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1)  charging process
贮热过程
1.
A theoretical model for a borehole heat storage unit was made to study its heat charging process in summer season.
建立地层钻孔(Borehole)贮热单元体夏季贮热过程的理论模型。
2)  storage [英]['stɔ:rɪdʒ]  [美]['stɔrɪdʒ]
贮存过程
1.
Additive affecting nonenzymatic browning of apple juice concentrate during storage;
贮存过程中添加剂对浓缩苹果汁非酶褐变的影响
2.
The effect of packaging, storage temperature, grind degree of lean, heat treatment dosage of sugar and kind of sugar during processing, heat treatment on fatty cubes and the final products on trend of acid value during storage in Chinese Cantonese sausage was studied.
研究包装方式、贮藏温度以及加工过程中瘦肉的绞碎程度、配方中糖用量及糖的种类、加工过程中肥丁热处理及产品热处理对广式腊肠在贮存过程中酸价的变化规律。
3)  fermentation and storage process
发酵和贮藏过程
4)  preheating process
预热过程
1.
Influence of lime adding method on scaling process in Bayer preheating process of diasporic bauxite slurry;
石灰添加方式对一水硬铝石型铝土矿浆预热过程结疤的影响
2.
The buried hot oil pipeline preheating process is a process of heat and instability.
埋地热油管道预热过程是一个不稳定传热过程,埋地热油管道启输过程的土壤温度场是一个沿管道横断面(径向和切向)与轴向的三维非稳态传热问题。
5)  thermal process
热过程
1.
Simulation of thermal process of Pedgeon′s magnesium reduction;
金属镁皮江法还原工艺中的热过程模拟
2.
A numerical simulation model of SMT laser microsolder thermal process;
SMT激光低温钎焊接合部热过程的数值模型
3.
Experiment research and numerical simulation of thermal process in a suspended bed for Si_3N_4 synthesis;
悬浮床氮化硅合成热过程的实验研究与数值模拟
6)  pyrolysis process
热解过程
1.
By using TGA the pyrolysis process of refined pitch was studied with different sample weights and heating rates.
通过改变试样量和升温速率,利用热解重量分析仪研究精制沥青的热解过程,为沥青的聚合和炭化过程的控制提供依据。
2.
In the present paper, pyrolysis process of phenol\|formaldehyde resin mixed with white carbon black(nano\|silica) and boron carbide powders was investigated.
本文借助于红外光谱 (IR)对不同温度热处理后的粘接样品进行结构分析 ,以考察热解过程中的结构变化特点及其与性能间的相关性。
3.
The pyrolysis process of briquette and its fractional coals has been performed by using a Pyris-1 TGA thermograimetry.
采用Pyris-1 TGA热重分析仪研究了型煤及其组分煤种的热分解过程,通过对比型煤的热分解曲线和燃烧过程曲线,探讨了热解过程对型煤燃烧特性的影响,并在实验研究的基础上提出了型煤挥发份释放特性指数。
补充资料:贮热高分子材料
分子式:
CAS号:

性质:能够把热能以潜热、显热或化学能的形式暂时贮存起来,根据需要又可方便地将上述能量转变成热能的高分子材料称为贮热高分子材料。其中显热贮热高分子多为各种有机硅油,与相应的无机贮热材料,如水、砂和液态金属等相比优势不大;而利用相态或晶态转变贮存热能的高分子材料也比较少见。目前研究较多的是具有将热能可逆地转化成化学能的聚合物,通过化学能贮存热能是重要的能量存储方法。

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