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Showing posts with label winters. Show all posts
Showing posts with label winters. Show all posts

Sunday, February 8, 2015

Muddy forests, shorter winters present challenges for loggers

Stable, frozen ground has long been recognized a logger's friend, capable of supporting equipment and trucks in marshy or soggy forests. Now, a comprehensive look at weather from 1948 onward shows that the logger's friend is melting.

The study, published in the current issue of the Journal of Environmental Management, finds that the period of frozen ground has declined by an average of two or three weeks since 1948. During that time, wood harvests have shifted in years with more variability in freezing and thawing to red pine and jack pine -- species that grow in sandy, well-drained soil that can support trucks and heavy equipment when not frozen.

Jack pine, a characteristic north woods Wisconsin species, is declining, and areas that have been harvested are often replaced with a different species, changing the overall ecosystem.

The study was an effort to look at how long-term weather trends affect forestry, says author Adena Rissman, an assistant professor of forest and wildlife ecology at the University of Wisconsin-Madison. "When my co-author, Chad Rittenhouse, and I began this project, we wanted to know how weather affects our ability to support sustainable working forests. We found a significant decline in the duration of frozen ground over the past 65 years, and at the same time, a significant change in the species being harvested."

"This study identifies real challenges facing forest managers, loggers, landowners, and industry," says Rittenhouse, now an assistant research professor of natural resources and the environment at the University of Connecticut. "Once we understood the trends in frozen ground, we realized how pulling out that issue tugged on economics, livelihoods, forest ecology, wildlife habitat and policy."

Mud can make forests impassable in fall, and even more so after the snow melts in spring, making life difficult for companies that buy standing trees, Rittenhouse says. "Nobody wants to get stuck; you lose time and have to get hauled out or wait for the ground to firm up again."

Shorter winters and uncertainty complicate management for logging companies, Rissman adds. "They often need to plan out their jobs for the next six months or year." The same is true for managers of state and county forests, which typically allow two years for a cut to be completed. "In some cases," she says, "they are going to three-year contracts to give more time to get the timber out."

Even if equipment can traverse muddy roads, their ruts may ruin the road and cause unacceptable erosion. "There is increased attention to rutting on public land, and on private land that is in the state's managed forest program or in a form of sustainable forest certification," says Rissman. "Excessively wet and muddy ground during harvest is a lose-lose-lose for the logger, the landowner and the environment."

The study drew data from weather records from airports, used to model when the ground was frozen; Department of Natural Resources records on harvest levels for various tree species; and interviews with forest managers and loggers.

"People in the forestry industry say this is a big deal; winter is normally the most profitable time," Rissman observes. "It's more and more difficult to make a profit in forestry (with) more loggers (taking) on a lot of debt -- they are heavily mechanized, have heavy labor and insurance expenses, and these costs don't end when they don't have work."

The uncertainty about when and where they can work emerged during an interview with a veteran logger, who is quoted as follows in the study: "When I started in the business ... the typical logger ... would shut down and not do anything for the month or two months that the spring break up would last for. Nowadays, with the cost of equipment, and just the cost of insurance on that equipment alone, you're looking for work almost 12 months out of the year."

The shorter winters seem linked to climate change, Rissman acknowledges. "For many people, climate change is something that happens, or not, in places that are far away, at scales that are difficult to see or understand through personal experience. Here's an example of something we can clearly document, of a trend that is having an impact on how forests are managed, right here at home."


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Thursday, April 24, 2014

Natural variation: Warm North Atlantic Sea encourages extreme winters in U.S. and Europe

The ultimate cold temperature observed across Europe and also the new england of america in recent winters might be partially lower to natural, lengthy-term versions in ocean surface temps, according to a different study released today.

Scientists in the College of California Irvine have proven that the phenomenon referred to as Atlantic Multidecadal Oscillation (AMO) -- an all natural pattern of variation in North Atlantic ocean surface temps that switches between an optimistic and negative phase every 60-70 years -- can impact an atmospheric circulation pattern, referred to as North Atlantic Oscillation (NAO), that influences the temperature and precipitation within the Northern Hemisphere in the winter months.

Once the AMO is within its positive phase and also the ocean surface temps are warmer, the research has proven the primary effect in the winter months would be to promote the negative phase from the NAO which results in "obstructing" episodes within the North Atlantic sector, permitting cold temperature systems to exist within the eastern US and Europe.

The outcomes happen to be released today, Wednesday 2 April, in IOP Publishing's journal Environment Research Letters.

To reach their results, the scientists combined findings in the past century with climate simulations from the atmospheric reaction to the AMO.

Based on their findings, ocean surface temps within the Atlantic can depend on 1.5 ?C warmer within the Gulf Stream region throughout the positive phase from the AMO in comparison towards the negative, cooler phase. The weather simulations claim that these anomalies in ocean surface temps can enjoy a predominant role in marketing the modification within the NAO.

Lead authors from the study Yannick Peings and Gudrun Magnusdottir stated: "Our results indicate the primary aftereffect of the positive AMO in the winter months would be to promote the appearance of the negative phase from the NAO. An adverse NAO in the winter months usually goes hands-in-hands with cold temperature within the eastern US and north-the european union.Inch

The findings also suggest that it requires around 10-fifteen years prior to the positive phase of AMO has any important effect around the NAO. The reason behind this lag is unknown however, a reason may be that AMO phases make time to develop fully.

Because the AMO has been around an optimistic phase because the early the nineteen nineties, it might have led towards the extreme winters that both US and Europe have observed recently.

The scientists warn, however, the future evolution from the AMO remains uncertain, with lots of factors potentially affecting the way it interacts with atmospheric circulation designs, for example Arctic ocean ice loss, alterations in photo voltaic radiation, volcanic eruptions and levels of green house gases within the atmosphere.

The AMO also shows strong variability in one year to another additionally towards the changes seen every 60 - 70 years, which causes it to be hard to attribute specific extreme winters towards the AMO's effects.

Reacting towards the extreme weather that held the eastern coast of america this winter, Yannick Peings ongoing: "Unlike the 2012/2013 winter, this winter had rather low values from the AMO index and also the pattern of ocean surface temperature anomalies wasn't in conjuction with the typical positive AMO pattern. Furthermore, the NAO was mostly positive having a relatively mild winter over Europe."

"It is therefore unlikely the positive AMO performed a determining role around the new england of america, although further jobs are essential to answer this. This kind of event is in conjuction with the large internal variability from the atmosphere, along with other exterior forcings might have performed a job.

"Our future studies will turn to compare the function from the AMO in comparison to Arctic ocean ice anomalies, which are also proven to affect atmospheric circulation designs and promote cooler, more extreme winters."


View the original article here