Hay Storage Systems Southeast Hay Convention John W. Worley.

Slides:



Advertisements
Similar presentations
Chapter 8 Feed Quality and Feed Analysis
Advertisements

Grassland – Part 5 Silage and Hay.  Grass conservation involves the restricting of bacterial growth and other organisms, which would otherwise cause.
CHAPTER 9 Thermal & Moisture Protection
Walls Ron Gatepain constructionsite.
BEEF FEEDLOT FACILITIES
© 2006 ITT Educational Services Inc. CD230 Architectural Design & Drafting: Unit 5 Slide 1 Unit 5 Roofs.
Chapter 3.1 Storm Drainage Sizing. Building Drain & Sewer  Building Drain —That part of the lowest piping of a drainage system that receives the discharge.
Matt Petrie KEPA 119 4/16/09. If there is a situation where a shelter is going to be needed then it should be one of first things to taken care of. People.
Harrigan, Biosystems and Agricultural Engineering, MSU Forage Harvesting and Handling.
INSTALLATION INSTRUCTIONS FOR GERARD METAL SHINGLES
Underlayment for Wood Roofing 4 Recommended Methods of Installation on Solid Sheathing Cedar Shake & Shingle Bureau 1.Use treated shakes or shingles.
1 | WEATHERIZATION ASSISTANCE PROGRAM STANDARDIZED CURRICULUM – December 2012eere.energy.gov Attic Ventilation WEATHERIZATION ENERGY AUDITOR SINGLE FAMILY.
Manure Storage During A Dairy Modernization Robert Wilson WI Department of Agriculture Trade and Consumer Protection Brian J. Holmes University of Wisconsin-Madison.
CONTENTS: What is contour, and why is it important? How can I use it to help my farm designs? What tools can I use to find it? Contours and maps CONTOURS.
Chapter 3.1 Storm Drainage Sizing. Building Drain & Sewer  Building Drain —That part of the lowest piping of a drainage system that receives the discharge.
Storing Forage in Silage Piles Jerry Clark UW Extension Educator Chippewa County Dr. Brian Holmes UW-Extension Dept. Biological Systems Engineering.
Hay Storage Systems Hay Production School John W. Worley.
The other extreme… Hay Moisture Probe Contacts.
Bermudagrass Pasture – 2011 Breakdown of Projected Costs per Acre $243.59/acre.
What is the difference? 1)Digestible energy 2)How much can be eaten 1)Digestible energy 2)How much can be eaten.
Dennis Hancock, PhD. Extension Forage Specialist
Grass conservation. Why do we need to conserve grass?
Maximizing Your Grass Potential Ray Hicks Screven County Extension Coordinator UGA Forage Team Ray Hicks Screven County Extension Coordinator UGA Forage.
Round Bale Hay Storage Costs Brian J. Holmes Professor and Extension Specialist University of Wisconsin- Madison.
CON 4003 Construction Estimating Prof R. V. Locurcio.
Part II: Conserving Forage Dennis Hancock Extension Forage Agronomist Crop and Soil Sciences Dennis Hancock Extension Forage Agronomist Crop and Soil Sciences.
Quantity and Quality Lawton Stewart - Extension Beef Specialist The University of Georgia Lawton Stewart - Extension Beef Specialist The University of.
Baled Silage and Hay Preservatives Dennis Hancock, PhD. Extension Forage Specialist UGA – Dept. of Crop and Soil Sciences Dennis Hancock, PhD. Extension.
Preparing Foundations for Cylinders & ASME Tanks
Economics of Forage Harvest and Storage Systems Forage Harvesters Silos.
Components of Forage Waste: Field curing Harvesting Storage Feeding Harvesting 7-15% loss Harvesting 7-15% loss Field curing 5-25% loss Field curing 5-25%
How to Produce High Quality Hay II: How to cure and handle hay. Dennis Hancock, PhD. Extension Forage Specialist UGA – Dept. of Crop and Soil Sciences.
Lecture 17 Flat Structures. Aeration for Flat Structures Ideally - uniform air flow – "dead zones" –min. of.2 cfm design rate (this is double) –fines.
HVACR416 - Design Heat Loss / Heat Gain Part 1. Why? The primary function of Air Conditioning is to maintain conditions that are… o Conductive to human.
Forage Management Unit for Adults Lesson 1 - Orientation.
How to Produce High Quality Hay II: How to cure and handle hay. Dennis Hancock, PhD. Extension Forage Specialist UGA – Dept. of Crop and Soil Sciences.
VI.Basic Principles of Hay Production and Use Dennis Hancock, PhD. Extension Forage Specialist UGA – Dept. of Crop and Soil Sciences Dennis Hancock, PhD.
Ten Must For a Forage Program Know Animal Nutritional Needs and Forage Options Stage of Pregnancy Stage of Lactation Body Weight of Livestock Animal Age.
Hay Storage Systems Hay Production School John W. Worley.
Forage Utilization and Grazing Management during a Drought Dennis Hancock, PhD. Extension Forage Agronomist Crop and Soil Sciences Dennis Hancock, PhD.
1 Energy Efficient Housing. 2 Why construct energy efficient structures? Bottom Line !!! Money It may save up to 60% of the cost to heat/cool the structure.
Precision Ag in Hay Production Brian Sheffield SOIL 4213.
Forage Conservation. Need for conservation  Feeding during drought or floods  Utilizing surplus forage  Transport of feed.
Making, Storing, and Feeding Round Bale Silage
Location and Type of Greenhouse
Keys to Success with Baleage Dennis Hancock, PhD. Extension Forage Specialist UGA – Dept. of Crop and Soil Sciences Dennis Hancock, PhD. Extension Forage.
Teleconference May 4, 2010 John S. Cundiff, Professor Biological Systems Engineering Virginia Tech 1.
Baled Silage Storage 4-10% loss Baling 2-5% loss Feeding Minimal loss Feeding Wilting 2-5% loss Fewer Losses Accumulate With Each Step End Result: 90%
Managing surplus forage: Producing hay and baled silage Dennis Hancock Extension Forage Specialist UGA – Dept. of Crop and Soil Sciences Dennis Hancock.
This is a placeholder image. To replace either right click and select “change picture” or insert a new picture via the insert menu and crop to size. Images.
Chapter 15 Designing Elevations Height measurements Found on elevations not on floor plans Three main horizontal lines Ground Eave Ridge Overhang Protects.
Provide for the welfare of horses Provide for the safety, health and comfort of human handlers Provide easy access for suppliers, clients Be cost-effective.
Silage and Hay.  Grass conservation involves the restricting of bacterial growth and other organisms, which would otherwise cause spoilage.  This can.
Forage Utilization and Grazing Management during a Drought
Active Solar heating Used for space and or water heating
HARVESTED FORAGES Green Chop and Hay pp
Drafting 2 (Arch) Quiz Review #6 Quiz Review. 1.To anchor a stud wall to the subfloor, carpenters nail through the: Sole plate Header Jamb Joists Quiz.
A calculated approach to improved efficiencies Mark Warren UF IFAS Flagler County Extension.
A Class Project for the Gwinnett Woodworkers Association Louis and Ricky Alexander.
1 | WEATHERIZATION ASSISTANCE PROGRAM STANDARDIZED CURRICULUM – August 2010eere.energy.gov Attic Ventilation WEATHERIZATION ENERGY AUDITOR SINGLE FAMILY.
1 | WEATHERIZATION ASSISTANCE PROGRAM STANDARDIZED CURRICULUM – July 2012eere.energy.gov ROOFING, FLASHING AND ATTIC VENTILATION Roofing, Flashing, and.
Hay Moisture Probe.
5.1.3 Barn, Shelf and Pit These are mostly used for root and tuber crops. Barn and shelf could be suitable for onion & carrot. Barn, shelf and pit are.
Storage and Feeding Economics
Recommended rates for applying organic acid preservatives to hay
HARVESTED FORAGES Green Chop and Hay
Hay Storage Strategies (Loss Reduction) 2017 In-Service Training
Lawton Stewart Regional Forage Training 2009
Hay Moisture Probe.
Reported Number of Days Feeding Hay 140 With the longer growing season in the Southeast, we can do better! We should feed much less than 60 days/year!
Presentation transcript:

Hay Storage Systems Southeast Hay Convention John W. Worley

Storage 5-45% loss Harvesting 7-15% loss Feeding 10-30% loss Field curing 10-25% loss It’s not unusual to see total losses of 70% or greater LOSS ACCUMULATES WITH EACH STEP Slide courtesy of Dennis Hancock

Storage Alternatives Curing –Field Dry –Baleage Packaging –Round Bales Twine Bale Wrap –Square Bales SmallLarge

Alternatives Storage –Square Bales - Barn –Round Bales FieldTarpBarn

Baleage Greater control over harvesting time Excellent quality if moisture level right and no leaks Reduces Nitrate Levels

Baleage Costs more Can get spoilage if ensiling isn’t successful Disposal of Plastic

Square vs. Round Bales

Twine vs. Hay Wrap

Storage Weathered DM Method Depth Loss (in.) (%) Twine Netwrap Solid plastic Shed< Hay Storage Research (Kentucky) Slide courtesy of Dennis Hancock

Hay Storage – Preserving Quality Why build it? How to build it How to use it

Hay Barn Best choice for long-term storage

Hay Barn Enclosed sides – –Better Protection (sun and rain) –Costs about twice as much –Ventilation –High-end hay storage

Tarp Low-cost alternative More Labor Decreased losses in case of fire

Uncovered Lowest Cost - Greatest Losses - Poorest Quality

Tarped Stacks Hay Sheds Hoop Structures Storage Options $1.50 – 2.50 $2.00 – 3.00 $3.50+ Slide courtesy of Dennis Hancock

Bale Storage Comparisons $ % Loss $ % Loss $ % Loss $ % Loss $ % Loss Slide courtesy of Dennis Hancock

Cost of Owning a Building 50 by 100 ft building at $5.00/ square foot ($25,000) (Roof only) –Depreciation $1250 –Interest $1000 –Tax & Ins. $750 –Annual Repairs $125 Total Annual Cost $3125

Benefits of Covered Storage Reduced Dry Matter Loss Improved Nutritional Value Reduced animal refusal Barn can be used for other things when not used for hay (equipment storage)

Dry Matter Losses (%)

Size of Bale Affects Losses Outer 4 to 6 inches is lost Higher percentage of a small bale

Dry Matter Losses (%) As Affected by Bale Size

Digestibility and Palatability Also Affected

Nutritional Losses Start with 1,000-lb bale at 15% moisture

Digestible Matter After Storage (1,000-lb Bale)

Annual Savings on Hay Storage Assumptions –Hay valued at $75/ton (dry matter) –Hay losses reduced by 30% –50 x 100 building (annual cost - $3125) –Storage Capacity tons (wet basis) –Hay stored at 15% moisture

Annual Savings on Hay Storage Dry matter saved - 64 tons - - $4800 Net Savings $1675 What if? –If Digestibility Improved by 5% (Total of 42% Savings) Net Savings - - $3553 –If Hay worth $90/ton, Net Savings - - $4889 –If dry matter loss improved by 50%, (106 tons) Net Savings - - $4825

If You Build A Barn

How Much Should You Store in the Barn? All that you can fit in existing barns All square bales 50 to 75% of crop (feed last cutting first and store outside)

Barn Recommendations Build to meet Southern Building code (80 mph wind) If possible, orient the long axis east and west on open-sided barns Hay storage should be open, especially at the gable end for ventilation Stack bales on end to increase capacity Make sure the eave height (vertical clearance) of barn is sufficient

Rot and Rust on Inside Roof?

Enclosed Gable

Water Loss from Curing Hay 100 tons of hay stored at 16% moisture Dries to 13% moisture 3% of 100 tons = 3 tons of water = 722 gallons Must be removed by ventilation

How much Ventilation? (Enclosed Barn) Larger of the following 2 options: –6” continuous ridge vent –2”/ 10 ft of width For a 50-ft wide building -10” Ridge vent (83 sq. ft of ridge/gable opening for 100- ft long building) Equal area of opening near bottom of walls (Door can serve as part of vent)

Flooring for Square Bales Anything that promotes ventilation under the hay is good (Large rock, pallets,etc. Ideal is a raised floor with air underneath (not always practical) Bottom layer on edge – primarily to keep twine from rotting, but also helps promote ventilation Concrete with vapor barrier underneath and well-drained

If You Store In the Field

Field Storage Recommendations Store on high, well-drained ground Store in open, sunny area Store in rows with flat edges touching and round edges separated (unless tarped) Orient rows North and South Orient rows down slope, not across slope

What’s Right? What’s Wrong?

2 nd Year Outside Hay

Controlling Feeding Waste Losses > 40% Vs. Losses < 7% Slide courtesy of Dennis Hancock

Feeding Losses Method 1 day 7 day ---- % Waste---- Unrolled Ring Slide courtesy of Dennis Hancock

Feeding Losses Item % Waste Cone Ring Trailer Cradle Adapted from: Southern Forages (4 th ed.) and Buskirk et al., J. Anim. Sci. 81: Slide courtesy of Dennis Hancock

QUESTIONS ?