Fruit Growers Network

Network Overview

The Utah Climate Center and USU Extension’s Integrated Pest Management program have partnered to provide climate based web utilities to assist orchardists to model insect, disease frost potentials, and to monitor drought stress within orchards. Weather data is collected from a network of 29 mission tailored weather stations located in orchards in 8 Utah counties (Cache, Box Elder, Weber, Davis, Utah, Washington, and Juab) and Canyon county in Idaho. Stations have research grade sensors that measure solar radiation, wind, pressure, relative humidity, air and soil temperature, precipitation, soil moisture, and simulated bud and leaf temperatures.


Reference ET is calculated by the ASCE standardized reference ET equation (ASCE-EWRI 2005) - often referred to as the Penman-Monteith method. This method calculates an estimated reference ET for both short crops (similar to clipped grass) (ETo) and tall crops (similar to full-cover alfalfa) (ETr). The calculations are made utilizing individual site level information (latitude, longitude, and altitude) and measured variables (air temperature, humidity, wind, and solar radiation). Since actual ET (Eta) is both difficult and expensive to measure, a crop ET (ETc) can be calculated by the user as the product of ETo or ETr. Obtaining crop coefficients for specific crops and growth stages can be obtained from a variety of sources. The choice of whether to utilize ETo or ETr largely depends on the overall crop height.


Daily, hourly and current conditions data as well as the web utilities are available to orchardists and the public from this website.


The web utility, Utah TRAPs (Timing Resource and Alert for Pest), includes pest management information primarily for tree fruit pests, including codling moth, peach twig borer, western cherry fruit fly, and fire blight. After selecting a geographic location, the pest of concern, and the current date, the user is then provided with a summary of the pest phenology (% moth flight and % egg hatch) as well as management options based on current degree day values (degree days are a unit of heat accumulation).


In addition to the pest and disease prediction tools, there is an alert system for frost and critical disease potential. Orchardists who choose to enroll for a cell text or email notification when conditions that require action are reached. Participants can customize an alert profile, selecting the weather stations to monitor, alert triggers, and the frequency and mode of the messaging. This is a free service.

What is Measured

Air Temperature:

Sensor 1 at 236": E+E EE08 platinum resistance thermometer housed in a non-aspirated radiation shield

Sensor 2 at 78": Apogee ST-110 thermistor housed in a non-aspirated radiation shield

Sensor 3 at 39": Apogee ST-110 thermistor housed in a non-aspirated radiation shield

Relative Humidity:

E+E EE08 capacitive polymer chip sensor housed in a non-aspirated radiation shield

Solar Radiation:

Apogee SP110 silicon chip pyranometer

Precipitation (wet):

TE 525 tipping bucket

Wind:

Sensor at 275": 4-blade propeller and vane sensor

Pressure:

Apogee SB-100 silicon captive sensing

Soil moisture:

Sensor at 10”: Campbell Scientific CS616 time domain reflectrometry

Soil temperature:

Sensor at 10”: Acclima TDT time domain transmissometry

Surface Temperature:

Apogee SF-110 thermistors (bud & leaf)

Surface Wetness:

Decagon LWS heated capacitave wetness detector

Download Variables
Variable Units Statistic Type Description
datint observation interval
netname UCC network name
site character station location
siteID numeric station ID
timestamp datetime datetime date and time(MST)
AirT_canopy_Avg °F average air temperature in canopy
Td_Avg °F average dew point temperature
RH_Avg % sample relative humidity
soilM10_i % sample soil moisture 10 inch depth
SoilT10_i °F sample soil temperature 10 inch depth
SolarW_Avg watts/m2 average short wave solar radiation
WindS_Avg mph average wind speed
WindD_Avg degrees average wind direction
WindS_Max mph maximum wind direction
LWSpct_wet % pct simulated leaf wetness
Rain inch sum 10 minute precipitation
RainHr inch sum precipitation in past hour
RainDay inch sum daily precipitation to timestamp
LeafT_1 °F average simulated leaf temperature
LeafT_2 °F average simulated leaf temperature
LeafT_3 °F average simulated leaf temperature
LeafT_4 °F average simulated leaf temperature
LeafT_5 °F average simulated leaf temperature
BudT_1 °F average simulated bud temperature
BudT_2 °F average simulated leaf temperature
BudT_3 °F average simulated bud temperature
BudT_4 °F average simulated leaf temperature
BudT_5 °F average simulated bud temperature
site_pressure kPa average pressure
sealevel_pressure kPa average sea level corrected pressure
Variable Units Statistic Type Description
datint observation interval
netname UCC network name
site character station location
siteID numeric station ID
timestamp datetime datetime date and time (MST)
AirT_abovecanopy_Avg °F average air temperature in canopy
AirT_Max °F maximum air temperature in canopy
AirT_Min °F minimum air temperature in canopy
SolarW_Avg watts/m2 average short wave solar radiation
SolarMJ MJ total short wave solar radiation
WindS_Avg mph average wind speed
WindD_Avg degrees average wind direction
WindD_SD degrees standard deviation wind direction
WindS_Max mph maximum wind speed
EA_Avg kPa average simulated leaf wetness
RH_Max % maxium relative humidity
RH_Min % minimum relative humidity
TD_Avg °F average dew point temperature
Td_Max °F maximum dew point temperature
Td_Min °F minimum dew point temperature
LWSpct_wet % total simulated leaf wetness
Rain inch total rainfall
SoilM10_i % average soil moisture 10 inch depth
SoilT10_Avg °F average soil temperature 10 inch depth
ETo inch total evapotranspiration short reference
ETr inch total evapotranspiration tall reference
BudT_Min °F minimum simulated leaf temperature
BudT_TMn time time of minimum
LeafT_Min °F minimum simulated leaf temperature
LeafT_TMn time time of minimum
site_pressure kPa average pressure
sealevel_pressure kPa average sea level corrected pressure
Variable Units Statistic Type Description
datint observation interval
netname UCC network name
site character station location
siteID numeric station ID
timestamp datetime datetime date and time (MST)
BattV_Min volts minimum battery voltage
AirT_abovecanopy_Avg °F average air temperature in canopy
AirT_canopy_Max °F maximum air temperature in canopy
AirT_canopy_TMx datetime time of max air temperature in canopy
AirT_caonpy_Min °F minimum air temperature in canopy
AirT_canopy_TMn datetime time of min air temperature in canopy
SolarMJ MJ total short wave solar radiation
WindS_Avg mph average wind speed
WindD_Avg degrees average wind direction
WindD_SD degrees standard deviation wind direction
WindS_Max mph maximum wind speed
WindS_TMx datetime time of wind speed maximum
EA_bar_Avg kPa average simulated leaf wetness
RH_Max % maxium relative humidity
RH_Min % minimum relative humidity
TD_Avg °F average dew point temperature
Td_Max °F maximum dew point temperature
Td_TMx datetime time of Td_Max
Td_Min °F minimum dew point temperature
Td_TMn datetime time of Td_Min
LWSpct_wet % total simulated leaf wetness
Rain inch total rainfall
SoilM10_i % average soil moisture 10 inch depth
SoilT10_i °F sample soil temperature 10 inch depth
SoilT10_i_Max °F maximum soil temperature 10 inch depth
SoilT10_i_TMx datetime time of SoilT10_i_Max
SoilT10_i_Min °F minimum soil temperature 10 inch depth
SoilT10_i_TMn datetime time of SoilT10_i_Min
ETo inch total evapotranspiration short reference
ETo_7day inches total 7-day Eto total
ETr inch total evapotranspiration tall reference
ETr_7day inches total 7-day ETr total
BudT_Min °F minimum simulated leaf temperature
BudT_TMn time time of minimum
LeafT_Min °F minimum simulated leaf temperature
LeafT_TMn time time of minimum
site_pressure kPa average pressure
sealevel_pressure kPa average sea level corrected pressure