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The main problems of pumps in hydraulic characteristics such as low pump efficiency, humble head-flow curve and easily overload brake horsepower etc, and their countermeasures developed in recent years including greater flow design and non-overload theory etc, are introduced thoroughly.

介绍了低比转速离心泵水力设计和结构设计研究现状,分析了低比转速离心泵水力性能方面存在的效率较低、扬程曲线易出现驼峰和轴功率易过载等问题产生的原因及解决办法,对各水力设计方法进行了评述。

Relative hydraulic conductivity is first evaluated cell boundaries by using full upstream weighting, the arithmetric mean, or the geometic mean of values from adjacent cells. Saturated hydraulic conductivites are evaluated at cell boundaries by using distance—weighted harmonic mean.

首次采用分散平均方法估算水力传导率,即运用上风权重法来估算单元边界的相对水力传导率,运用距离权重调和平均法来估算单元边界的饱和水力传导率。

A 5. 5h anti-impinge test indicated that the whole technical process had a better anti-impinge ability The feasibility modeling test of water quality showed that the quality of reclaimed water after the treatment by the above process, when used as supplementary circular cooling water and boiler water, met the nation standards in the respect of corrosion, scaliness and bacteria breeding, and even better than the normally used cooling water.

以炼厂实际外排污水为原水,通过两期水力负荷分别为0.2m3/h和0.5m3/h中试规模测试,当本工艺处理水力负荷0.5m3/h、水力停留时间1.49h,污水中COD、氨氮、石油类、悬浮物、挥发酚的浓度变化分别为44.07~102.13mg/l、28.37~50.01mg/l、4.68~19.36mg/l、7.2~34.5mg/l、0.14~0.31mg/l时,平均去除率分别达到94%、96.1%、91.9%、98.2%、100%,出水各项指标均符合循环水补充水水质要求;且通过5.5h抗冲击实验结果显示,整体工艺具有较强的抗冲击能力。

Based on the integral hydraulic model test of SHANGHAI CHANGQIAO waterwork s water-transport pumping station,some research on the hydraulic characteristics of the pressurized forbay has been done in the paper.

本文基于上海长桥自来水厂改造工程送水泵站整体水力模型试验,对有压前池的水力特性进行了研究,研究的主要内容如下: 1、无导流措施的有压前池在不同供水组合及不同机组开机组合条件下的水力特性,并分析了流态较差的原因; 2、加设导流墩后有压前池的水力特性,以及加设导流墩流态改善的原因; 3、有压前池进气临界条件的试验研究; 4、水泵进气以后水泵性能的讨论。

In this paper, two kinds of uniflow hydrocyclone's spin movement are caused by bar vertex ban inlet setting. Its performance prediction is based on CFD analysis and a mass of test. By FLUENT application and selecting the RSM model, CFD analysis is performed on 66mm returned flow hydrocyclone and 70mm uniflow hydrocyclone (cone-shaped, columniform), pressure field and velocity field and inner flow field are gained, this approves the results of CFD analysis accord with experimental results. Based on the results of CFD analysis, the schemes of optimum structure may be raised.

设计的两种直流式水力旋流器内的自旋运动是由新型涡流板入口结构引起的,它的性能预测是基于数值计算和大量的实验,通过利用Fluent流体动力学软件,针对旋流器实验样机的主体结构形式,基于RSM模型对内部流场的压力分布、速度分布和流体流动情况,对66mm返流式水力旋流器和70mm直流式水力旋流器进行了模拟分析,为水力旋流器的结构优化设计提供了借鉴。

The structure of database of hydraulic model with excellent cavitation characteristic and the design process of the database are completely described, and the building of illustrational database of the single-stage pump and multi-stage pump were presented.

完整描述了高汽蚀性能水力模型库的结构及高汽蚀性能水力模型的设计过程,建立了单级泵和多级泵高汽蚀性能水力模型库。

Calculated flux distribution of the upfeed system in the household hot water heating.

介绍了分户式热水供暖系统的水力工况原理,通过分析分户供暖系统的水力特点,应用不等温降的管网水力平差的计算方法,建立了分户供暖管网系统水力分析的数学模型,并应用该模型对工程中习惯采用的下供下回式分户热水供暖系统进行了分析,编制了水力分析软件。

Introduced the principles of hydrodynamics in the household hot water heating system,Analyzed characteristics of hydrodynamics in the household hot water heating system,using unequal temperature reduction hydraulic balance method,established hydraulic analysis mathematics model for household hot water heating system.Using the model analyzed the upfeed system of household hot water heating in engineering.

介绍了分户式热水供暖系统的水力工况原理,通过分析分户供暖系统的水力特点,应用不等温降的管网水力平差的计算方法,建立了分户供暖管网系统水力分析的数学模型,并应用该模型对工程中习惯采用的下供下回式分户热水供暖系统进行了分析,编制了水力分析软件。

This research reveals that dynamic action is the root reason for soil water-erosion, and that law of conservation of mass and energy is the basic principle of soil erosion, and that the coexistence of erosion and sediment is a universal rule of soilwater-erosion.

根据力学和物质与能量原理,对土壤水力侵蚀这一自然地理现象从哲学的高度进行分析,认为水动力作用是土壤水力侵蚀的根本原因;物质与能量守恒是土壤水力侵蚀的基本法则;侵蚀与沉积并存是土壤水力侵蚀的普遍规律。

New box design with durable 0.5 inch (13 mm) paving skin Vertically-adjusting mold mount for precise leveling of mold to machine Telescoping end sections with 12 inches (305 mm) of width variation on each side are available Standard paving depth is zero to 24 inches (610 mm)Edge slump adjustment Hydraulic Vertical Hinged Sideplates, self-contained inside the mold for track clearance Split, pressure-compensated sideplates Folding side plate wings for transporting without removing Pivoting mold mounting beam to eliminate stress points Self-supported TA is hydraulically driven with 3.5 inch (89 mm) ACME screws for up to a six inch (152 mm) crown Front and rear top T-bar on mold for attaching accessories and structural integrity Inserts are bolted together with front and rear alignment pins for easy mold assembly New vibrator mounting tube attaches to T-bar on mold – Vertical vibrator lift – Rear lubrication system with grease zerks accessible from the work bridge New strike-off – Mounted on paver frame T-rail, independent of the mold – New modular design with wedge lock system for ease in changing widths – 10 inches (254 mm) of hydraulic height adjustment – Hydraulic crown adjustment Spreader plow mounted to paver frame T-rail, optional auger available Tamper bar optional

与耐久性的新的箱子设计铺精密水准测量的0.5英寸(13 mm)皮肤垂直调整的模子登上模子用机器制造挤撞与12英寸(305 mm)的末端部分在每边的宽度变异是可利用的标准铺的深度是零对24英寸(610 mm)边缘暴跌调整水力垂直的取决于的Sideplates,独立性在轨道清除分裂的模子里面,折叠运输的pressure-compensated sideplates旁边板材翼没有去除在轴上旋转的模子架置射线消灭重音点Self-supported TA水力驾驶与3.5英寸(89 mm)由六英寸(152 mm)冠决定的尖端螺丝在前后冠上在模子的T酒吧附有的辅助部件并且结构正直插入物与容易的模子汇编新的振荡器架置管随员T酒吧的定位销一起在前后被闩上在模子–垂直的振荡器推力与油膏zerks的–后方润滑系统容易接近从新工作的桥梁触击–在摊铺机框架足迹,模子的独立登上了与楔子锁系统的–新的模块设计在改变的宽度的舒适的– 10英寸(254 mm)水力高低调整–水力冠调整分布器犁登上了对摊铺机框架足迹,任意任意木钻可利用的堵塞器的酒吧

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The reasons of iron ions content overproof in grade Ⅱ desalting water system,such as variation water quality,contamination of regenerant , operation adjustment of pretreatment system and switching operation of bed were discussed.

对二级脱盐水系统中铁离子含量超标的原因,如来水水质发生波动、再生剂受到污染、预处理系统操作调整、床体运行切换等进行了论述。

You were hired to drum up new business, so go and do it.

公司雇你招徕新业务,你就做你的事好了。

Who is in possession of this?

这是谁的?