Net Outflow through Cross-section given respective Salinities Solution

STEP 0: Pre-Calculation Summary
Formula Used
Net Outflow through the Cross Section = (Inflow in the Wedge*Salinity at the Location 2)/Salinity at the Location 1
Q1 = (QW*S2)/S
This formula uses 4 Variables
Variables Used
Net Outflow through the Cross Section - (Measured in Cubic Meter per Second) - Net Outflow through the Cross Section is the volume flowing through that cross section.
Inflow in the Wedge - (Measured in Cubic Meter per Second) - Inflow in the Wedge influencing the net outflow through the cross section.
Salinity at the Location 2 - Salinity at the Location 2, Salinity is the saltiness or amount of salt dissolved in a body of water, called saline water.
Salinity at the Location 1 - Salinity at the Location 1, Salinity is the saltiness or amount of salt dissolved in a body of water, called saline water.
STEP 1: Convert Input(s) to Base Unit
Inflow in the Wedge: 45 Cubic Meter per Second --> 45 Cubic Meter per Second No Conversion Required
Salinity at the Location 2: 11 --> No Conversion Required
Salinity at the Location 1: 9 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Q1 = (QW*S2)/S --> (45*11)/9
Evaluating ... ...
Q1 = 55
STEP 3: Convert Result to Output's Unit
55 Cubic Meter per Second --> No Conversion Required
FINAL ANSWER
55 Cubic Meter per Second <-- Net Outflow through the Cross Section
(Calculation completed in 00.020 seconds)

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Coorg Institute of Technology (CIT), Coorg
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Fresh Water River Flow given Net Outflow through Cross-section
​ LaTeX ​ Go Fresh Water River Flow = Net Outflow through the Cross Section-Inflow in the Wedge
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​ LaTeX ​ Go Inflow in the Wedge = Net Outflow through the Cross Section-Fresh Water River Flow
Net Outflow through Cross-section
​ LaTeX ​ Go Net Outflow through the Cross Section = Fresh Water River Flow+Inflow in the Wedge

Net Outflow through Cross-section given respective Salinities Formula

​LaTeX ​Go
Net Outflow through the Cross Section = (Inflow in the Wedge*Salinity at the Location 2)/Salinity at the Location 1
Q1 = (QW*S2)/S

What is Inflow and Outflow of Water?

Inflow is adding water to the different aspects of the hydrologic system. Consequently, outflow is the removal of water from the hydrological cycle. Inflow adds water to different aspects of the hydrologic cycle, returning water storage to an even level.

What is the definition of Salt Wedging?

Salt wedging in an estuary is the process by which a distinct layer of saltwater forms below a layer of freshwater due to differences in density. Salt wedging is the result of weak tidal currents that cannot mix the saltwater with the freshwater, thus creating a halocline.

How to Calculate Net Outflow through Cross-section given respective Salinities?

Net Outflow through Cross-section given respective Salinities calculator uses Net Outflow through the Cross Section = (Inflow in the Wedge*Salinity at the Location 2)/Salinity at the Location 1 to calculate the Net Outflow through the Cross Section, The Net Outflow through Cross-section given respective Salinities formula is defined as discharge to surface water bodies, evapotranspiration, pumping, spring flow, discharge through seepage faces along hillslopes, and any other water losses from the system. Net Outflow through the Cross Section is denoted by Q1 symbol.

How to calculate Net Outflow through Cross-section given respective Salinities using this online calculator? To use this online calculator for Net Outflow through Cross-section given respective Salinities, enter Inflow in the Wedge (QW), Salinity at the Location 2 (S2) & Salinity at the Location 1 (S) and hit the calculate button. Here is how the Net Outflow through Cross-section given respective Salinities calculation can be explained with given input values -> 55 = (45*11)/9.

FAQ

What is Net Outflow through Cross-section given respective Salinities?
The Net Outflow through Cross-section given respective Salinities formula is defined as discharge to surface water bodies, evapotranspiration, pumping, spring flow, discharge through seepage faces along hillslopes, and any other water losses from the system and is represented as Q1 = (QW*S2)/S or Net Outflow through the Cross Section = (Inflow in the Wedge*Salinity at the Location 2)/Salinity at the Location 1. Inflow in the Wedge influencing the net outflow through the cross section, Salinity at the Location 2, Salinity is the saltiness or amount of salt dissolved in a body of water, called saline water & Salinity at the Location 1, Salinity is the saltiness or amount of salt dissolved in a body of water, called saline water.
How to calculate Net Outflow through Cross-section given respective Salinities?
The Net Outflow through Cross-section given respective Salinities formula is defined as discharge to surface water bodies, evapotranspiration, pumping, spring flow, discharge through seepage faces along hillslopes, and any other water losses from the system is calculated using Net Outflow through the Cross Section = (Inflow in the Wedge*Salinity at the Location 2)/Salinity at the Location 1. To calculate Net Outflow through Cross-section given respective Salinities, you need Inflow in the Wedge (QW), Salinity at the Location 2 (S2) & Salinity at the Location 1 (S). With our tool, you need to enter the respective value for Inflow in the Wedge, Salinity at the Location 2 & Salinity at the Location 1 and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Net Outflow through the Cross Section?
In this formula, Net Outflow through the Cross Section uses Inflow in the Wedge, Salinity at the Location 2 & Salinity at the Location 1. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Net Outflow through the Cross Section = Fresh Water River Flow+Inflow in the Wedge
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