Waterworks Calculations PC 용

다운로드 Waterworks Calculations PC 용

에 의해 게시 에 의해 게시 V PUGAZHENTHI

  • 출시일: 2020-12-13
  • 카테고리: Education
  • 다운로드: Free
  • 현재 버전: 3.2
  • 파일 크기: 28.71 MB
  • 호환성: Windows 11/Windows 10/8/7/Vista

다운로드 ⇩
평점:

4.5/5
4.5
보낸 사람 6 평점

스크린 샷

       


다운로드 및 설치 방법 Waterworks Calculations 귀하의 PC 및 Mac에서


호환되는 PC 앱 또는 대안 확인


다운로드 평점 개발자
Waterworks Calculations 앱 또는 대안 다운로드 ↲ 6
4.50
V PUGAZHENTHI

또는 아래 가이드를 따라 PC에서 사용하십시오. :



PC 버전 선택:

  1. Windows 10
  2. Windows 11

소프트웨어 설치 요구 사항:

1 단계 : PC 및 Mac 용 Android 에뮬레이터 다운로드

직접 다운로드 가능합니다. 아래 다운로드 :

  1. Nox »
  2. Bluestacks »

2 단계 : PC 또는 Mac에 에뮬레이터 설치


3 단계 : Waterworks Calculations PC의 경우 - Windows 7/8 / 10 / 11

설치 한 에뮬레이터 애플리케이션을 열고 검색 창을 찾으십시오. 일단 찾았 으면 Waterworks Calculations 검색 막대에서 검색을 누릅니다. 클릭 Waterworks Calculations응용 프로그램 아이콘. 의 창 Waterworks Calculations Play 스토어 또는 앱 스토어의 스토어가 열리면 에뮬레이터 애플리케이션에 스토어가 표시됩니다. Install 버튼을 누르면 iPhone 또는 Android 기기 에서처럼 애플리케이션이 다운로드되기 시작합니다. 이제 우리는 모두 끝났습니다.
"모든 앱 "아이콘이 표시됩니다.
클릭하면 설치된 모든 응용 프로그램이 포함 된 페이지로 이동합니다.
당신은 아이콘을 클릭하십시오. 그것을 클릭하고 응용 프로그램 사용을 시작하십시오.


PC 용 호환 APK 받기


다운로드 개발자 평점 현재 버전
다운로드 PC 용 APK » V PUGAZHENTHI 4.50 3.2


다운로드 Waterworks Calculations Mac OS의 경우 (Apple)

다운로드 개발자 리뷰 평점
Free Mac OS의 경우 V PUGAZHENTHI 6 4.50

기능 및 설명

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



기능 및 설명

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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