1) Specific Heat
比热率
2) specific heat
比热
1.
Measurement of specific heat of TiO_2-BaCl_2-H_2O nano-fluids with DSC;
DSC法测量低温相变蓄冷纳米流体的比热容
2.
To measure specific heat of high performance material by use of heat differential scanning;
用差示扫描量热法测定高性能材料的比热
3.
A specific heat numerical model of loose glutenite reservoir.;
疏松砂砾岩油藏比热数值模型
3) heat capacity
比热
1.
New theory of the leading basic research of molecular thermodynamics 12∶argon model and theoretic equation for calculation of gaseous heat capacity;
分子热力学前沿基础研究领域中的新理论12:论气体定压比热的理论计算法(英文)
2.
Determining heat capacity of pellet feed by mixing technique;
混合法测定颗粒饲料比热的初步研究
4) specific heat capacity
比热容
1.
Study of fractal dimension and its effect on specific heat capacity of coal or chars;
煤焦分形维数及其对比热容的影响研究
2.
Surface and size effects on specific heat capacity of nanoparticle;
尺寸效应和表面效应对纳米颗粒比热容的影响
3.
Calculation of enthalpy,entropy and specific heat capacity of HFC-227ea;
HFC-227ea的焓、熵、比热容计算
5) specific heat
比热容
1.
Using combastion bomb calorimeter to measure specific heat of dry Lycium barbarum;
利用氧弹式量热计测定干枸杞比热容的方法
2.
Measurement Methods of Biomass Specific Heat;
生物质比热容的测量方法
3.
The thermal conductivity,specific heat and viscosity of Al_2O_3-DW(distilled water) nanofluids were measured by transient hot-wire method,relative heat capacity measurement method and rotation viscometer,respectively.
分别采用瞬态热线法、比较量热法和旋转粘度计测试了不同温度、粒子浓度和粒径下的Al2O3-DW(蒸馏水)纳米流体的导热系数、比热容、粘度等热物性参数。
6) heat capacity
比热容
1.
Determination of the heat capacity of the ionic liquid [Emim]BF_4 and its agueous solutions;
室温离子液体[Emim]BF_4及其水溶液体系的比热容测定
2.
Using cement to prepare the sensible heat storage material,and it is for improving the capability of material by interfusing some matters which have large heat capacity and high heat conductivity.
研究表明:当铝酸盐水泥含量为10%时,材料的抗压、抗折强度能满足工业需求;材料的比热容随温度的升高先增大,在500℃时达到最大,后随着温度的升高反而降低;材料的热导率随着石墨粉含量的增加几乎成直线上升,当石墨含量为5%时材料的热导率大于1。
3.
Measurements of the heat capacity of steel-belted tire rubber composites were performed with Differential Scanning Calorimeter(DSC).
这些胶料经同一硫化条件硫化而成,分析结果证明:这几种橡胶材料在-20~90℃范围内,胎圈填充胶、内衬层胶的比热较大,钢丝带束层胶、胎面基部胶、帘布层胶比热较小,胎侧胶、胎面冠部胶介于它们之间,且帘布层胶、胎面基部胶和钢丝带束层胶的比热容比较接近;这几种胶料的比热容均与温度大致呈线性增长关系。
参考词条
补充资料:电导率(见电阻率)
电导率(见电阻率)
conductivity
d!日nd日O}已电导率(eonduetivity)见电阻率。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。