News Stories

  • April

    Expanding the Practice of EWN through Landscape Architecture

    VICKSBURG, Miss. – In this episode of the Engineering With Nature (EWN) Podcast, Dr. Jeff King, deputy national lead of the U.S. Army Corps of Engineers (USACE) EWN program, discusses how three landscape architects ― Auburn University’s Rob Holmes, University of Pennsylvania’s Sean Burkholder and the University of Virginia’s Brian Davis — have joined forces with EWN to explore innovative solutions to coastal resilience. The group describes their efforts to synthesize the engineering and landscape architecture disciplines and the opportunities and potential for advancing EWN practices. The EWN approach of leveraging natural processes to accomplish the desired engineering outcome while creating environmental and social benefits aligns well with the discipline of landscape architecture in which landscapes are co-designed by humans and natural processes. King and his guests discuss the power of integrating landscape architecture practices into the work Burkholder, Holmes and King are doing with colleagues at the Philadelphia District along the New Jersey coast.
  • Memphis District Hurley: Thawed out and ready to dredge

    During most off seasons, maintaining the Hurley takes a few months and a couple of crews to get everything done. This off-season was a bit different, as unexpected weather posed more obstacles than usual. Much of the south, including Memphis, Tennessee, was hit hard with frigid temperatures in mid-February this year. The last time Memphians experienced weather like this was in 1994.  From frozen pipes to no electricity, many people and structures were impacted by the icy weather, including the district’s Dredge Hurley.
  • Army Corps announces road closure at Francis E. Walter Dam

    The U.S. Army Corps Engineers’ Philadelphia District announced sections of Walter Dam Road (and through traffic between Bear Creek Road and Route 940) will be closed from April 26 through June 30 for repairs and road reconstruction.
  • Chief of Engineers signs report recommending ecosystem restoration in Prado Basin

    The U.S. Army Corps of Engineers’ top general signed a report April 22 – on Earth Day – recommending a plan to restore more than 600 acres of valuable riparian habitat within the largest riparian forest in Southern California. Lt. Gen. Scott Spellmon, the Corps’ commanding general and 55th U.S. Army chief of engineers, signed the Chief of Engineer’s Report for the Prado Basin Ecosystem Restoration and Water Conservation Feasibility Study at the Corps’ headquarters in Washington, D.C. The project is headed by the Corps’ Los Angeles District, in partnership with the Orange County Water District.
  • USACE Increases Lake Okeechobee Releases to Caloosahatchee

    The U.S. Army Corps of Engineers (USACE) Jacksonville District will increase Lake Okeechobee releases at the W.P. Franklin Lock and Dam (S-79) from the current 1,000 cubic feet per second (cfs) to 2,000 cfs beginning April 24.
  • Earth Day 2021: Restore Our Earth

    Happy Earth Day! Here at the U.S. Army Corps of Engineers, every day is Earth Day. Our efforts to protect and preserve the environment are an enduring mission. Environmental stewardship is part of our culture and is grounded in our USACE Environmental Operating Principles (EOPs) which we incorporate into all that we do, across all mission areas.
  • LOSOM Project Delivery Team Meeting scheduled for May 7

    The U.S. Army Corps of Engineers, Jacksonville District, announces a Lake Okeechobee System Operating Manual (LOSOM) Project Delivery Team (PDT) Meeting, to be held Friday, May 7, from 9 a.m. to 3 p.m.
  • Computational Investigation on Interactions between Some Munition Compounds and Humic Substances

    Note: This document was originally published as a journal article or conference proceeding. The link and document will be accessible after a 12-month embargo expires (December 14, 2021 for this document). For more information, see "Frequently Asked Questions on Public Access to Federally Funded Journal Articles" at https://discover.dtic.mil/pdfs/padf/DTIC_FAQs_Public_Access.pdf Abstract: Humic acid substances (HAs) in natural soil and sediment environments affect the retention and degradation of insensitive munition compounds and legacy high explosives (MCs): 2,4-dinitroanisole (DNAN) DNi−NH4+, N-methyl-p-nitroaniline (nMNA), 1-nitroguanidine (NQ), 3-nitro-1,2,4-triazol-5-one (NTO; neutral and anionic forms), 2,4,6-trinitroto-luene (TNT), and 1,3,5-trinitro-1,3,5-triazinane (RDX). A humic acid mode compound has been considered using molecular dynamics, thermodynamic integration, and density functional theory to characterize the munition binding ability, ionization potential, and electron affinity compared to that in the water solution. Humic acids bind most compounds and act as both a sink and source for electrons. Ionization potentials suggest that HAs are more susceptible to oxidation than the MCs studied. The electron affinity of HAs is very conformation-dependent and spans the same range as the munition compounds. When HAs and MCs are complexed, the HAs tend to radicalize first, thus buffering MCs against reductive as well as oxidative attacks.
  • guiBathy: A Graphical User Interface to Estimate Nearshore Bathymetry from Hovering Unmanned Aerial System Imagery

    Abstract: This US Army Engineer Research and Development Center, Coastal and Hydraulics Laboratory, technical report details guiBathy, a graphical user interface to estimate nearshore bathymetry from imagery collected via a hovering Unmanned Aerial System (UAS). guiBathy provides an end-to-end solution for non-subject-matter-experts to utilize commercial-off-the-shelf UAS to collect quantitative imagery of the nearshore by packaging robust photogrammetric and signal-processing algorithms into an easy-to-use software interface. This report begins by providing brief background on coastal imaging and the photogrammetry and bathymetric inversion algorithms guiBathy utilizes, as well as UAS data collection requirements. The report then describes guiBathy software specifications, features, and workflow. Example guiBathy applications conclude the report with UAS bathymetry measurements taken during the 2020 Atlantic Hurricane Season, which compare favorably (root mean square error = 0.44 to 0.72 m; bias = -0.35 to -0.11 m) with in situ survey measurements. guiBathy is a standalone executable software for Windows 10 platforms and will be freely available at www.github.com/erdc.
  • Comparison of Generic and Proprietary Aquatic Herbicides for Control of Invasive Vegetation : Part 2. Emergent Plants

    Abstract: Aquatic herbicides are one of the most effective and widespread ways to manage nuisance vegetation in the US After the active ingredient is selected, often there are numerous proprietary and generic branded products to select from. To date, limited efforts have been made to compare the efficacy of brand name and generic herbicides head to head; therefore, at tot al of 20 mesocosm trials were conducted to evaluate various 2,4 -D, glyphosate, imazapyr, and triclopyr products against alligatorweed (Alternanthera philoxeroides (Mart.) Griseb.), southern cattail (hereafter referred to as cattail, Typha domingensis Pers.), and creeping water primrose (hereafter referred as primrose, Ludwigia peploides (Kunth) P.H. Raven). All active ingredients were applied to foliage at broadcast rates commonly used in applications to public waters. Proprietary and generic 2,4 -D, glyphosate, imazapyr, and triclopyr were efficacious and provided 39 to 99% control of alligatorweed, cattail and primrose in 19 of the 20 trials. There were no significant differences i n product performance except glyphosate vs. alligatorweed (trial 1, Rodeo vs. Roundup Custom) and glyphosate vs. cattail (trial 1, Rodeo vs. Glyphosate 5.4). These results demonstrate under small -scale conditions, the majority of the generic and proprietary herbicides provided similar control of emergent vegetation, regardless of active ingredient.

News Releases

  • Expanding the Practice of EWN through Landscape Architecture

    VICKSBURG, Miss. – In this episode of the Engineering With Nature (EWN) Podcast, Dr. Jeff King, deputy national lead of the U.S. Army Corps of Engineers (USACE) EWN program, discusses how three landscape architects ― Auburn University’s Rob Holmes, University of Pennsylvania’s Sean Burkholder and the University of Virginia’s Brian Davis — have joined forces with EWN to explore innovative solutions to coastal resilience. The group describes their efforts to synthesize the engineering and landscape architecture disciplines and the opportunities and potential for advancing EWN practices. The EWN approach of leveraging natural processes to accomplish the desired engineering outcome while creating environmental and social benefits aligns well with the discipline of landscape architecture in which landscapes are co-designed by humans and natural processes. King and his guests discuss the power of integrating landscape architecture practices into the work Burkholder, Holmes and King are doing with colleagues at the Philadelphia District along the New Jersey coast.
  • Memphis District Hurley: Thawed out and ready to dredge

    During most off seasons, maintaining the Hurley takes a few months and a couple of crews to get everything done. This off-season was a bit different, as unexpected weather posed more obstacles than usual. Much of the south, including Memphis, Tennessee, was hit hard with frigid temperatures in mid-February this year. The last time Memphians experienced weather like this was in 1994.  From frozen pipes to no electricity, many people and structures were impacted by the icy weather, including the district’s Dredge Hurley.
  • Army Corps announces road closure at Francis E. Walter Dam

    The U.S. Army Corps Engineers’ Philadelphia District announced sections of Walter Dam Road (and through traffic between Bear Creek Road and Route 940) will be closed from April 26 through June 30 for repairs and road reconstruction.
  • Chief of Engineers signs report recommending ecosystem restoration in Prado Basin

    The U.S. Army Corps of Engineers’ top general signed a report April 22 – on Earth Day – recommending a plan to restore more than 600 acres of valuable riparian habitat within the largest riparian forest in Southern California. Lt. Gen. Scott Spellmon, the Corps’ commanding general and 55th U.S. Army chief of engineers, signed the Chief of Engineer’s Report for the Prado Basin Ecosystem Restoration and Water Conservation Feasibility Study at the Corps’ headquarters in Washington, D.C. The project is headed by the Corps’ Los Angeles District, in partnership with the Orange County Water District.
  • USACE Increases Lake Okeechobee Releases to Caloosahatchee

    The U.S. Army Corps of Engineers (USACE) Jacksonville District will increase Lake Okeechobee releases at the W.P. Franklin Lock and Dam (S-79) from the current 1,000 cubic feet per second (cfs) to 2,000 cfs beginning April 24.
  • Earth Day 2021: Restore Our Earth

    Happy Earth Day! Here at the U.S. Army Corps of Engineers, every day is Earth Day. Our efforts to protect and preserve the environment are an enduring mission. Environmental stewardship is part of our culture and is grounded in our USACE Environmental Operating Principles (EOPs) which we incorporate into all that we do, across all mission areas.
  • LOSOM Project Delivery Team Meeting scheduled for May 7

    The U.S. Army Corps of Engineers, Jacksonville District, announces a Lake Okeechobee System Operating Manual (LOSOM) Project Delivery Team (PDT) Meeting, to be held Friday, May 7, from 9 a.m. to 3 p.m.
  • Computational Investigation on Interactions between Some Munition Compounds and Humic Substances

    Note: This document was originally published as a journal article or conference proceeding. The link and document will be accessible after a 12-month embargo expires (December 14, 2021 for this document). For more information, see "Frequently Asked Questions on Public Access to Federally Funded Journal Articles" at https://discover.dtic.mil/pdfs/padf/DTIC_FAQs_Public_Access.pdf Abstract: Humic acid substances (HAs) in natural soil and sediment environments affect the retention and degradation of insensitive munition compounds and legacy high explosives (MCs): 2,4-dinitroanisole (DNAN) DNi−NH4+, N-methyl-p-nitroaniline (nMNA), 1-nitroguanidine (NQ), 3-nitro-1,2,4-triazol-5-one (NTO; neutral and anionic forms), 2,4,6-trinitroto-luene (TNT), and 1,3,5-trinitro-1,3,5-triazinane (RDX). A humic acid mode compound has been considered using molecular dynamics, thermodynamic integration, and density functional theory to characterize the munition binding ability, ionization potential, and electron affinity compared to that in the water solution. Humic acids bind most compounds and act as both a sink and source for electrons. Ionization potentials suggest that HAs are more susceptible to oxidation than the MCs studied. The electron affinity of HAs is very conformation-dependent and spans the same range as the munition compounds. When HAs and MCs are complexed, the HAs tend to radicalize first, thus buffering MCs against reductive as well as oxidative attacks.
  • guiBathy: A Graphical User Interface to Estimate Nearshore Bathymetry from Hovering Unmanned Aerial System Imagery

    Abstract: This US Army Engineer Research and Development Center, Coastal and Hydraulics Laboratory, technical report details guiBathy, a graphical user interface to estimate nearshore bathymetry from imagery collected via a hovering Unmanned Aerial System (UAS). guiBathy provides an end-to-end solution for non-subject-matter-experts to utilize commercial-off-the-shelf UAS to collect quantitative imagery of the nearshore by packaging robust photogrammetric and signal-processing algorithms into an easy-to-use software interface. This report begins by providing brief background on coastal imaging and the photogrammetry and bathymetric inversion algorithms guiBathy utilizes, as well as UAS data collection requirements. The report then describes guiBathy software specifications, features, and workflow. Example guiBathy applications conclude the report with UAS bathymetry measurements taken during the 2020 Atlantic Hurricane Season, which compare favorably (root mean square error = 0.44 to 0.72 m; bias = -0.35 to -0.11 m) with in situ survey measurements. guiBathy is a standalone executable software for Windows 10 platforms and will be freely available at www.github.com/erdc.
  • Comparison of Generic and Proprietary Aquatic Herbicides for Control of Invasive Vegetation : Part 2. Emergent Plants

    Abstract: Aquatic herbicides are one of the most effective and widespread ways to manage nuisance vegetation in the US After the active ingredient is selected, often there are numerous proprietary and generic branded products to select from. To date, limited efforts have been made to compare the efficacy of brand name and generic herbicides head to head; therefore, at tot al of 20 mesocosm trials were conducted to evaluate various 2,4 -D, glyphosate, imazapyr, and triclopyr products against alligatorweed (Alternanthera philoxeroides (Mart.) Griseb.), southern cattail (hereafter referred to as cattail, Typha domingensis Pers.), and creeping water primrose (hereafter referred as primrose, Ludwigia peploides (Kunth) P.H. Raven). All active ingredients were applied to foliage at broadcast rates commonly used in applications to public waters. Proprietary and generic 2,4 -D, glyphosate, imazapyr, and triclopyr were efficacious and provided 39 to 99% control of alligatorweed, cattail and primrose in 19 of the 20 trials. There were no significant differences i n product performance except glyphosate vs. alligatorweed (trial 1, Rodeo vs. Roundup Custom) and glyphosate vs. cattail (trial 1, Rodeo vs. Glyphosate 5.4). These results demonstrate under small -scale conditions, the majority of the generic and proprietary herbicides provided similar control of emergent vegetation, regardless of active ingredient.

Mississippi Valley Division

Institute for Water Resources

South Pacific Division

News/News Release Search

@USACEHQ

Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
Twitter
Logo
X
46,810
Follow Us