soil-water budgets considers all forms of soil moisture for a given region indicates how much...

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Soil-water budgets Soil-water budgets Considers all forms of soil Considers all forms of soil moisture for a given region moisture for a given region Indicates how much moisture is Indicates how much moisture is available for plants available for plants

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Page 1: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

Soil-water budgetsSoil-water budgets

Considers all forms of soil moisture for a Considers all forms of soil moisture for a given regiongiven region

Indicates how much moisture is available Indicates how much moisture is available for plantsfor plants

Page 2: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

Components of soil-water budgetComponents of soil-water budget

Precipitation input (PRECIP)Precipitation input (PRECIP) Actual evapotranspiration (ACTET)Actual evapotranspiration (ACTET) Potential evapotranspiration (POTET)Potential evapotranspiration (POTET) Deficit (DEFIC)Deficit (DEFIC) Surplus (SURPL)Surplus (SURPL) Soil-moisture storage (Soil-moisture storage (ΔΔSTRGE)STRGE)

Page 3: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

EvapotranspirationEvapotranspiration

EvaporationEvaporation The change of liquid water into water vaporThe change of liquid water into water vapor

TranspirationTranspiration A cooling mechanism in plantsA cooling mechanism in plants

Evapotranspiration is therefore the release Evapotranspiration is therefore the release of water vapor from plants in order to cool of water vapor from plants in order to cool themthem

Evapotranspiration is highest on hot and Evapotranspiration is highest on hot and sunny dayssunny days

Page 4: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

Potential EvapotranspirationPotential Evapotranspiration

The amount of water that would be The amount of water that would be evapotranspired under specific evapotranspired under specific temperature and moisture conditionstemperature and moisture conditions

This measurement ignores whether water This measurement ignores whether water is available for transpiration or notis available for transpiration or not

It is the DEMAND!It is the DEMAND!

Page 5: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

INPUTS OUTPUTS

Page 6: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

Deficit Deficit

Will occur if the requirements for Will occur if the requirements for potential evapotranspiration are not potential evapotranspiration are not metmet

SurplusSurplus

Will occur if the requirements for Will occur if the requirements for potential evapotranspiration are met potential evapotranspiration are met and there is extra moisture availableand there is extra moisture available

Page 7: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

Soil moisture storageSoil moisture storage

Amount of moisture available to plantsAmount of moisture available to plants Change storage = amount of water taken Change storage = amount of water taken

from ST to help meet PE when P is lackingfrom ST to help meet PE when P is lacking

Page 8: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

Water balance techniqueWater balance technique

Precipitation (P) vs potential Precipitation (P) vs potential evapotranspiration (PE)evapotranspiration (PE)

P = AE + S + STP = AE + S + ST PE = AE + DPE = AE + D AE = amount of water actually used by AE = amount of water actually used by

plants so if water is in good supply AE = plants so if water is in good supply AE = PE…. IF WATER IS LACKING THEN AE PE…. IF WATER IS LACKING THEN AE = P + ST= P + ST

Page 9: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants
Page 10: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

POTET

Page 11: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

Determining Determining water budgetswater budgets

For each month For each month the following can the following can be plottedbe plotted PRECIPPRECIP POTETPOTET ACTETACTET

Page 12: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants
Page 13: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

Water BalanceWater Balance

Plants will not use more than PEPlants will not use more than PE

Once PE is used up plants will take it from Once PE is used up plants will take it from STST

Page 14: Soil-water budgets  Considers all forms of soil moisture for a given region  Indicates how much moisture is available for plants

1952 Mississippi

J F M A M J JL A S O N D

PE 1 1 1.2 2.3 4.6 7.1 7.3 6.2 4.3 1.5 1 0.5

P 3.5 3.1 5.5 2.3 3.2 0.3 2.1 2.7 1.2 0.3 2.7 4.6

P-PE 2.5 2.1 4.3 0 -1.4 -6.8 -5.2 -3.5 -3.1 -1.2 1.7 4.1

ST 6 6 6 6 4.6 0 0 0 0 0 1.7 5.8

∆ST 0 0 0 0 -1.4 -4.6 0 0 0 0 1.7 4.1

AE 1 1 1.2 2.3 4.6 4.9 2.1 2.7 1.2 0.3 1 0.5

D 0 0 0 0 0 2.2 5.2 3.5 3.1 1.2 0 0

S 2.5 2.1 4.3 0 0 0 0 0 0 0 0 0

1952 IS IT A WET OR A DRY YEAR?