Study on the Interaction Between the Thermal Transport and the Propagation of Vibration within Micro-Slurries
Study on the Interaction Between the Thermal Transport and the Propagation of Vibration within Micro-Slurries
批准号:
15360104
负责人:
YAMADA Masahiko
金额:
$9.41万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B)
财政年份:
2003
资助国家:
日本
项目状态:
已结题
起止时间:
2003 至 2006
中文摘要
1.实验数据的评估:本研究的所有实验数据在整个项目期间都进行了重新整理和评估。重点研究了微粉的微结构悬浮液和浆体内的温度场与振动传播的关系。模拟和分析:连续进行模拟,以存储模拟数据,这些数据应该在总体报告之前进行分析。对研究结果和报告进行了全面的评估和分析本研究在整个项目期间对所有关于微结构悬浮液和微粉浆体内的温度场与振动传播关系的实验数据进行了全面的讨论。最后阐明了微结构浆体的传热机理,提出了有效控制微结构浆体内热传递的方法。微结构浆体,如悬浮液,在微小的振动作用下,由于内部应力的影响,内部结构发生了变化。这种变化受多种条件的影响,如悬浮液中的微颗粒和颗粒之间的内部连接条件。此外,还发现这类材料内部结构的变化也伴随着其热输运性质的变化。本研究的结果为利用材料的微小振动控制换热提供了可能。
英文摘要
1. Assessment of Experimental Data.All the experimental data in the present study throughout the term of project were rearranged and were reassessed. Special cares were given to the relationship between temperature field and propagation of vibration within the micro-structural suspensions and slurries of micro-powders.2. Simulations and analysis.The simulations were performed continuously in order to store the simulation data which should be analyzed before the total report.3. Total assessment and analysis of the research results and reportTotal discussions were carried out on all the experimental data on the relationship between temperature field and propagation of vibration within the micro-structural suspensions and slurries of micro-powders in the present study throughout the term of project. And the final report in which the heat transfer mechanism were clarified and the effective method for active control of heat transport within a micro-slurries was madeMicro structural slurries such as suspensions were suffered a change of inner structure due to its inner share stress by a small vibration. The change is affected by a variety of conditions such as micro-particles in a suspension and inner connection condition among the particles. Furthermore, it is also found that the change of inner structure of such materials also suffers the change of its thermal transport properties. The results of the present study gives a possibility of controlling heat transfer using a small vibration of materials.
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