1,871 research outputs found

    A frequency-independent boundary element method for scattering by two-dimensional screens and apertures

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    We propose and analyse a hybrid numerical-asymptotic hphp boundary element method for time-harmonic scattering of an incident plane wave by an arbitrary collinear array of sound-soft two-dimensional screens. Our method uses an approximation space enriched with oscillatory basis functions, chosen to capture the high frequency asymptotics of the solution. Our numerical results suggest that fi�xed accuracy can be achieved at arbitrarily high frequencies with a frequency-independent computational cost. Our analysis does not capture this observed behaviour completely, but we provide a rigorous frequency-explicit error analysis which proves that the method converges exponentially as the number of degrees of freedom NN increases, and that to achieve any desired accuracy it is sufficient to increase NN in proportion to the square of the logarithm of the frequency as the frequency increases (standard boundary element methods require NN to increase at least linearly with frequency to retain accuracy). We also show how our method can be applied to the complementary "breakwater" problem of propagation through an aperture in an infinite sound-hard screen

    Social Service and Urban-Renewal: A Case Illustration

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    The city of Stamford, Connecticut has an Urban Renewal project as have most Urban centers. The Family Relocation Divison of Stamford\u27s Urban Redevelopment Commission (URC) entered into a contract with the Family and Children\u27s Services (FCS) to provide one day a week consultation to the Relocation staff and client services to the families in the renewal area. This consultation involved in-service training programs geared toward helping the relocation staff increase their skills in identifying problems within families and in assisting families to obtain help. As a result of this consultation, the relocation workers frequently would discuss the problems of the families referred to the Family Service worker and accompany the caseworker to the initial interview. It was the result of one such referral of a couple living in a building taken over by the URC in an area slated for redevelopment, a building euphemistically called The Cumping Grounds , that the Family Service worker evolved a group work approach. The group included all the tenants in the building. This paper will highlight the development of this group over a two year period, focusing particular attention on the impact of the experience on the behavior of the participants. The group which developed included: Blacks, whites, Puerto Ricans; (single and married), elderly and middle aged members. Although the group work was a reality-oriented problem-solving endeavor, the therapeutic gains for the individuals were very dramatic

    Mechanical property evaluation of an Al-2024 alloy subjected to HPT processing

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    An aluminum-copper alloy (Al-2024) was successfully subjected to high-pressure torsion (HPT) up to five turns at room temperature under an applied pressure of 6.0 GPa. The Al-2024 alloy is used as a fuselage structural material in the aerospace sector. Mechanical properties of the HPT-processed Al-2024 alloy were evaluated using the automated ball indentation technique. This test is based on multiple cycles of loading and unloading where a spherical indenter is used. After two and five turns of HPT, the Al-2024 alloy exhibited a UTS value of ~1014 MPa and ~1160 MPa respectively, at the edge of the samples. The microhardness was measured from edges to centers for all HPT samples. These results clearly demonstrate that processing by HPT gives a very significant increase in tensile properties and the microhardness values increase symmetrically from the centers to the edges. Following HPT, TEM examination of the five-turn HPT sample revealed the formation of high-angle grain boundaries and a large dislocation density with a reduced average grain size of ~80 nm. These results also demonstrate that high-pressure torsion is a processing tool for developing nanostructures in the Al-2024 alloy with enhanced mechanical propertie

    New species of Claviceps

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    Notes on some fungi from New Guinea

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