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The optimum condition of homogenizing for Angeleno and almond compoundprotein beverage is that: homogenizing at 55℃for 8 minutes under the pressure of 40MPa.

安哥诺李、杏仁复合蛋白饮料最佳均质工艺为:均质时间8min,均质压力40 MPa,均质温度55℃。

This text discusses the principle of the broking solid particle an d emulsifing liquid particle in the fruit-vegetable juice homogenizing,and the principle of highly shearing homogenizing mechanism as well as,makes use of high ly shearing homogenizing mechanism to homogenize the celery juice.

本文对果蔬汁均质中固相破碎与液相分散乳化机理和高剪切均质机理的研究,利用高剪切均质机对芹菜汁进行均质试验研究,试验表明高剪切均质机在对果蔬固液料均质效果较佳,对抑制果蔬汁的分层有明显效果。

In the same way failure area is not single andis more complex with decrease of scale of specimens. And failure shape ismore close to quasi-brittle failure. It varies with homogeneousness that thescale of specimens at which failure shape changes.(3) The failure shape of homogeneous specimens with crack is controlledby crack. But that of heterogeneous specimens with crack is controlled bycrack and heterogeneousness.(4) Acoustic emission doesnt appear until homogeneous specimens fail.

但对于不同均质度,试件破坏形态发生变化的尺度也不同;(3)对于均质度较高的含裂纹试件,试件的破坏形态主要受裂纹控制,而对于均质度较差的含裂纹试件,试件的破坏形态由试件材料的非均匀性和裂纹共同控制;(4)均质度较高的试件,破坏前,试件内不出现声发射,破坏瞬间,声发射在某些部位同时出现,且随尺度增大,试件声发射能量增大,声发射区趋于集中。

This paper studies the stress of gravity dam heel with careful numerical simulation, and analyses the effect of the variety of the elastic modulus of homogeneous or non-homogeneous foundations on the principal tensile stresses of gravity dam heel. The conclusions are as follows:① When the elastic modulus of homogeneous dam base and variated element in the critical place is changed with the same the fluctuation, the effect on the dam heel stresses caused by the latter is much more prominent than the former one.

本文通过精细网格模拟研究了重力坝坝踵应力情况,就均质坝基和非均质坝基弹模变化对坝踵主拉应力的影响,得出了如下结论:①均质坝基弹模与非均质坝基敏感区域的变异单元弹模变化相同的幅度,非均质情况引起的坝踵应力的变化远大于均质情况。

A mixed method of conjugate gradient method and steepest descent method ;2. The Modified Steepest Descent Method──Best Point in Steepest Descent method;3. This paper presents the mathematical model for the optimization of heterogeneous components, and the method using sensitivity analysis and steepest descent method to optimize material properties, the component is then identified.

阐述了非均质材料零件设计优化的数学模型,并采用灵敏度分析以及最速下降法对其各个材料区域的材料性能进行设计优化,得到最佳材料性能参数后,再从非均质材料数据库中找到相应的工程材料,合成满足设计要求的非均质材料零件该方法为设计者提供了切实可行的非均质材料零件的材料设计方

This paper presents the mathematical model for the optimization of heterogeneous components, and the method using sensitivity analysis and steepest descent method to optimize material properties, the component is then identified.

阐述了非均质材料零件设计优化的数学模型,并采用灵敏度分析以及最速下降法对其各个材料区域的材料性能进行设计优化,得到最佳材料性能参数后,再从非均质材料数据库中找到相应的工程材料,合成满足设计要求的非均质材料零件该方法为设计者提供了切实可行的非均质材料零件的材料设计方

Base on core observation and grain size analysis, and under associated consideration of logging trace characteristics, Chang8 reservoir in study area is classified into three sedimentatal microfacies, subsea river, mouth bar and river flank.3.The mian diagenesis in study area are: mechanical compaction, cementation, metasomasis and denudation in late diagenetic phase.4. In allocation of reservoir macroscopic heterogeneity, more heterogeneticer reservoir, class 1 and class 2, mainly locate in the center of subsea river or crook and divaricate of the river; class 3 and class 4 mainly locate in river flank, and the physical property of these locality are better.5. Diagenesis of reservoir have influence on the pore structure which influences the reservoir microscopic heterogeneity. The better the pore structure is, the slighter the reservoir microscopic heterogeneity is; on the contrary, the reservoir microscopic heterogeneity is serious.

本次研究所取得的主要成果及熟悉有:1、将合水地区长8储层细分为6个小层:长8_1~1、长8_1~2、长8_1~3、长8_2~1、长8_2~2和长8_2~3.2、依据岩心观察和粒度分析,并结合测井曲线特征,研究区长8储层分为水下分流河道、河口坝和河道侧翼四种沉积微相。3、研究区主要经历的成岩作用有:机械压实和压溶作用、胶结作用、交代作用、晚成岩期溶解作用。4、从宏观非均质性平面展布特征来看研究区宏观非均质较强的1类和2类区主要分布于水下分流河道中间或河道拐弯和分又处。3类和4类往则主要分布于水下分流河道侧翼,这些地方储层均质性相对较好。5、储层成岩作用影响储层的孔隙结构,储层的孔隙结构又对储层的微观非均质性有不同程度的影响,孔隙结构越好,则储层的均质性越好,储层的孔隙结构差,则非均质性强。

The third generation of homogenizer developed and produced by our company is that improved on the base of importing equipments and is a necessity for producing middle and high rate emulsion and cream type products domestically at present,reasonable design and advanced techniques,with various technical parameters paralleling with the same class products internationally,better than the vacuum hom-ogenizing system of homogenate emulsion pot of the ltalian TE-3type or the Japanese YQ type in respect of shear effect,with fine and smooth and unform material of extraordinary brightness after being homogenized.

我公司开发生产的第三代均质机,是在引进设备的基础上改进的,是目前国内生产中高档乳化,膏霜类产品中高档乳剂,膏霜类产品必备设备,设计合理、工艺先进,各项技术参数均可与国际同类产品相比美,比意大利TE-3型和日本YQ型真空均质入画锅均质系统系统的剪切效果好,物料均质后细腻均匀、光亮度特别好。

With famous flow-field analytic software CFX we also simulated the flow's details in the homogenizers head, and analyzed it's infection to the homogenization process using the simulation results. We also established the dynamic model of the stator-rotor of shear homogenizer system, and analyzed important factors that affect the system's stability with the help of the poincarémaps, axes contrails, phase plane portraits, times-history and amplitude spectrum which were attained by Fortran language and Matlab program.

然后,本文运用商业通用流体动力学分析软件CFX对均质头内部的流场进行了仿真模拟,并与数学模型相结合,探讨了剪切式均质机内部的流场对均质效果的影响,得出提高转速是提高均质机效率的关键,但是转速的提高又直接关系到系统的稳定性,于是紧接着建立了剪切式均质机转子系统的动力学模型,经无量纲化和必要的简化后再运用Fortran语言和Matlab软件对该模型编写相应的程序,得到了庞卡莱图,轴心轨迹图,相图,波形图,频谱图等图谱。

By timely and spatially controlling the physical and chemical characteristics of the fuel at both port injection stage and in-cylinder direct injection stage, HCCI/DI stratified compound combustion is developed to combine the advantages of HCCI and conventional DICI on cycle-to-cycle basis and achieve clean and efficient combustion at full load ranges without misfiring and knocking.Firstly, three types of dual fuel including n-heptane/diesel, iso-octane/diesel and ethanol/bio-diesel a...更多re utilized to investigate the combustion and emission characteristics of HCCI/DI stratified compound combustion. The experimental results indicate that n-heptane/diesel HCCI/DI combustion presents a three-stage heat release consisting of HCCI low temperature heat release, high temperature heat release and diesel diffusive combustion.

本文提出的基于燃料设计与管理的HCCI/DI分层复合燃烧是一种将HCCI燃烧和传统缸内直喷压燃融为一体的新型燃烧方式,通过对燃料理化特性的设计和在预喷与直喷阶段从时间尺度和空间尺度上对均质和非均质混合气制备过程的控制和管理,在发动机的一个工作循环中将均质混合气的HCCI燃烧和非均质混合气的DICI扩散燃烧相融合,彻底消除了HCCI燃烧在小负荷失火和大负荷爆震的弊病,实现了发动机全负荷范围内的高效清洁燃烧。

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