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Referring to thecharacteristics of highway construction,the zoning maps of loess collapsibility is drawn by analyzing and summarizing research results of different fields.

黄土湿陷特性的分区是在总结和分析不同行业的湿陷性分区成果基础上,结合公路工程建设特点进行了黄土地区公路湿陷性分区。

Therefore, the moist potential vorticity analysis associated with the mesoscale convective system was researched in the paper, so as to reveal the moist potential characteristics of mesoscale convective system in typhoon circulation. The results showed that, during the generation stage, convective instability characterized by MPV1 was a favorable condition for forming MCS, while the vorticity which was caused by the slantwise isentropic surface and the vertical shear of the horizontal wind characterized by MPV2 was an inspiring mechanism. The specific process was that, the atmosphere exhibited the feature of strong convective instability at the low level of convection areas and the southeast areas, which included plenty of erratic energy. The slantwise ascended the stream transfer the erratic energy to northwest, where the stratification stability was small. As decreased, the cyclonic vorticity increased. On the other hand, the vorticity caused by the slantwise isentropic surface and the vertical shear of the horizontal wind inspired the release of convective instability and as a result that the MCS formed. During the development stage, the cyclonic vorticity increased quickly with the persistent decreasing of . Meanwhile, the inclination of isentropic linewas bigger than the absolute momentum line at middle level, which exhibited the feature of conditional symmetric instability , then the conditional symmetric instability was forced to release by the vorticity resulted from the slantwise isentropic surface and the vertical shear of horizontal wind, and the MCS developed.

结果表明,在对流形成阶段,MPV1即对流不稳定为MCS的形成提供背景不稳定条件,由MPV2即湿等熵面的倾斜和水平风的垂直切变而引起的涡旋发展作为强迫机制:MCS形成的区域及东南区域中低层是强对流不稳定层,蕴含丰富的不稳定能量,倾斜上升运动把对流不稳定区具有强不稳定能量的暖湿空气向西北中层的中性层结区输送,由于的减小,气旋性涡度增强,有利于形成对流,另一方面,由于湿等熵面倾斜和低空急流加强而引起的涡旋发展作为一种强迫机制激发对流不稳定能量得到释放,从而形成对流;在对流系统地发展阶段,由于低层的对流不稳定性进一步减弱,进一步减小,气旋性涡度进一步增强,有利于MCS的增强,中层等θe 线的倾斜度比绝对动量M 等值线的倾斜度大,对应有条件对称不稳定区域,满足条件对称不稳定条件,在湿等熵面倾斜和台风低空急流作用下引起的涡旋发展强迫对称不稳定能量释放,从而使得对流得以维持和加强。

The discrete heat and moisture transfer equation and control conditions are obtained with finite volume method. The temperature and moisture distribution and transient heat and moisture absorbing and desorbing of porous envelop are calculated with numerical method. The program for porous envelop heat and moisture transfer are developed by use of FORTRAN. The heat and moisture transfer model is verified using the examples given out in the reference [41] and testing data of funk hole located in A zone Chongqing university.

采用有限体积法对多孔材料热湿传递方程及控制条件进行离散,用数值方法求解多孔围护结构温湿度分布和壁面的瞬时热湿吸放量,采用FORTRAN语言编写了围护结构热湿传递计算程序,并用文献[41]给出的算例和重庆大学A区防空洞的测试数据对模型进行了验证。

Orthogonal experiment under special condition showed that modifier M has marked effect on properties of no bake sand. Other factors such as modifier B,phosphate concentration and aluminum hydroxide have some impact on properties of binder. It can be found by experiments that strengths of no bake sand are raised notably by binder that modified by modifier B. Modifier B can reduce the strength of no bake sand at high room temperature apart from condition of low room temperature that it can accelerate the reaction and strengthen the sand. Modest content of modifier M in binder has some improvement to anti-wettability of sand. But modifier B has not such notable effect. Electronic microscope shows that near cracks in no bake product there are fibrous shape substances formed when the samples are moistured in high humidity air for sometime.

通过改性剂B对粘结剂自硬砂的性能影响试验发现,改性剂B能显著提高粘结剂自硬砂的强度,在0℃左右很低的环境温度下改性剂M有利于提高自硬砂的反应速度和砂型强度外,但在较高环境温度下,改性剂M均降低粘结剂自硬砂的强度,但是适量的改性剂M有利于改善自硬砂的抗吸湿性,而改性剂B对于改善自硬砂的抗吸湿性的作用不如改性剂M明显,电镜观察发现抗吸湿性较好的自硬砂在高湿度下存放一定时间后,在粘结膜裂纹处会形成一种绒毛状物质,该物质对裂纹具有愈合作用,这种绒毛状物质中具有改性剂M中的某种成分,且含量很高,由此说明改性剂M对提高抗吸湿性有利。

Results The percentage of special diathesis type increased in the group with positive family history of keloid. The percentage of wet-heat or blood-stasis and special diathesis type increased respectively in the group with keloid on the chest and submaxilla area or on the limbs; The percentage of wet-heat type increased in the group with conspicuous inflamed keloid; The percentage of wet-heat or phlegm-wetness type increased respectively in the group with acne correlated keloid or acne uncorrelated keloid.

结果:瘢痕疙瘩有家族史者偏颇为特禀质的百分比增加;胸部、下颌部受累者偏颇为湿热质的百分比增加,四肢部受累者偏颇为瘀血质、特禀质的百分比增加;炎症明显者偏颇为湿热质的百分比增加;与痤疮相关者偏颇为湿热质的百分比增加,与痤疮不相关者偏颇为痰湿质的百分比增加。

This article introduces the research progress in the improvement of the tradition wet strength agent and the development of new environment-friendly wet strength agents such as the polyacetal, the glutaric dialdehyde, the high polymer latex and so on.

介绍了国内外改进传统湿强树脂和聚缩醛类、戊二醛、高分子胶乳类等新型环境有好型湿强剂的研究现状及其作用机理,并且指出环境友好型湿强剂是今后研究发展的方向。

Small height fluctuations were artificially introduced to the thin film samples by mechanically rubbing the sample surface with a rayon cloth before dewetting initiates. By comparing the dewetting morphology evolution and the characteristic length of dewetting structures of unrubbed and rubbed samples, the results clearly show that the dewetting mechanism for thinner polystyrene films with h≤13. 3nm is spinodal dewetting and that for thicker films with h≥13. 3nm is heterogeneous nucleation dewetting.

通过用绒布在薄膜表面进行摩擦,人为的引入一定程度的厚度涨落,通过比较有和没有表面涨落的薄膜的去湿形貌,可以清楚的识别出厚度小于13.3nm的聚苯乙烯薄膜的破坏机理为旋节去湿,而厚度大于13.3nm的聚苯乙烯薄膜的破坏机理则为成核去湿,形成双连续结构或孔洞都可以导致薄膜的旋节去湿。

This paper gives a detailed description of the properties and harmfulness of dust, the kinematic features of dust and the present situation and technical level of wet dust collectors both at home and abroad, a new type of wet cyclone dust collector has been successfully developed on the basis of the mechanism of wet cyclone dust collection, the theory of rotary airflow field and the similar model test results of the main components of wet cyclone dust collectors by the predecessors, all performance indexes of this new dust collector conform with requirements, it has been applied in Sichuan Changyun Cement Plant and better results have been obtained.

本文详细论述了粉尘的性质和危害、粉尘的运动特性和国内外湿式除尘器的现状及技术水平,在湿式除尘机理、旋转流场理论和前人对湿式旋流除尘器各主要部件的相似模拟试验结果的基础上,成功地研制出各项性能指标均达到要求的湿式旋流除尘器,并在四川省长运水泥厂进行了现场应用,取得了良好的效果。

Skin Food bright white - lettuce cucumber young and fresh-looking glazed frost Skin Food bright white - lettuce cucumber young and fresh-looking glazed frost including lettuce and cucumber extract essence, but the instantaneous supplement flesh moisture content, has the remarkable moisturizer flesh's function, the young and fresh-looking crystal passes the tension flesh for you.3.rlique- Zhuli moisturizees date frost Jurlique- Zhuli to moisturize the date frost especially qualify to do, sensitive, the breakage or the chap skin, is the oil pocket water cream, particularly under the dry air or the cold adverse circumstance, Jurlique- Zhuli moisturizees the date frost to be able to provide the greatest degree to make up the water, to nourish with the protective function, is also the baby skin's ideal nursing product.application method: After flowers and plants water uses, pushes right amount Jurlique- Zhuli to moisturize the date frost in the control or the finger, holds back and spreads lightly after clean on the face and the pate skin.

Skin Food 焕白-莴苣黄瓜水嫩凝霜含莴苣及黄瓜萃取精华,可瞬间补充肌肤水分,具有卓越的保湿肌肤的作用,给您水嫩晶透的弹力肌肤。Jurlique-茱丽保湿日霜特别适合干性、敏感、破损或龟裂的皮肤,是油包水的乳霜,尤其是在干燥的空气或寒冷的恶劣环境下,Jurlique-茱丽保湿日霜能够提供最大程度的补水、滋养和保护作用,也是婴儿皮肤的理想护理产品。使用方法:在花卉水后使用,挤适量Jurlique-茱丽保湿日霜在手心或手指,按压及轻涂在清洁后的脸部及颈部皮肤上。

As the kernel of BPY system, advanced wet degradation technology of waste comprises delivering sorted degradable organic substances into reactor, charging steam to perform wet degradation reaction under certain temperature and pressure for 1-2 hours, killing pathogenic bacteria and grass seeds to eliminate odor, synthesizing partially degraded substances into humus material, and preparing wet-degraded material into commercial fertilizer.

具有领先性的湿解技术是BPY系统的核心。应用湿解技术处理垃圾,将经过分选的可降解有机物输送到反应器内,通入蒸汽,在一定温度、压力和有水存在的条件下进行湿解反应,1~2小时杀灭病原菌和草籽,消除恶臭,同时使有机物的各种组份得到降解,并使部分降解后的物质再合成为腐殖质。然后将经过湿解处理的物料制成商品肥。

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The split between the two groups can hardly be papered over.

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