Daily Precipitation from Water Budget Continuity Equation Solution

STEP 0: Pre-Calculation Summary
Formula Used
Precipitation = Daily Surface Outflow+Daily Seepage Outflow+Daily Lake Evaporation+Increase in Lake Storage in a Day+Daily Transpiration Loss-Daily Surface Inflow-Daily Groundwater Inflow
P = Vos+Vog+EL+ΔSL+TL-Vis-Vig
This formula uses 8 Variables
Variables Used
Precipitation - (Measured in Meter) - The Precipitation refers to the primary water input to the hydrologic cycle and is evaluated for all water budget calculations.
Daily Surface Outflow - (Measured in Cubic Meter per Second) - The Daily Surface Outflow refers to the amount of water that exits a system, such as a reservoir, lake, or river, through surface channels on a daily basis.
Daily Seepage Outflow - (Measured in Cubic Meter per Second) - The Daily Seepage Outflow refers to the amount of water that escapes from a system, such as a dam, canal, or reservoir, through porous materials like soil or rock, on a daily basis.
Daily Lake Evaporation - (Measured in Meter) - The Daily Lake Evaporation refers to the amount of water that evaporates from the surface of a lake over the course of a single day.
Increase in Lake Storage in a Day - (Measured in Meter) - The Increase in Lake Storage in a Day refers to the net gain in the volume of water stored in a lake over a 24-hour period.
Daily Transpiration Loss - (Measured in Meter) - The Daily Transpiration Loss refers to the amount of water that plants lose through the process of transpiration over the course of a single day.
Daily Surface Inflow - (Measured in Cubic Meter per Second) - The Daily Surface Inflow refers to the amount of water that flows into a system, such as a reservoir, lake, or river, from surface sources on a daily basis.
Daily Groundwater Inflow - (Measured in Cubic Meter per Second) - The Daily Groundwater Inflow refers to the amount of groundwater that enters a specific system, such as a sewer system or a water body, on a daily basis.
STEP 1: Convert Input(s) to Base Unit
Daily Surface Outflow: 2 Cubic Meter per Second --> 2 Cubic Meter per Second No Conversion Required
Daily Seepage Outflow: 4 Cubic Meter per Second --> 4 Cubic Meter per Second No Conversion Required
Daily Lake Evaporation: 1958 Millimeter --> 1.958 Meter (Check conversion ​here)
Increase in Lake Storage in a Day: 70 Millimeter --> 0.07 Meter (Check conversion ​here)
Daily Transpiration Loss: 22 Millimeter --> 0.022 Meter (Check conversion ​here)
Daily Surface Inflow: 3 Cubic Meter per Second --> 3 Cubic Meter per Second No Conversion Required
Daily Groundwater Inflow: 5 Cubic Meter per Second --> 5 Cubic Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
P = Vos+Vog+EL+ΔSL+TL-Vis-Vig --> 2+4+1.958+0.07+0.022-3-5
Evaluating ... ...
P = 0.0500000000000007
STEP 3: Convert Result to Output's Unit
0.0500000000000007 Meter -->50.0000000000007 Millimeter (Check conversion ​here)
FINAL ANSWER
50.0000000000007 50 Millimeter <-- Precipitation
(Calculation completed in 00.020 seconds)

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Coorg Institute of Technology (CIT), Coorg
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Hydrological Continuity Equation Calculators

Daily Surface Outflow from Lake
​ LaTeX ​ Go Daily Surface Outflow = Precipitation+Daily Surface Inflow+Daily Groundwater Inflow-Daily Seepage Outflow-Daily Lake Evaporation-Increase in Lake Storage in a Day-Daily Transpiration Loss
Daily Surface Inflow into Lake
​ LaTeX ​ Go Daily Surface Inflow = Daily Seepage Outflow+Daily Surface Outflow+Daily Lake Evaporation+Increase in Lake Storage in a Day+Daily Transpiration Loss-Precipitation-Daily Groundwater Inflow
Daily Groundwater Inflow
​ LaTeX ​ Go Daily Groundwater Inflow = Daily Surface Outflow+Daily Seepage Outflow+Daily Lake Evaporation+Increase in Lake Storage in a Day+Daily Transpiration Loss-Precipitation-Daily Surface Inflow
Daily Seepage Outflow
​ LaTeX ​ Go Daily Seepage Outflow = Precipitation+Daily Groundwater Inflow+Daily Surface Inflow-Daily Surface Outflow-Daily Lake Evaporation-Increase in Lake Storage in a Day-Daily Transpiration Loss

Daily Precipitation from Water Budget Continuity Equation Formula

​LaTeX ​Go
Precipitation = Daily Surface Outflow+Daily Seepage Outflow+Daily Lake Evaporation+Increase in Lake Storage in a Day+Daily Transpiration Loss-Daily Surface Inflow-Daily Groundwater Inflow
P = Vos+Vog+EL+ΔSL+TL-Vis-Vig

What is Water-Budget Continuity Equation?

In hydrology, a water budget or balance equation can be used to describe the flow of water in and out of a system. A water budget is an accounting of all the water that flows into and out of a project area. This area can be a wetland, a lake, or any other point of interest.

How to Calculate Daily Precipitation from Water Budget Continuity Equation?

Daily Precipitation from Water Budget Continuity Equation calculator uses Precipitation = Daily Surface Outflow+Daily Seepage Outflow+Daily Lake Evaporation+Increase in Lake Storage in a Day+Daily Transpiration Loss-Daily Surface Inflow-Daily Groundwater Inflow to calculate the Precipitation, The Daily Precipitation from Water Budget Continuity Equation formula is defined as the form of water from the atmosphere by condensation from atmospheric water vapor and fall under gravity. Precipitation is denoted by P symbol.

How to calculate Daily Precipitation from Water Budget Continuity Equation using this online calculator? To use this online calculator for Daily Precipitation from Water Budget Continuity Equation, enter Daily Surface Outflow (Vos), Daily Seepage Outflow (Vog), Daily Lake Evaporation (EL), Increase in Lake Storage in a Day (ΔSL), Daily Transpiration Loss (TL), Daily Surface Inflow (Vis) & Daily Groundwater Inflow (Vig) and hit the calculate button. Here is how the Daily Precipitation from Water Budget Continuity Equation calculation can be explained with given input values -> 7E+6 = 2+4+1.958+increase_in_lake_storage+0.022-3-5.

FAQ

What is Daily Precipitation from Water Budget Continuity Equation?
The Daily Precipitation from Water Budget Continuity Equation formula is defined as the form of water from the atmosphere by condensation from atmospheric water vapor and fall under gravity and is represented as P = Vos+Vog+EL+ΔSL+TL-Vis-Vig or Precipitation = Daily Surface Outflow+Daily Seepage Outflow+Daily Lake Evaporation+Increase in Lake Storage in a Day+Daily Transpiration Loss-Daily Surface Inflow-Daily Groundwater Inflow. The Daily Surface Outflow refers to the amount of water that exits a system, such as a reservoir, lake, or river, through surface channels on a daily basis, The Daily Seepage Outflow refers to the amount of water that escapes from a system, such as a dam, canal, or reservoir, through porous materials like soil or rock, on a daily basis, The Daily Lake Evaporation refers to the amount of water that evaporates from the surface of a lake over the course of a single day, The Increase in Lake Storage in a Day refers to the net gain in the volume of water stored in a lake over a 24-hour period, The Daily Transpiration Loss refers to the amount of water that plants lose through the process of transpiration over the course of a single day, The Daily Surface Inflow refers to the amount of water that flows into a system, such as a reservoir, lake, or river, from surface sources on a daily basis & The Daily Groundwater Inflow refers to the amount of groundwater that enters a specific system, such as a sewer system or a water body, on a daily basis.
How to calculate Daily Precipitation from Water Budget Continuity Equation?
The Daily Precipitation from Water Budget Continuity Equation formula is defined as the form of water from the atmosphere by condensation from atmospheric water vapor and fall under gravity is calculated using Precipitation = Daily Surface Outflow+Daily Seepage Outflow+Daily Lake Evaporation+Increase in Lake Storage in a Day+Daily Transpiration Loss-Daily Surface Inflow-Daily Groundwater Inflow. To calculate Daily Precipitation from Water Budget Continuity Equation, you need Daily Surface Outflow (Vos), Daily Seepage Outflow (Vog), Daily Lake Evaporation (EL), Increase in Lake Storage in a Day (ΔSL), Daily Transpiration Loss (TL), Daily Surface Inflow (Vis) & Daily Groundwater Inflow (Vig). With our tool, you need to enter the respective value for Daily Surface Outflow, Daily Seepage Outflow, Daily Lake Evaporation, Increase in Lake Storage in a Day, Daily Transpiration Loss, Daily Surface Inflow & Daily Groundwater Inflow and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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