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supercooling相关的网络例句

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与 supercooling 相关的网络例句 [注:此内容来源于网络,仅供参考]

Therefore, the condenser air is not the main reason of condensate supercooling, although it has some influences.

在正常运行工况下,由于这一区域的蒸汽凝结量已很少,所以对全部凝结水的平均过冷度不会产生明显的影响;因此,凝汽器中存在空气对凝结水虽然有一些影响,但并不是凝结水产生过冷的主要因数。

Obviously, Such kind of tube bundle layout can reduce condensate supercooling and satisfy the demand of good deoxidization.

显然,这种形式的管束布置能减少凝结水过冷,满足良好除氧性能的要求。

The results show that 5% nucleating agent,twelve-hydrated disodium hydrogen phosphate,could reduce the supercooling degree of acetate hydroxide trihydrate to some extent but the supercooling degree was still large.However,the supercooling degree of sodium acetate trihydrate could decrease clearly by adding 3% thickener gelatin and 5% twelve-hydrated disodium hydrogen phosphate.

实验结果表明,质量百分比为5%的成核剂十二水磷酸氢二钠能一定程度上抑制无机水合盐三水醋酸钠的过冷度,但其过冷度仍然较大;使用质量百分比5%的十二水磷酸氢二钠和质量百分比3%的增稠剂明胶做添加剂后,三水醋酸钠的过冷性能得到明显改善。

In this study, cold hardiness of pupae and over-wintering adults among seasonal populations and geographic populations of Bactrocera dorsalis in China were assayed by measuring their supercooling capacity and cold survival ability.

昆虫是变温动物,遍布地球的各个角落,在其生命过程中,经历着复杂的生态环境变化,它们的生理功能、基本行为甚至进化途径无不受温度的控制和影响(Lee and Denlinger,1991)。

The influence of pressure, temperature and particle size of ice on the formation of natural gas hydrate below ice point was experimentally investigated, and the influence of supercooling and overpressure was also studied.

通过实验研究了冰点以下天然气水合物的生成反应中压力、温度及冰粒大小等因素的影响,并研究了过冷和过压在水合物生成中的作用。

This paper reviews the conventional models for the formation of marginal compositional reversals,including wall-rock contamination,multiple injection,compositional stratification of magma,high degree of supercooling,crystal settling of phenocrysts,flow differentiation,compositional convection and upward decrease in amount of intercumulus liquid.

朱丹,罗泰义,宋谢炎,徐义刚,陶琰,黄智龙,基性-超基性岩浆成岩和成矿过程中Soret效应的研究进展综述了当前对基性-超基性岩床和层状岩体的边缘反转现象的传统解释模型,包括围岩混染、岩浆多期注入、岩浆分层、过冷却、晶体沉降、流动分异、结晶和成分对流以及逐渐减少的颗粒间熔体量。

The mature of pseudo-recalescence is the remelting of dendrites. This leads to apparent refinement of dendrite microstructures. Therefore the experiment support the viewpoint of dendrite remelting for microstructure refinement during supercooling solidification.②Under the condition of supercooling solidification, secondary recalescence cannot show up for single phase solid solution.

伪再辉现象的本质是枝晶熔断所致,由此引起伪再辉试样微观组织被明显细化,从而支持了深过冷凝固过程中组织细化的枝晶熔断说观点;②单相固熔体合金,在深过冷凝固条件下,不可能出现二次再辉。

To reduce condensate supercooling, the reason of condensate supercooling in condenser should be analyzed firstly in the following

为了减小凝结水的过冷,下面先分析凝汽器中造成凝结水过冷的原因。

For supercooling directional solidification, ideal directional microstructure can be obtained only within the supercooling range 63~83K and 127~170K. These two supercooling ranges just corresponds to the supercooling for developed equiaxial dendrites in ordinary supercooling solidification.

6对于深过冷定向凝固来说,只有在63~83K的低过冷度范围和127~170K的中过冷度范围才能获得理想的定向生长组织,而这两个过冷度范围正好对应于深过冷熔体凝固组织为发达的等轴枝晶的过冷度范围,这种组织的相似性似乎与过冷度一样具有遗传性。

Evolution pattern of solidification microstructure in the monophase Cu Ni alloy in the range of thermo dynamically supercooling of 63~292 K is investigated, and both the condition of supercooling degree and orientation mechanism and control method of directional crystalline growth in the melt under negative temperature gradient are analyzed.

研究了 6 3~ 2 92K热力学过冷度范围内,Cu Ni单相合金的凝固组织演化规律,分析了负温度梯度熔体中晶体定向生长的过冷度条件以及晶体生长取向机制与控制方法。结果表明:(1)在临界过冷度ΔT (≈ 10 6K)附近,晶粒细化过程受溶质扩散控制,在临界过冷度ΔT (≈ 2 0 0K)附近,晶粒细化过程受热扩散控制;(2 )在 6 3~ΔT K范围内,晶体的生长方向是 [10 0 ],在 12 7~ΔT K范围内,晶体的生长方向可以是 [10 0 ],也可以是

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