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freezing process相关的网络例句

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The changes of freezing point and super-cooling point of a series of PM vitrification solutions was investigated in the process of slow freezing at a ratio of 5℃/min. This experiment showed that the vitrification solution over 41% had not freezing point, while the vitrification solution under 40% had freezing point and could ice.

对PM系列玻璃化液在5℃/min慢速降温过程中冰点、过冷点的产生和变化进行研究,发现浓度在41%以上的玻璃化液降温时不产生冰点结晶,而40%以下玻璃化液在慢速降温时在冰点出现了结晶。

Freezing soil is a natural phenomina in cold and mountain areas, which has great impact on the regional climate, water cycle, and water balance. The land surface process in the condition of soil freezing and thawing is one of the most important process in the area. This paper firstly reviews the present study on land surface process in the condition of soil freezing and thawing, especially the development after the the hydrological land surface model introduced into the study of General Circulation Model, then introduces the undergoing international research project, such as Project for Intercomparison of Land-surface Parameterization Schemes and Cold Land Process Field Experiment by NASA, and finally analyses and puts forward the future research field and topics.

冻土是全球中高纬地区和高山地带普遍存在的自然现象,它对全球以及区域性气候、水循环、水平衡等都有着巨大的影响,土壤冻融条件下的陆面过程正是这种影响的重要环节,介绍了土壤冻融条件下陆面过程的研究现状,特别是在大气环流模型中引入水文陆面模型以来陆面过程研究的迅猛发展,对现在国际上正在进行的考虑冻土的陆面过程研究项目,如陆面过程参数化比较计划的第二阶段第五期PILPS (2E)以及美国NASA的寒区陆面过程实地试验计划也进行了介绍,并在此基础上对土壤冻融条件下陆面过程的发展趋势进行了分析。

This article analyses the application conditions of freezing method, current research status and the problems in this field. It points that it's necessary to study deep freezing temperature field deeply and discusses the factors which influence the freezing wall such as soil's nature, moisture content, geological conditions, etc. It introduces the theory, process of freezing method, the distribution of temperature field of freezing method and key thermotics parameters influencing freezing temperature field. It simplifies the deep freezing temperature field model. Through ANSYS, this article founds the deep freezing temperature field model, and simulates the field on vary heat conductivities. It analyzes the results of ANSYS simulation, gains the theoretical value of thermometric holes which is needed by back-analysis. Using the simulation temperature and actual value, it gets the equivalent heat conductivity. Then it solves the deep freezing temperature field by the equivalent value, simulates the freezing wall development process and temperature change curve. Against the actual project, the results are favorable.

文中分析了冻结法施工的应用条件,目前对冻结法施工的研究现状和在此领域内存在的问题,指出了对深土冻结温度场进行深入研究分析的必要性;对影响冻结壁形成发展的因素如冻土土性、含水量、地质条件及施工方法等因素进行了论述;对冻结法施工的原理、过程,冻结法温度场的分布情况,影响冻结温度场分布的主要热学参数进行了综述;对深土冻土温度场模型进行了合理的简化,通过ANSYS大型有限元分析软件,建立了深土冻结温度场的模型,对不同导热系数情况下的深土冻结温度场进行了模拟;对ANSYS的模拟结果进行了定性的分析,通过对ANSYS结果的后处理取得了反分析时需要用到的测温孔理论温度值;经过对测温孔模拟温度值和实测温度值的分析,得到了冻结温度场的等效导热系数;使用等效导热系数对深土冻结温度场进行了求解,模拟了冻结壁发展情况和温度场中的温度变化曲线,用所得结果对比工程实际情况,取得了较好的效果。

This article analyses the application conditions of freezing method, current research status and the problems in thisiold. It, points that it" s necessary to study deep freezing temperature field deeply and discusses the factors which influence the freezing wall such as soil" s nature, moisture content, geological conditions, etc. It introduces the theory, process of freezing method, the distribution of temperature field of freezing method and key thermotics parameters influencing freezing temperature field, it simplifies the deep freezing temperature field model. Through ANSYS, this article founds the deep freezing temperature field model, and simulates the field on vary heat conductivities. It analyzes the results of ANSYS simulation, gains the theoretical value of thermometric holes which is needed by back analysis. Using the simulation temperature and actual value, it gets the equivalent heat conductivity. Then it solves the deep freezing temperature field by the equivalent value, simulates the freezing wall development process and temperature change curve. Against the actual project, the results are favorable.

文中分析了冻结法施工的应用条件,目前对冻结法施工的研究现状和在此领域内存在的问题,指出了对深土冻结温度场进行深入研究分析的必要性;对影响冻结壁形成发展的因素如冻土土性、含水量、地质条件及施工方法等因素进行了论述;对冻结法施工的原理、过程,冻结法温度场的分布情况,影响冻结温度场分布的主要热学参数进行了综述;对深土冻土温度场模型进行了合理的简化,通过ANSYS大型有限元分析软件,建立了深土冻结温度场的模型,对不同导热系数情况下的深土冻结温度场进行了模拟;对ANSYS的模拟结果进行了定性的分析,通过对ANSYS结果的后处理取得了反分析时需要用到的测温孔理论温度值;经过对测温孔模拟温度值和实测温度值的分析,得到了冻结温度场的等效导热系数;使用等效导热系数对深土冻结温度场进行了求解,模拟了冻结壁发展情况和温度场中的温度变化曲线,用所得结果对比工程实际情况,取得了较好的效果。

Quick-freezing coprinus comatus is a new coprinus comatus preservation methods, the paper introduces a quick-freezing coprinus comatus the production process, affect product quality as well as the factors analyzed, and some effective quality control measures.

速冻鸡腿蘑是一种新型鸡腿蘑保鲜方法,介绍了速冻鸡腿蘑的生产工艺,并对影响产品质量的因素进行分析,提出了一些有效的质量控制措施。

The natural polymer porous scaffolds can be prepared by vacuum drying at the temperature over freezing point of the solvent, and the processing time of scaffolds can be reduced obviously. It can be consumed much less time and energy than former freezing-drying process. Though the porous scaffolds fabricated by this method could come into being some crazes and collapse sometimes, the process still requires improving further.

在比冰点高的温度下对冷冻的样品进行真空干燥,可以制得多孔支架,并能使制备的时间大大缩短,但该工艺方案有时会产生开裂和塌陷,影响支架的质量,因此还有待进一步完善。

Three weeks afer the allografting,there was no significant difference between the two al lografting groups in maximum load(P>0.05),Eight weeks later,the maximum load of the group that was preserved by liquid nitrogen after program freezing(76.60±4.67)N was better than the group that was preserved by -80℃ deepfrozen(75.99±4.20) and similar with the autografting group(76.72±2.55).4.The healing process and histological behavior of the two deepfrozen groups are similar with the autografting group,and the program freezing group is better.

结果 a经程序冷冻液氮保存方法处理后,髌腱的最大载荷无明显下降,细胞活性得到了较好的保存,组织学观察冷冻损伤较-80℃深低温保存方法轻微;b程序冷冻液氮保存处理的移植物在术后未表现明显的排斥反应,且免疫反应随时间的推移而下降;c移植后3周,各组移植物的最大载荷无显著差异(P>0.05),移植后8周,程序冷冻液氮保存组移植物的最大载荷(55.87±1.86)N优于-80℃深低温保存组(52.14±2.79),而和自体移植组相近(57.70±2.76)N;d从组织学观察看,-80℃深低温保存组和程序冷冻液氮保存组移植后的愈合过程均和自体移植组相似,而程序冷冻液氮保存组的愈合过程和组织学行为更接近于自体移植组。

Results 1.After treated by:program freezing,the maximum load of the allografts has no evident decrease and the cell activity of allografts was preserved well,the frozen hurt after program freezing was more slight than -80℃ deepfrozen,2.No evident reject reaction can be seen during the healing process after deep frozen and the reject reaction declined as the time pass by.3.Three weeks afer the allografting,there was no significant difference between the two al lografting groups in maximum load(P>0.05),Eight weeks later,the maximum load of the group that was preserved by liquid nitrogen after program freezing(76.60±4.67)N was better than the group that was preserved by -80℃ deepfrozen(75.99±4.20) and similar with the autografting group(76.72±2.55).4.The healing process and histological behavior of the two deepfrozen groups are similar with the autografting group,and the program freezing group is better.

结果 a经程序冷冻液氮保存方法处理后,髌腱的最大载荷无明显下降,细胞活性得到了较好的保存,组织学观察冷冻损伤较-80℃深低温保存方法轻微;b程序冷冻液氮保存处理的移植物在术后未表现明显的排斥反应,且免疫反应随时间的推移而下降;c移植后3周,各组移植物的最大载荷无显著差异(P>0.05),移植后8周,程序冷冻液氮保存组移植物的最大载荷(55.87±1.86)N优于-80℃深低温保存组(52.14±2.79),而和自体移植组相近(57.70±2.76)N;d从组织学观察看,-80℃深低温保存组和程序冷冻液氮保存组移植后的愈合过程均和自体移植组相似,而程序冷冻液氮保存组的愈合过程和组织学行为更接近于自体移植组。

The variation of freezing rate and thawing rate in the process of repeatedly freezing and thawing explained by the variation of the thermal conductivity.

利用导热系数在冻融过程中的变化解释冻结速率和融化速率在冻融过程中的变化。

According to measured data of ground temperature along QXH, the relationships among thermal thaw-erosion sensibility, freezing-thawing process, seasonally thawing depth and permafrost ground temperature, among permafrost temperature, mean annual ground temperature and seasonally thaw depth and among surface landscape stability, freezing-thawing hazards and their forming possibility are systemically analyzed.

通过青藏公路沿线实测资料,分析了冻土热融蚀敏感性与冻融过程、季节融化深度及多年冻土顶板温度关系;冻土热稳定性与多年冻土顶板温度、年平均地温及季节融化深度的关系;地表景观稳定性与冻融灾害之间的关系及产生的可能性。

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