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1)  thermal rising test of cubic block
非绝热温升试验
1.
With an approach of combination of thermal rising test of cubic block in-situ and back analysis,the thermal retardation capability of polystyrene foam board is analyzed.
采用施工现场混凝土立方体非绝热温升试验和反演分析相结合的方法,对聚苯乙烯泡沫塑料板外贴法的保温能力进行分析研究。
2)  adiabatic test
绝热温升试验
1.
A finite difference model for predicting temperature fields in early age concrete is presented based on adiabatic test on concrete.
采用有限差分方法,建立了基于混凝土绝热温升试验的早龄期混凝土温度场计算模型。
3)  adiabatic temperature rise
绝热温升
1.
Update for measuring system of concrete adiabatic temperature rise and its application;
混凝土绝热温升测试系统的改进及应用
2.
A new computing model for the adiabatic temperature rise of concrete and the method of back analysis;
混凝土绝热温升的新计算模型与反分析
3.
A method for computing the adiabatic temperature rise of concrete considering the effect of the temperature of concrete;
考虑温度影响的混凝土绝热温升表达式
4)  adiabatic rise of temperature
绝热温升
1.
The adiabatic rise of temperature of concrete develops very slowly at early age when set time of concrete is long.
缓凝混凝土初期绝热温升发展很慢,与一般混凝土的规律不完全相同,用单一公式拟合时,不能很好地表述其绝热温升的变化规律。
5)  adiabatic temperature change
绝热温升
1.
Based on the theory of value engineering and control to adiabatic temperature change of mass concrete,it is proposed four-functions principle for design optimization of GHPC.
 根据价值工程理论,提出了基于大体积混凝土绝热温升控制的绿色高性能混凝土(GHPC)优化设计的四功能准则。
2.
Based on actual situation of Surgery Building of Xiehe Hospital, unstable coupled temperature field model was established to calculate accurately adiabatic temperature changes of concrete with full considerations of interaction between two temperature fields, mass concrete of foundation in high rise building and soil in this paper.
根据武汉协和医院外科大楼工程实例 ,建立了高层建筑基础大体积砼温度场与土壤温度场相互影响的非稳态耦合温度场模型 ,以精确计算砼的绝热温升。
6)  adiabatic temperature
绝热温升
1.
A study on drying shrinkage and adiabatic temperature of high strength concrete (C60,C70) in frozen shaft was made.
就冻结深井高强混凝土(C60、C70)与普通混凝土(C40)的干缩性能和绝热温升特性进行了对比试验研究。
2.
Their drying shrinkage,adiabatic temperature,were investigated.
就冻结深井C100高强混凝土不同配合比的干缩性能和绝热温升特性进行了对比试验研究。
补充资料:绝热温升
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性质:在绝热反应器中进行放热反应时,由于反应热的释出,使床层和反应物的温度上升,从开始反应的温度上升至绝热反应的最高温度称为绝热温升。最大上升温度应有限制,因为由于温度升高会降低平衡转化率,或导致催化剂的失活,或反应速度太快而容易失控。可以采取将催化剂分为多层的办法,使反应物温度上升至某一数值后便进入催化层间进行换热,降低进入下一层的入口温度。

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