Homer High Tunnel Data Comparisons,

Similar documents
High Tunnel Temperature Observations 2000

A program of the National Center for Appropriate Technology

TESTS OF ADSIL COATING

Mechanical System Redesign. Dedicated Outdoor Air System. Design Criteria

Full Season Comparison of Weather Based Smart Controllers

Where life thrives. Why a Growing Dome? Wellbeing. Stability. Safety. Made in America

Case Study of an Innovative HVAC System with Integral Dehumidifier. Florida Solar Energy Center Cocoa, Florida

Calculated Energy Savings for Disabling Anti- Sweat Door Heat on Glass Display Case Doors

A N A L Y S I S 1 : View of Geisinger Gray s Woods Ambulatory Care Campus from Gray s Woods Boulevard. Personal Photo.

Understanding Water Use by Plants in a Cloche System - Gardening

John Basbagill, Sarah Russell-Smith, Cris Wise CEE 243

INTEGRATION OF DEMAND RESPONSE INTO TITLE 20 FOR HOT FOOD HOLDING CABINETS

Three Rivers Park District Administration Center Rain Garden

Growing in Movable High Tunnels Reviewing five years of experience at Massaro Community Farm, Woodbridge, CT

2016 Tillage Radish Planting Date x Seeding Rate Trial

Sugarbeets Enjoy Warm Winter

SMALL MOTOR CONTROLLERS

A Dual Setpoint Controller for Combination Service Boilers

EXCELSIOR SINHGAD COLLEGE OF ENGINEERING, PUNE PAPER PRESENTATION

TEACHER BACKGROUND INFORMATION Water Cycle

These are non-living factors that influence the performance of a crop. Ex. Climate, weather, soil type, soil fertility, etc.

EL-USB-1-LCD Temperature Data Logger with LCD

Research Report: Effects of early season heating, low tunnels, and harvest time on ginger yields in NH, 2017 Introduction. Zingiber officinale

Sensor Cloud User Manual

Villa Bagatelle Technical Report

EL-USB-1-LCD Temperature Data Logger with LCD

Services Department B September 10, 2007

Performance of Solar Water Heating Systems in the United States

Growmaster Procom Precision Control, Multiple Zone Capability, Easy Operation

UTRED day Logger with display

VARIABLE REFRIGERANT FLOW FOR LODGING

Vegetarian Newsletter

ASHRAE JOURNAL ON REHEAT

1. COOL ROOFS. What is a Cool Roof

Identifying the SIX Critical Control Points in High Tunnel Production

Hawaii Agriculture Research Center -1- Vegetable Report 2. Hawaii Agriculture Research Center Vegetable Report 2 January 2000

Growing for Your Market

Hot Alamo USDA zone 8

SOLAR PASSIVE DESIGN CASE STUDY K & D S HOME

Hoop Houses. Beth LaShell Fort Lewis College February 2, 2012

1,500 operational Years of Icing on Wind Turbines A Long Term Study

THERMO BUTTON HYGRO BUTTON The smallest temperature and humidity loggers in the world!

Primocane-fruiting Blackberry Cane Management

Data-logger and alarm

Case Study City of Mt. Gambier - Caroline Landfill Leachate Pump System with Monitoring/Telemetry Operations

Tightening Up Greenhouse Energy Efficiency

Jeremy Barker Plotkin Simple Gifts Farm

Vegetarian Newsletter

Heat loss: the Reason for Heating

Design and Optimization of Domestic Solar Dryer

EL-USB-2-LCD+ High Accuracy Humidity, Temperature and Dew Point Data Logger with LCD

Using super oxygenated water in high tunnel tomato and strawberry production

CITY OF CHICAGO GREEN ROOF TEST PLOT STUDY

ORDERING INFORMATION FEATURES EL-WIN-USB (CONTROL SOFTWARE) Maximum Speci cations Typical Minimum Unit

3.10 LAND USE SETTING PROJECT SITE EXISTING LAND USE DESIGNATIONS AND ZONING. General Plan Land Use Designations.

Alfalfa Winterkill Winter of

Next Generation Passivhaus Archives

LogTag Recorders TRED30-16R. Temperature Recorder with Display and 30 Day Statistics Memory. Product User Guide

Cold And Sustainable Poinsettia Production

High Tunnels & Organic Transition

ASHRAE Standard 90.1 Energy Requirements Wrap-Around Heat Pipes

Capital Area Ag Report August 21, 2014

Cool Season Vegetables and Strawberry Response to Phosphates Research and Observations over the last Ten Years

Maximizing Vine Crop production with Proper Environmental Control

Season Extension with November Seeded Cool Crops- Doug and Valerie Kinsman

The Top 10 Worst Performing Alarm Systems in Industry

INCIDENCE OF XANTHOMONAS CAMPESTRIS PV CAROTAE ON CARROT SEED IRRIGATED BY DRIP OR SPRINKLER IN CENTRAL OREGON, 2004

2017 Industrial Cannabidiol Hemp Report

MILK DEVELOPMENT COUNCIL

Raspberries have an exceptionally. Raspberries: A New Greenhouse Crop. A New Greenhouse Crop. crop cultivation. By Meriam Karlsson and Jeffrey Werner

SEASONAL CHANGES to Expect With Your Orchid

LogTag Recorders Ltd TRED30-16R. Temperature Recorder with Display and 30 Day Statistics Memory. Product User Guide

SOIL SOLARIZATION TO ELIMINATE DISEASES FROM GREENHOUSES

Fall & Winter Veggie workshop, July 12, Instructor: Chris Konieczka, Clackamas Community College. A Harvest For All Seasons

How to Read the South Plains Evapotranspiration Information

HOBO U14 Data Logger User Manual

THE ROLE OF GREEN ROOFS IN URBAN DRAINAGE A REVIEW OF THE CASE FROM AUGUSTENBORG ECO-CITY

Yield response of wheat varieties to sowing time 2011.

PLANTING RECOMMENDATIONS

Natural Ventilation for Poultry

Persimmon Homes Thames Valley Date received: 2 nd April week date(major): 2 nd July 2014 Ward: Nascot

USB Multi Function Dataloggers. RHT30 Humidity/Temperature Datalogger. TH30 Dual Temperature Datalogger

GRAIN STORAGE AERATION PRESENTED BY: BRENT BLOEMENDAAL AERATION EXPERT

LESSON CLUSTER 9 Explaining Condensation and the Water Cycle

WINTER HARVEST RESEARCH PROJECT

High Tunnel Winter Greens Production

Energy and Peak Power Reduction from Air Misting Products Applied to Commercial Condensing Units in Hot and Humid Climates.

EasyLog Data Logger Series

SOLAR WATER DISTILLATION BY USING WATER IN THE INNER GLASS EVACUATED TUBES

Fruit Size Management Guide Part 2

Week 1 Day 1-2 (combine) Thermal Energy

WeatherLink for Alarm Output Addendum

Greenhouse Structures: More than a high tunnel

Specifications Minimum Typical Maximum Unit

Nest Learning Thermostat Summer 2012 Savings

Assessing Wheat Crop Water Use

High Tunnel Hanging Baskets, 2010 A Partnership grant funded by NESARE Judson Reid, Principal Investigator Cornell Vegetable Program

LESSON NINE: How Plants Grow and Respond to Grazing

What's new in LogTag Analyzer 2.8

EL-OEM-3 OEM Packaged Voltage Data Logger

Transcription:

This project was funded by a grant from the Western Sustainable Agriculture Research and Education Program. For more information on Western SARE see westernssare.org. Rachel Lord Alaska Stems

1 Executive Summary This report summarizes the data collected under a Western Sustainable Agriculture Research and Education Grant (FW12-046). Complete details of the study can be found through the SARE Project Report on their website: (http://mysare.sare.org/mysare/projectreport.a spx?do=viewproj&pn=fw12-046). High tunnels are generally considered to add two to four weeks to a growing season, however there has been little research done in coastal Alaska to ground-truth or better understand this assumption largely developed in the Lower 48 states. Climate in the Homer-area is dominated by cool and wet summers, with dramatic microclimatic differences in temperature and precipitation at varying elevations. Air and soil temperature and relative humidity data were collected hourly inside and outside of 10 high tunnels around Homer, Alaska. Based on our data, we do not see support for the idea that high tunnels alone in this area add two to four weeks of growing season. Season extension activities should likely be concentrated in the fall, and regardless some additional heat source or other temperature control methods (low tunnels, row cover, etc) likely must be employed to protect crops from cold temperatures. Moisture control in the fall is also a challenge that must be addressed. Our data do suggest, however, that high tunnels alone provide a great amount of season enhancement increasing the growing degree days an average of 2,000 over field conditions. In our coastal, sub-arctic climate this is a huge advantage and collective experiences have anecdotally confirmed faster growth rates and increased yields of certain crops. Farmers at higher elevations will likely see greater positive impacts from double-poly tunnels, however added heat retention is likely greater and when using additional heat double-poly tunnels are likely advantageous regardless of the elevation.

2 Data Analysis All temperature and RH data were uploaded using the HOBOware Pro software (v. 3.7.1). Data were then exported to Excel spreadsheets and trimmed for temperatures taken prior to or after the data loggers were set-up. All data summaries and analyses were done within Microsoft Excel 2010. Raw data from each tunnel is available as part of this report, and on the high tunnels website (described below, http://www.akhightunnels.org/resources/temp-rh-study.html). Growing Degree Days (GDD) Growing degree days (GDD) were calculated for each location in the study where data were available, both inside and outside of the high tunnels. We calculated GDD for spinach, using a maximum temperature threshold of 80F and a lower threshold of 32F. The base temperature was set at 32F. Therefore, the equation used to calculate GDD was: GDD = ((T max + T min )/2) T base, where T max = 80F if the maximum temperature was above 80F and T min = 32F if the minimum temperature was below 32F. Daily Minimum/Maximum Temperatures and Differences In order to better visualize the long time series of data, we looked at daily minimum and maximum temperatures inside and outside of each high tunnel. From these data, we calculated the difference in maximum and minimum temperature between inside and outside at each site by subtracting the outside temperature from the inside temperature. Thus, if the difference is positive, the high tunnel was warmer than outside. If negative, the high tunnel site was cooler than the corresponding outside site. Close-up Views In order to compare the finer resolution of collected data, we chose 48-hours, from September 17-18, 2014, to compare high tunnel and outside temperatures and relative humidity (RH). We also graphed soil temperatures both inside and outside of each high tunnel over the 24-hour period of September 18, 2014. Spring 2014 To take a closer look at the potential for spring season extension in local high tunnels, we compared inside and outside minimum temperatures at each location from March 1 May 31, 2014. On each graph we included two reference lines a solid line indicating a hard frost (27F), and a dashed line indicating a light frost (31F).

3 Table of Contents Executive Summary... 1 Table of Contents... 3 High Tunnel: CR (High/Single)... 4 High Tunnel: EG (High/Single)... 8 High Tunnel: SP (High/Single)... 12 High Tunnel: KD (High/Double)... 16 High Tunnel: LM (Low/Double)... 20 High Tunnel: RL (Low/Single)... 24 High Tunnel: RM (Low/Single)... 28 High Tunnel: TA (Low/Single)... 32 High Tunnel: TB (Low/Double)... 36 High Tunnel: BJ (Low/Double)... 39 GDD Comparisons... 43

4 High Tunnel: CR (High/Single) Location: East Skyline Dr., Homer, Alaska Elevation: 1440 Size: 35 x 60 Glazing: single with polycarb endwalls Ventilation Methods: roll up sides and opening doors on the ends Inside Air Dates: 6/24/13-10/10/14 Inside Soil Dates: 6/24/13-11/8/13 Outside Air Dates: 6/24/13-10/10/14 Outside Soil Dates: none recovered Notes: Outside soil logger couldn t be located during the fall/winter 2014 recovery efforts. Growing Degree Days:

5 Daily Min & Max Temperatures: Temperature Differences:

6 48-hour Close-Up: Soil Temperatures, September 18, 2014:

7 Spring 2014:

8 High Tunnel: EG (High/Single) Location: Ohlson Mtn., Homer, Alaska Elevation: 1295 Size: 26 x 96 Glazing: single with plastic endwalls Ventilation Methods: Roll-up sides, only ever 2 or so. Large cut in glazing during part of summer 2013. Inside Air Dates: 6/23/13-12/18/14 Inside Soil Dates: 6/23/13-11/2/13 Outside Air Dates: 6/23/13-12/18/14 Outside Soil Dates: 6/23/13-11/2/13 Notes: Inside soil logger was misplaced for some period of time. Growing Degree Days:

9 Daily Min & Max Temperatures: Temperature Differences:

10 48-hour Close-Up: Soil Temperatures, September 18, 2014:

11 Spring 2014:

12 High Tunnel: SP (High/Single) Location: East Skyline Drive, Homer Elevation: 1044 Size: 30 x 72 Glazing: single Ventilation Methods: box fans hanging and open end walls. Inside Air Dates: 6/28/13-11/8/13; Inside Soil Dates: 6/28/13-7/27/14 Skip to 8/5/14-10/10/14 Outside Air Dates: 6/28/13-11/8/13; Outside Soil Dates: 6/30/13-3/18/14 Skip to 8/5/14-10/10/14 Notes: Corrupted data between 11/9/13 and 8/4/14. I have no idea what happened, but unfortunately we have no data for the air temperature or relative humidity for these dates either inside or outside. Growing Degree Days: Unable to calculate, as we didn t have air temperature data for springtime in either 2013 or 2014.

13 Daily Min & Max Temperatures:

14 Temperature Differences:

15 48-hour Close-Up: Soil Temperatures, September 18, 2014: Spring 2014: Unable to calculate, as we didn t have air temperature data for springtime in either 2013 or 2014.

16 High Tunnel: KD (High/Double) Location: Skyline Dr., Homer, Alaska Elevation: 1273 Size: 30 x 72 Glazing: double with polycarbonate end walls and an insulated pony wall on the north side. Ventilation Methods: large ventilation fans at one end in the gable and 2 sm. Vents in other end wall with two additional 24 circular fans. Inside Air Dates: 6/23/13-10/10/14 Inside Soil Dates: 6/23/13-3/11/14 Outside Air Dates: 6/23/13-10/10/14* Outside Soil Dates: 6/23/13-3/11/14 Notes: At some point in early-february 2014, the outside air logger came out of the solar shield and was on the ground until it was recovered in October. Growing Degree Days: Because the air temperature logger fell onto the ground during the late-winter 2014, the outside air data were not considered valid for analysis. In order to compare inside and outside GDD, here we used the outside data from HT:EG as they are both at high elevations in Homer.

17 Daily Min & Max Temperatures: Temperature Differences:

18 48-hour Close-Up: Soil Temperatures, September 18, 2014:

19 Spring 2014:

20 High Tunnel: LM (Low/Double) Location: Rangeview Dr., Homer, Alaska Elevation: 285 Size: 30 x 72x Glazing: double with glass end walls Ventilation Methods: fan midway overhead, garage doors on each end to open and solar gable vents on both ends. Inside Air Dates: 1/27/14-10/28/14 Inside Soil Dates: 6/7/13-2/23/14 Outside Air Dates: 6/7/13-2/23/14 Outside Soil Dates: 6/7/13-2/23/14 Notes: The outside soil logger was placed in a stand of dense spruce trees. Soil temperature likely colder than in comparable growing area to inside the high tunnel. Growing Degree Days:

21 Daily Min & Max Temperatures: Temperature Differences:

22 48-hour Close-Up: Soil Temperatures, September 18, 2014:

23 Spring 2014:

24 High Tunnel: RL (Low/Single) Location: Shellfish Ave., Homer, Alaska Elevation: 430 Size: 30 x 72 Glazing: single with plastic endwalls Ventilation Methods: Roll-down sides, passive gable end vent in one end wall, large fan at other end wall, 2-4 box fans inside along northern wall. Inside Air Dates: 6/23/13-12/18/14 Inside Soil Dates: 6/23/13-11/2/13 Outside Air Dates: 6/23/13-12/18/14 Outside Soil Dates: 6/23/13-11/2/13 Notes: Soil loggers were accidentally not replaced after the first winter. Growing Degree Days:

25 Daily Min & Max Temperatures: Temperature Differences:

26 48-hour Close-Up: Soil Temperatures, September 18, 2014:

27 Spring 2014:

28 High Tunnel: RM (Low/Single) Location: Bayview Rd., Homer, Alaska Elevation: 403 Size: 20 x 92 Glazing: single with polycarbonate endwalls Ventilation Methods: Passive through end walls (no roll up/down sides) Inside Air Dates: 12/18/13-10/28/14 Inside Soil Dates: 6/7/13-2/23/14 Outside Air Dates: 12/18/13-10/28/14 Outside Soil Dates: 6/7/13-2/23/14 Notes: The outside soil logger was set on a slight southern slope, possibly creating warmer temperatures than on the flat. Growing Degree Days:

29 Daily Min & Max Temperatures: Temperature Differences:

30 48-hour Close-Up: Soil Temperatures, September 18, 2014:

31 Spring 2014:

32 High Tunnel: TA (Low/Single) Location: South of Anchor Point near the Old Sterling Highway Elevation: 428 Size: 30 x 72 Glazing: single Ventilation Methods: roll up sides, end vents with passive solar arms, manually open end doors. Inside Air Dates: 6/23/13-10/19/14 Inside Soil Dates: 6/23/13-3/11/14 Outside Air Dates: 6/23/13-10/19/14 Outside Soil Dates: 6/23/13-3/11/14 Notes: Growing Degree Days:

33 Daily Min & Max Temperatures: Temperature Differences:

34 48-hour Close-Up: Soil Temperatures, September 18, 2014:

35 Spring 2014:

36 High Tunnel: TB (Low/Double) Location: Meadow Drive, Homer Elevation: 118 Size: 30 x 72 Glazing: double with polycarbonate end walls Ventilation Methods: gable end vents and doors on either end wall. Inside Air Dates: 6/28/13-11/8/13; Inside Soil Dates: not recovered Outside Air Dates: 6/28/13-11/8/13; Outside Soil Dates: not recovered Notes: Data compromised by misplacement and internal logger corruption for soil temperatures at this site. Growing Degree Days:

37 Daily Min & Max Temperatures: Temperature Differences:

38 48-hour Close-Up: Soil Temperatures, September 18, 2014: No soil temperatures available at this site. Spring 2014:

39 High Tunnel: BJ (Low/Double) Location: South of Anchor Point, off of the Old Sterling Highway Elevation: 384 Size: 30 x 72 Glazing: double Ventilation Methods: passively vent by opening end wall doors. Inside Air Dates: 6/23/13-2/25/15 Inside Soil Dates: 6/23/13-3/11/14 Outside Air Dates: 6/23/13-2/25/15 Outside Soil Dates: not recovered Notes: Didn t recover the outside soil temperature logger. Growing Degree Days:

40 Daily Min & Max Temperatures: Temperature Differences:

41 48-hour Close-Up: Soil Temperatures, September 18, 2014:

42 Spring 2014:

43 GDD Comparisons High Elevation GDD Comparisons (Single vs Double) Low Elevation GDD Comparisons (Single vs Double)

44 Anchor Point, Low Elevation GDD Comparisons (Single vs Double)