theoretical propagation characteristics of the acoustic waves in the wood mixture and the differences in velocity among various media (including ice, water, pure wood or oven-dried wood),theoretical relationships of temperature, MC, and AWV were established, assuming that the sam-ples in question were composed of a simple mixture of wood and water or of wood and ice.Using the theoretical model,the phase transition of AWV in green wood near the freezing point (as derived from previous experimental results) was plausibly described. By comparative analysis between theoretical and experimental models for American red pine (Pinus resinosa) samples, it was established that the theoretically predicted AWV values matched the experiment results when the temperature of the wood was below the freezing point of water, with an average prediction error of 1.66%. The theoretically predicted AWV increased quickly in green wood as temperature decreased and changed suddenly near 0℃,consistent with the experimental observations.The prediction error of the model was relatively large when the temperature of the wood was above the freezing point, probably due to an overestimation of the effect of the liquid water content on the acoustic velocity and the limited variables of the model. The high correlation between the predicted and measured acoustic velocity values in frozen wood samples revealed the mechanisms of temperature,MC,and water status and how these affected the wood (particularly its acoustic velocity below freezing point of water). This result also verified the reliability of a previous experimental model used to adjust for the effect of temperature during field testing of trees.
机译:为了研究温度和水分含量(MC)对木材中声波速度(AWV)的影响,从理论上分析了木材温度,MC和AWV之间的关系。根据木材混合物中声波的理论传播特性以及各种介质(包括冰,水,纯木材或烘干的木材)之间的速度差异,建立了温度,MC和AWV的理论关系认为所讨论的样品是由木材和水或木材和冰的简单混合物组成的。使用理论模型,可以合理地推测AWV在接近凝固点的绿色木材中的相变(由先前的实验结果得出)描述。通过对美国赤松(Pinus resinosa)样品的理论模型和实验模型的比较分析,可以确定当木材温度低于水的冰点时,理论预测的AWV值与实验结果相符,具有平均预测误差为1.66%。从理论上讲,随着温度的降低,0℃附近温度突然升高,原木的AWV迅速增加,与实验结果相吻合。当木材的温度高于冰点时,该模型的预测误差相对较大。高估了液态水含量对声速的影响以及模型的有限变量。冷冻木材样品中声速值的预测值与实测值之间的高度相关性揭示了温度,MC和水状态以及它们如何影响木材(尤其是其在水的冰点以下的声速)的机理。该结果还证实了用于调整树木现场测试期间温度影响的先前实验模型的可靠性。

著录项

  • 来源
    《林业研究(英文版)》 |2018年第2期|541-548|共8页
  • 作者单位

    Northeast Forestry University,Harbin 150040,People's Republic of China;

    Northeast Forestry University,Harbin 150040,People's Republic of China;

    USDA Forest Products Laboratory,Madison,WI 53745, USA;

    Northeast Forestry University,Harbin 150040,People's Republic of China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 04:06:51
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