20,907 research outputs found

    Deformation mechanics of deep surface flaw cracks

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    A combined analytical and experimental program was conducted to determine the deformation characteristics of deep surface cracks in Mode I loading. An approximate plane finite element analysis was performed to make a parameter study on the influence of crack depth, crack geometry, and stress level on plastic zones, crack opening displacement, and back surface dimpling in Fe-3Si steel and 2219-T87 aluminum. Surface replication and profiling techniques were used to examine back surface dimple configurations in 2219-T87 aluminum. Interferometry and holography were used to evaluate the potential of various optical techniques to detect small surface dimples on large surface areas

    Factors influencing adoption of conservation tillage in Australian cropping regions

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    The purpose of this research is to improve understanding of conservation tillage adoption decisions by identifying key biophysical and socio-economic factors influencing no-till adoption by grain growers across four Australian cropping regions. The study is based on interviews with 384 grain growers using a questionnaire aimed at eliciting perceptions relating to a range of possible long- and short-term agronomic interactions associated with the relative economic advantage of shifting to a no-tillage cropping system. Together with other farm and farmer-specific variables, a dichotomous logistic regression analysis was used to identify opportunities for research and extension to facilitate more rapid adoption decisions. The broader systems approach to considering conservation tillage adoption identified important determinants of adoption not associated with soil conservation and erosion prevention benefits. Most growers recognised the erosion-reducing benefits of no-till but it was not an important factor in explaining whether a grower was an adopter or non-adopter. Perceptions associated with shorter-term crop production benefits under no-till, such as the relative effectiveness of pre-emergent herbicides and the ability to sow crops earlier on less rainfall were influential. Employment of a consultant and increased attendance of cropping extension activities were strongly associated with no-till adoption, confirming the information and learning-intensive nature of adopting no-till cropping systems.adoption, conservation tillage, herbicide resistance, no-till, perceptions, weed management, Farm Management,

    Fractional Stokes-Einstein and Debye-Stokes-Einstein relations in a network forming liquid

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    We study the breakdown of the Stokes-Einstein (SE) and Debye-Stokes-Einstein (DSE) relations for translational and rotational motion in a prototypical model of a network-forming liquid, the ST2 model of water. We find that the emergence of ``fractional'' SE and DSE relations at low temperature is ubiquitous in this system, with exponents that vary little over a range of distinct physical regimes. We also show that the same fractional SE relation is obeyed by both mobile and immobile dynamical heterogeneities of the liquid

    Dynamic interaction between structure and liquid propellants in a space shuttle vehicle model, part 1 Final report

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    Dynamic interaction between structure and liquid propellants in space shuttle vehicle model

    Mystery of the LyĪ± Blobs

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    We present Spitzer Space Telescope observations of the extended Lyman Ī± blobs associated with the z=2.38 over-density J2143-4423, the largest known structure (110 Mpc) above z=2. We detect all 4 of the LyĪ± blobs in all four IRAC channels and we also detect 3 out of 4 of the blobs with MIPS 24Ī¼m. Conversion from rest-wavelength 7Ī¼m to total far-infrared luminosity using locally derived correlations suggests all the detected sources are in the class of ULIRGs or even Hyper-LIRGs. We find a weak correlation between LyĪ± and mid-infrared emission for the LyĪ± blobs (L_(LyĪ±)/L_(bol) = 0.05-0.2%). Nearly all LyĪ± blobs show some evidence for interaction, either in HST imaging, or the proximity of multiple MIPS sources within the LyĪ± cloud. This suggests that interaction or even mergers may be related to the production of LyĪ± blobs. Optical through infrared SEDs of the LyĪ± blobs do not show a clear 1.6Ī¼m bump, but rather are indicative of a composite of star formation and AGN energy sources

    Coupling between structure and liquids in a parallel stage space shuttle design

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    A study was conducted to determine the influence of liquid propellants on the dynamic loads for space shuttle vehicles. A parallel-stage configuration model was designed and tested to determine the influence of liquid propellants on coupled natural modes. A forty degree-of-freedom analytical model was also developed for predicting these modes. Currently available analytical models were used to represent the liquid contributions, even though coupled longitudinal and lateral motions are present in such a complex structure. Agreement between the results was found in the lower few modes

    A Comprehensive Review of Congestion Management in Power System

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    In recent decades, restructuring has cut across all probable domains, involving the power supply industry. The restructuring has brought about considerable changes whereby electricity is now a commodity and has become a deregulated one. These competitive markets have paved the way for countless entrants. This has caused overload and congestion on transmission lines. In addition, the open access transmission network has created a more intensified congestion issue. Therefore, congestion management on power systems is relevant and central significance to the power industry. This manuscript review few congestion management techniques, consists of Reprogramming Generation (GR), Load Shedding, Optimal Distributed Generation (DG) Location, Nodal Pricing, Free Methods, Genetic Algorithm (GA), Particle Swarm Optimization (PSO), Fuzzy Logic System Method, as well as Additional Renewable Energy Sources. In this manuscript a review work is performed to unite the entire publications on congestion management

    Does Eccentric Hamstring Training Improve Speed and Jump Performance in Team Sports: A Systematic Review

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    Eccentric strength is thought to be a key component of fitness for sports requiring rapid movements such as sprinting and jumping. As a result, eccentric training forms part of strength and conditioning programmes in these sports (Krommes et al., 2017, Biomed Central Research Notes, 10(1), 669). However, the association between improvements in eccentric strength and athletic performance remains unclear. The aim of this systematic review was to determine the effect of improvements in eccentric strength on sprint and jump performance. Online databases including SPORTDiscus, CINAHL, MEDLINE, PubMed and ScienceDirect were searched (June 2017) with a date restriction (2007 ā€“ 2017) to obtain relevant articles. Search terms included eccentric hamstring training ā€œANDā€ performance, speed, strength and jump performance. Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines were used to report the screening of articles. The Physiotherapy Evidence Database (PEDro) Scale was used to assess the methodological quality of each included article. A total of 8,613 articles were returned from the search. After screening the title and abstracts, 8,591 articles were excluded. Out of the remaining 25 articles, 17 were excluded after a review of full texts. A further 3 articles were identified from manually searching reference lists from which 1 was included. A total of 8 studies were included in the review. The studies included in this review were of poor methodological quality (PEDro 4.1/10). Overall, significant improvements were found in speed and jump performance for the eccentric training groups compared to the control groups. Only 2 of the studies measured strength pre and post intervention. There is weak evidence that eccentric training is effective in promoting improvements in speed and jump performance. Further high quality randomised controlled trials are needed to support the use of eccentric training to improve speed and jump performance

    A Comprehensive Review of Congestion Management in Power System

    Get PDF
    In recent decades, restructuring has cut across all probable domains, involving the power supply industry. The restructuring has brought about considerable changes whereby electricity is now a commodity and has become a deregulated one. These competitive markets have paved the way for countless entrants. This has caused overload and congestion on transmission lines. In addition, the open access transmission network has created a more intensified congestion issue. Therefore, congestion management on power systems is relevant and central significance to the power industry. This manuscript review few congestion management techniques, consists of Reprogramming Generation (GR), Load Shedding, Optimal Distributed Generation (DG) Location, Nodal Pricing, Free Methods, Genetic Algorithm (GA), Particle Swarm Optimization (PSO), Fuzzy Logic System Method, as well as Additional Renewable Energy Sources. In this manuscript a review work is performed to unite the entire publications on congestion management
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