Waterworks Calculations 为 PC

下载 Waterworks Calculations 为 PC

写的 - 写的 - V PUGAZHENTHI

  • 发布日期: 2020-12-13
  • 类别: Education
  • 下载: Free
  • 当前版本: 3.2
  • 文件大小: 28.71 MB
  • 兼容性: Windows 11/Windows 10/8/7/Vista

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如何下载和安装 Waterworks Calculations 在你的PC和Mac上


检查兼容的 PC 应用程序或替代品


应用 下载 评分 开发人员
Waterworks Calculations 获取应用程序或替代品 ↲ 6
4.50
V PUGAZHENTHI

或按照以下指南在PC上使用 :



选择你的电脑版本:

  1. Windows 10
  2. Windows 11

软件安装要求:

步骤1:下载PC和Mac的Android模拟器

可直接下载。下载如下:

  1. Nox »
  2. Bluestacks »

步骤2:在PC或Mac上安装模拟器


第3步: Waterworks Calculations 对于 个人计算机 - Windows 7/8/8.1/10/11

现在,打开已安装的模拟器应用程序并查找其搜索栏。一旦找到它,请键入 Waterworks Calculations 在搜索栏并按搜索。点击 Waterworks Calculations应用程序图标。一个 窗口 Waterworks Calculations 在Play商店或应用程序商店将打开并且它将在您的模拟器应用程序中显示商店。现在,按下安装按钮并像在iPhone或Android设备上一样,您的应用程序将开始下载。现在我们都完成了。
你会看到一个名为“所有应用程序”的图标。 点击它,它会带你到一个包含所有已安装应用程序的页面。 你应该看到 图标。点击它并开始使用该应用程序。


获取适用于 PC 的兼容APK


下载 开发人员 评分 当前版本
下载 APK for PC » V PUGAZHENTHI 4.50 3.2


下载 Waterworks Calculations 对于Mac OS (Apple)

下载 开发人员 评论 评分
Free 对于Mac OS V PUGAZHENTHI 6 4.50

功能和说明

Fluid Flow Calculator : contains 94 Calculators for calculating flow in Weirs,Channels,Pipes,Water works and Civil Engineering parameters. - Available in Metric ( SI ) and Imperial Units ( USCS ) • Capillary Rise • Viscosity • Kinematic Viscosity • Hydrostatic Pressure • Pressure Head Offered as in-App purchase : • Velocity Head • True Velocity Head • Specific Energy Head • Head Loss (Bernoulli Equation) • Total Energy - Elemental Volume of Fluid • Total Head of Flowing Fluid • Average Velocity of Flow • Summation of all Forces (X direction) • Froude Number • Reynolds Number • Weber Number • Head Loss due to Friction • Head Loss due to Friction (Darcy-Weisbach Formula) • Chezy Velocity • Chezy Coefficient • Manning Flow Velocity • Manning Flow Velocity using Pipe Diameter • Flow Rate (Manning Formula) • Head Loss due to Friction (Manning Formula) • Pipe Diameter (Manning Formula) • Mean Flow Velocity (Hazen-Williams) • Mean Flow Velocity - Pipes Flowing Full (Hazen-Williams) • Fluid Flow Rate (Hazen-Williams) • Head Loss due to Friction (Hazen-Williams) • Pipe Diameter (Hazen-Williams) • Head Loss across a sudden enlargement of Pipe Diameter (Bernoulli Equation & Archer Equation) • Head Loss due to Gradual Conical Enlargement • Head Loss across a sudden contraction of Pipe • Head Loss across a sudden contraction of Pipe (Brightmore Equation) • Head Loss - Pipe Fittings • Loss Coefficient • Orifice Flow Rate • Coefficient of Contraction • Initial Velocity of Fluid Jets • Gage Pressure at Tube Entrance (Conical Tubes) • Velocity of Wave in a Pipe (Water Hammer) • Internal Pressure in Pipe • Stress on Pipe Material • Section Factor • Critical Depth of Flow - Open Channel Flow • Force - Hydraulic Jump • Rate of Change of Momentum - Hydraulic Jump • Head Loss - Hydraulic Jump • Stress on Pipe due to Temperature Change • Movement in Length of Pipe due to Temperature Change • Resultant Force on Bend in Pipe • Elevation Difference between Headwater and Tailwater (Entrance and Exit Submerged) • Velocity of Flow in Culvert (Entrance and Exit Submerged) • Elevation Difference between Headwater and Tailwater (Entrance Submerged/Unsubmerged & Free Exit) • Velocity of Flow in Culvert (Entrance Submerged/Unsubmerged & Free Exit) • Flow Rate - Open Channel Flow • Average Velocity - Rectangular Channels • Critical Depth - Rectangular Channels • Flow Rate - Rectangular Channels • Discharge of Fluid per Unit Length - Rectangular Channels • Minimum Specific Energy - Rectangular Channels • Average Velocity - Triangular Channels • Critical Depth - Triangular Channels • Flow Rate - Triangular Channels • Average Velocity - Parabolic Channels • Critical Depth - Parabolic Channels • Flow Rate - Parabolic Channels • Average Velocity - Trapezoidal Channels • Critical Depth - Trapezoidal Channels • Flow Rate - Trapezoidal Channels • Minimum Specific Energy - Trapezoidal Channels • Area of Cross Section - Circular Channels • Critical Depth - Circular Channels • Top Width - Circular Channels • Flow Rate - Circular Channels • Flow Rate - Rectangular Weir • Flow Rate - Triangular Weir (Notch Angle of 90 degrees) • Flow Rate - Triangular Weir (Notch Angle of 60 degrees) • Flow Rate - Triangular Weir (Notch Angle of 30 degrees) • Flow Rate - Trapezoidal Weir • Flow Rate - Broad Crested Weir • Quantity of Sediment transported as Bed Load (Schoklitsch Formula) • Evaporation Rate (Meyer Equation) • Wind Factor • Peak Discharge (Rational Formula) • Rainfall Intensity (Steel Formula) • Flow Rate - Groundwater (Darcy's Law) • Fire Demand Rate • Flow Rate - Gravity Well (Dupuit Formula) • Flow Rate - Artesian Well • Economic Pipe Diameter • Flow Rate - Venturi Flow Meter • Power obtained from Water Flow



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