My latest ON COURSE video production for TurfNet.com is live. In this edition I discuss "sodding for Poa annua control". This is a technique I used for many years managing Penn A-4 green surfaces and successfully keeping Poa annua invasion at bay! View video HERE As always thanks to my supporting sponsor Tanto Irrigation
Welcome to ONCOURSETurf! This blog is about anything and everything involved with Golf Course Management. It is the personal blog of Kevin J. Ross, CGCS - retired superintendent, Country Club of the Rockies - Vail, Colorado - Agronomic Services, ONCOURSETurf - Host of ON COURSE - TurfNetTV - General Turfgrass Management and Golf Nut. Follow Along and Enjoy! Twitter @oncourseturf
Showing posts with label greens construction. Show all posts
Showing posts with label greens construction. Show all posts
Thursday, March 4, 2021
Sunday, February 2, 2020
TurfNet TV - Latest Video is Live...
In my latest ONCOURSETurf video production for TurfNet.com I discuss an aerification technique I developed for sand based system greens. This technique helps eliminate the surface softness, which occurs during the aerification process to the green surface. To view this video, please click HERE As always, thanks to my supporting sponsor www.tantoirrigation.com and thanks for watching!
Saturday, November 23, 2019
Winter Injury on Golf Greens...
Recently, I came across this article I wrote in 2006. Even though it has some age, there still is some pertinent information concerning winter injury to turfgrass systems.
The cancer of turf (Turfgrass maintenance)
Although more is known about winter damage than in years past, there’s no guarantee turfgrass will survive the season unscathed.
September 2006 - Kevin J. Ross, ONCOURSETurf, LLC
One of the most difficult times for a golf course superintendent in Northern regions of the country is that anxious period in the spring when turfgrass conditions reveal how well the turf came through the winter.
As springtime approaches, superintendents are faced with difficult decisions concerning the “when’s,” “if’s” and “how’s” of ice and snow removal, free water removal, green cover use and many other decisions that might dictate how well the golf season starts.
When a course suffers severe winterkill, income suffers, reputation suffers, and most of all, superintendents suffer. Sometimes they get pink slips. Although the affected areas are eventually fixed or will recover, winter damage truly can be the cancer of turf.
Today’s terminology
Many individuals use the term “winter damage,” which covers various mechanisms of turfgrass damage. Basically, winter damage is defined as any injury that occurs during the winter. Winter damage can be inflicted by winter turfgrass fungi (snow molds and cool-season pythiums), crown hydration/dehydration, ice encasement damage (anoxia), direct low-temperature kill and desiccation. Of these, only true winter diseases and desiccation are understood, while crown hydration/dehydration and ice cover damage still aren’t completely understood. Crown hydration and ice damage have many questions associated with the “when’s” and “why’s.” Why this type of injury occurs is partly understood.
Many individuals use the term “winter damage,” which covers various mechanisms of turfgrass damage. Basically, winter damage is defined as any injury that occurs during the winter. Winter damage can be inflicted by winter turfgrass fungi (snow molds and cool-season pythiums), crown hydration/dehydration, ice encasement damage (anoxia), direct low-temperature kill and desiccation. Of these, only true winter diseases and desiccation are understood, while crown hydration/dehydration and ice cover damage still aren’t completely understood. Crown hydration and ice damage have many questions associated with the “when’s” and “why’s.” Why this type of injury occurs is partly understood.
In contrast, when it happens is the question to which no one really knows an answer. That’s what makes winter damage so difficult to combat. Some years, superintendents remove snow and ice from their greens, and the resulting turf conditions are perfect. The following year, the same blueprint is followed, and the results are far different with major turf damage.
How it happens
The mechanisms that cause crown hydration (also known as freeze injury) are thought to occur when hydrated plants become subject to rapid temperature decreases. Crown hydration – or dehydration, which is more accurate – happens from inside the plant tissue (intracellular) and from outside the plant tissue (extracellular). Crown dehydration from an intracellular nature is believed to happen when the water around the cells inside the plant suddenly freezes. This draws the water out of the cell, causing dehydration and results in the death of the plant. This is the type of injury that’s widely believed to cause most turf damage during the winter.
The mechanisms that cause crown hydration (also known as freeze injury) are thought to occur when hydrated plants become subject to rapid temperature decreases. Crown hydration – or dehydration, which is more accurate – happens from inside the plant tissue (intracellular) and from outside the plant tissue (extracellular). Crown dehydration from an intracellular nature is believed to happen when the water around the cells inside the plant suddenly freezes. This draws the water out of the cell, causing dehydration and results in the death of the plant. This is the type of injury that’s widely believed to cause most turf damage during the winter.
There’s certain debate about when this actually happens during the winter. James Ross, a researcher at the Prairie Turfgrass Research Centre in Olds, Alberta, believes the plant must break dormancy and begin to hydrate before the freezing process. Ross believes the transition from winter to spring is the most critical for damage to occur because of plant dehardening.
“Generally, when the plant begins to break dormancy, it takes on water, which hydrates the crowns and reduces the simple sugars that protect the crown through the winter and make it much more susceptible,” he says. “Others believe this can happen anytime during the winter, when some of the wacky weather takes place.”
Extracellular crown dehydration happens similarly, except it’s believed that ice forms outside the plant and pulls water out of the plant by osmosis. This results in a dehydration of the plant and might result in the death of the plant.
For years, winter damage (such as true ice encasement damage) has been associated with a gas build-up that occurs just under the ice surface. Under prolonged ice cover, oxygen is depleted from the plant, which is still under very low levels of respiration and microbe activity. This results in an accumulation of toxic gases that might cause the death of the plant. Recently, it’s been debated whether or not ice encasement damage is a major cause of turf damage.
Superintendents also have been taught the 60/90-day rule for many years. This rule states that Poa annua can survive under ice cover for as long as 60 days, while bentgrass can survive as long as 90 days. This rule is based on 40-year-old research and is being revisited.
Cold tolerance
So, what have the industry learned to date? There seems to be one factor, although not completely understood, which might have the greatest influence on turfgrass overwintering. Plant hardening, or hardiness, can be classified as the antifreeze for turf and might be one of the most influential mechanisms determining winter survival.
So, what have the industry learned to date? There seems to be one factor, although not completely understood, which might have the greatest influence on turfgrass overwintering. Plant hardening, or hardiness, can be classified as the antifreeze for turf and might be one of the most influential mechanisms determining winter survival.
This process begins in the late summer and continues into the early winter. The plant goes through the hardening stage by internally adjusting to cold temperatures and by storing carbohydrates. During this period, moisture content decreases in the plant, leaving it with a higher sugar content. This higher sugar (antifreeze) content allows the plant to survive the freezing process better.
It’s believed one of the major differences in winter survival between creeping bentgrasses and Poa annua is their ability to harden and deharden differently. To begin with, bentgrass has the ability to reach a much lower level of cold hardiness than Poa annua. The internal plant mechanisms of bentgrass allow it to harden off at a much lower percentage of moisture content in the crown tissues than Poa annua.
An additional problem with Poa annua is it tends to deharden much faster than creeping bentgrass during the transition from winter to spring. This makes Poa annuamore vulnerable to freeze-type damage.
In a two-year study conducted at the Prairie Turfgrass Research Centre, it was determined that in mid-March, Poa annua’s cold tolerance had dropped to 8.6 degrees Fahrenheit while the creeping bentgrass was cold hardy to -20.2 degrees Fahrenheit (Tompkins, 2000). The same study also found that both grass species eventually had the same cold tolerance by mid-April. These findings lend credence to the notion that most damage occurs during late winter through early spring, when dehardening occurs.
The best line of defense for preventing damage might be a combination of practices that all increase turfgrass health. Raising the cutting height and proper fertilization timing might be the two most important cultural practices. Both will help produce and store carbohydrates in the plant, which will increase the “antifreeze effect.” Another method of defense that’s often overlooked is to try to prolong cold-temperature hardiness by protecting turf with increasing snowcover or the use of covers. However, this can be tricky.
Hard to pinpoint
Many people in the industry have believed that if you have bentgrass versus Poa annua, there’s no need to worry about winter damage because of bentgrass’ greater cold tolerance. Well, we certainly know this isn’t always true. For example, Gerry White, former golf course superintendent of Sebago Lakes Resort’s 18-hole championship golf course in Casco, Maine, was quite surprised to find damage – for the first time ever – to his 10-year-old Poa-free Providence greens one April.
Many people in the industry have believed that if you have bentgrass versus Poa annua, there’s no need to worry about winter damage because of bentgrass’ greater cold tolerance. Well, we certainly know this isn’t always true. For example, Gerry White, former golf course superintendent of Sebago Lakes Resort’s 18-hole championship golf course in Casco, Maine, was quite surprised to find damage – for the first time ever – to his 10-year-old Poa-free Providence greens one April.
“In the 10 years since the course has been built, we had never had any damage to the greens,” White says. “They had been perfect every year. Suddenly one year, bang! I get hit pretty hard and lost almost all of my 16th green.”
The explanation? White has none, but he theorizes:
“We did have a crazy winter weatherwise, but every winter seems to be crazy,” he says.
So why this one year? No one really knows for sure. When turfgrass suffers winter damage, superintendents and those from the world of academia can only theorize what transpired to result in turf loss. That’s what makes this issue so difficult. If you don’t really know how it was caused, then it’s difficult to find a solution.
Finding a solution, if there is one, can only be accomplished by years of superintendents’ experiences and university research. John Roberts, Ph.D., from the University of New Hampshire, has been looking at winter damage for about 20 years and still hasn’t found the miracle cure. Other universities also are conducting work concerning winter damage. This includes research by Dave Minner, Ph.D., and Nick Christians, Ph.D., from Iowa State University and Darrell Tompkins and James Ross of the Prairie Turfgrass Research Centre.
Although winter damage is still a difficult phenomenon to understand, we certainly know more now than in years past. However, the knowledge that we’ve gained doesn’t ensure winter turfgrass survival. Many superintendents have headed into the winter preparing and conditioning the turf the best they can only to get nailed the following spring with winter damage. That’s why many believe winterkill is truly the cancer of turfgrass.
Thursday, September 20, 2018
Greens Construction Amendments......
When it comes to USGA greens
construction, the addition of rootzone organic amendments can certainly make a
major difference during the grow-in/establishment phase. Many times, superintendents are
under tremendous pressure to establish new greens as fast as possible and get
them ready for play. The use of amendments is a great way to help accomplish
this. One organic amendment, Milorganite, has been one of the most used and
successful amendments for greens construction for many years. I’ve personally
used Milorganite as an amendment in greens construction throughout my career
and have seen excellent results. I would personally not perform any greens
construction and grow-in without the supplemental use of Milorganite.
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| Adding an organic amendment such as Milorganite during greens construction can enhance establishment dramatically. |
Research was conducted at the
University of Wisconsin-Madison using various organic fertilizer amendments
showed some very interesting results. All plots treated with amendments showed
more rapid grow-in than the control plot. The study also found that adding
additional organic materials to the rootzone mix increased firmness and
stability, improved water retention and water infiltration rates, enhanced
color, increased rooting depth and reduced phosphorous deficiency symptoms.
As you can see in the graph below, Milorganite
amended plots rated numerically higher or, at minimum, equal to the highest
treatment, in all categories. Adding Milorganite to the original off-site mix
or as an on-site supplement increased the establishment and performance of the new greens construction plots.![]() |
| This photo shows the incredible rooting and establishment of a USGA green I constructed a few years ago with the use of Milorganite. |
As fall golf course renovation hits full stride, consider adding an organic amendment such as Milorganite to your rootzone mix for superior grow-in and establishment of USGA greens construction.
Wednesday, June 20, 2018
TurfNet TV - Latest Video is Live..
My latest ON COURSE video for TurfNet.com is live. In this video I discuss the use of Tyvek as a print media for construction/renovation/irrigation plans. I have personally used Tyvek the past few years on various projects and find it an excellent source of print media. Take a look. Click HERE to view. As always, thanks to my supporting sponsor Tanto Irrigation
Sunday, May 13, 2018
TurfNetTV - Latest Video is Live...
My latest ON COURSE video for TurfNet is live. In this video I discuss how to take great before and after photos on the golf course of project work. Documenting your work with before and after photos is very important. Follow these few simple steps and your before and after photos will become special. To view video click HERE
Thanks to Tanto Irrigation for supporting my video work. Visit their website HERE
Thanks to Tanto Irrigation for supporting my video work. Visit their website HERE
Thursday, March 1, 2018
Management of Free Water on Springtime Turf..
There is no question that early spring can be a nervous time of year for golf course management teams. Finding out what the ravages of winter has done to the golf course can make or break the upcoming season. One management technique I believe is sometimes overlooked in late-winter/early-spring is the management of free water on the turf surface. With soils still frozen, water doesn't infiltrate into the soil profile, so it just sits or pools on the surface. Positive drainage is much more limited this time of year due to frost formation, snow/ice dams, even turf species and height of cut can cause issues. Through my career I have seen turf damage on multiply occasions that happens during this time of year.
Managing this free water is something everyone should be in tune with. How is it done? It's primarily about knowing the temperature and sun intensity of the day to predict the melt. If the forecast tells you it could be a melt/runoff day, then you should be prepared. You also should alert your staff that it might take working longer hours during this period. Most of this free water doesn't start accumulating until mid-afternoon. It also accumulates at once on all turf surfaces. So with these situations, it's all hands on deck, or should it be, all squeezes in the carts.
I always felt better heading home knowing we had removed all the free water possible off the turf that day. So, keep an eye towards the weather, and get those squeegees ready!
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| The soil around sand based greens can heave significantly more than the green surface, causing a slow surface drainage situation. This is where attention to remove water is needed. |
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| Here you can see how height of cut and/or turf species can pool water, even with positive surface drainage. |
Managing this free water is something everyone should be in tune with. How is it done? It's primarily about knowing the temperature and sun intensity of the day to predict the melt. If the forecast tells you it could be a melt/runoff day, then you should be prepared. You also should alert your staff that it might take working longer hours during this period. Most of this free water doesn't start accumulating until mid-afternoon. It also accumulates at once on all turf surfaces. So with these situations, it's all hands on deck, or should it be, all squeezes in the carts.
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| Another example of how height of cut can slow water movement. |
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| The use of squeegees to remove the meltwater off the turf surface is the best option. |
I always felt better heading home knowing we had removed all the free water possible off the turf that day. So, keep an eye towards the weather, and get those squeegees ready!
Wednesday, October 25, 2017
Special Trip to Bandon Dunes
Recently, I had the opportunity to visit Bandon Dunes to be part of the WinField "Lunch and Learn" educational team. All I can say is, "what a great experience"! Really fell in love with this property! We started the day with our educational seminar for the Bandon staff. Myself, Dr. Doug Soldat, University of Wisconsin, Gary Grigg, Grigg, and Rob Garcia, Winfield United all spoke on various golf course management topics. Roger Henderson, WinField United local sales representative, put on the event and did a wonderful job. It's the first time I have ever been in a conference room that used a wireless signal from my laptop to the projector. Who knows, maybe the days of all those cables will be over soon. It was a great morning of education and the Bandon staff was very interactive.
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| Dr. Doug Soldat, University of Wisconsin, talking Iron Management in turf. |
The group then enjoyed a fabulous lunch prepared by the staff at the Bandon Dunes clubhouse facility. After the great lunch, we headed out on the course to get a private tour of the facility by Jeff Wilson, superintendent of the Bandon Dunes course. I met Jeff just over a year ago at the 2016 Ryder Cup, where we enjoyed the week together. So we piled in the truck and off we went.
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| Jeff Wilson, second from left explains their natural sand topdressing pile. |
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| It was a big treat to spend some time with my Ryder Cup friend and Bandon Dunes course superintendent, Jeff Wilson. |
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| The Team checking out some of the greens contours. |
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| As rugged as its gets! |
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| Love this stuff...who said bunkers had to be manicured? |
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| Spectacular Stuff! |
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| Nothing to say here except...WOW! |
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| The Punch Bowl, a 2.7 acre putting extravaganza! |
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| Bandon Preserve, a Par 3, 13 hole course by Coore/Crenshaw. |
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| What a way to end a spectacular trip! |
Thursday, June 8, 2017
Great Podcast with Dr. Frank Rossi...
This podcast from TurfNet.com with Dr. Frank Rossi is a must listen. Frank chats with my good friend Dan Dinelli, Superintendent at North Shore Country Club and Dr. Roch Gaussoin, University of Nebraska. Dan has been performing his own research for greens construction and performance for almost 20 years at North Shore. His findings and opinions are truly fascinating. If you haven't listened to this podcast and you are in the golf industry, an agronomist, or a golfer, what are you waiting for? Click HERE
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