996 resultados para Maine artillery (heavy) 1st regt., 1862-1865.


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This paper discusses a successful application of the Acoustic Emission Technique (AET) for the detection and location of leak paths present on an inaccessible side of an end shield of a Pressurised Heavy Water Reactor (PHWR). The methodology was based on the fact that air- and water-leak AE signals have different characteristic features. Baseline data was generated from a sound end shield of a PHWR for characterising the background noise. A mock-up end shield system with saw-cut leak paths was used to verify the validity of the methodology. It was found that air-leak signals under pressurisation (as low as 3 psi) could be detected by frequency domain analysis. Signals due to air leaks from various locations of defective end shield were acquired and analysed. It was possible to detect and locate leak paths. The presence of detected leak paths was further confirmed by an alternative test.

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A theoretical analysis of the external heavy atom effect of a halogen atom on the radiative rate constant of phosphorescence is examined as a function of position of a bromine atom or atoms relative to a naphthalene or a benzene chromophore for a series of mono- and dibromo-, naphtho-, and benzonorbornenes. The theoretical results are then compared to experimentaldata and lead to the conclusion that the enhancement of the phosphorescence process takes place through the second-ordermixing of the triplet states of the chromophore with the singlet charge transfer states arising primarily from an electron transferfrom the orbitals of the heavy atom perturber to the unfilled x* orbitals of the chromophore.

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Tutkielma käsittelee kuvataideyleisön muotoutumista Suomen Taideyhdistyksen piirissä 1800-luvun puolivälissä sosiaalihistoriallisesta näkökulmasta. Tärkein lähdemateriaali on Suomen Taideyhdistyksen arkisto, jonka avulla tarkastellaan laajemmin yhdistyksen ideaa, sen jäsenyyttä, maanlaajuista jäsenkartuntaa ja johtokunnan taiteen kannattajiin suuntaamaa missiota toiminnan alkuvuosikymmeninä. Yhdistyksen helsinkiläinen jäsenistö vuosina 1846−1865 on luokiteltu kymmeneen luokkaan jäsenluettelossa annettujen nimikkeiden perusteella. Lähdeaineiston ja sen pohjalta tehdyn luokittelun avulla analysoidaan pääkaupungin jäsenkuntaa ja sen suhdetta koko maan jäsenistöön. Jäsenkunnasta nostetaan esille myös joitakin kiinnostavia yksilöitä. Tutkielman pääasiallinen teoreettinen viitekehys on Sosiologi Everett Rogersin malli innovaatioiden diffuusiosta. Taiteen kannattaminen uutena ideana vertautuu tutkielmassa uuteen keksintöön ja sen leviämiseen. Tutkielmassa osoitetaan, että kuvataiteen saadessa 1800-luvun kuluessa uudenlaisia merkityksiä myös taiteen yleisö määrittyi uudelleen. Vuonna 1846 perustetulla Suomen Taideyhdistyksellä oli tässä ratkaiseva ja aktiivinen rooli. Taiteen kannattajakunnan ydin oli Helsingissä, jossa vaikutti yhdistyksen lähinnä korkeista virkamiehistä ja professoreista koostunut johtokunta. Taideyhdistyksen toiminnan vakiintuessa taiteen kannattamisen idea levisi ja sitä levitettiin yhä useammille paikkakunnille sekä laajempiin kansankerroksiin. Yhdistyksen jäsenkuntaan liittyi lähinnä säätyläistöä, mutta taidenäyttelytoiminta tavoitti myös alempia yhteiskuntaluokkia. Taideyhdistyksen helsinkiläisessä jäsenkunnassa virkamiehistön rooli oli suuri. Alkuvaiheessa liittyneet yhteiskunnalliselta statukseltaan korkeat henkilöt saivat hallitsijan vakuuttumaan toiminnan luotettavuudesta. Taiteen kannattajakunta muodostui kuitenkin kasvavassa määrin alemmasta virkamiehistöstä ja elinkeinojen harjoittajista. Merkittävä osuus oli myös Keisarillisen Aleksanterinyliopiston opettajilla ja siellä tutkinnon suorittaneilla. Tärkein taiteen pääkaupunkilaista kannattajakuntaa yhdistänyt sosiaalinen viitekehys olikin yliopisto. Sen antama koulutus, sivistys ja henkinen pääoma olivat taustalla suurimmalla osalla yhdistykseen Helsingissä liittyneistä. He kuuluivat pääsääntöisesti aktivoituvaan sivistyneistöön, joka syntyi sääty-yhteiskunnan vanhojen rakenteiden hämärtyessä ja yliopistotutkintojen saadessa yhä suurempaa yhteiskunnallista merkitystä.

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The performance of the Advanced Regional Prediction System (ARPS) in simulating an extreme rainfall event is evaluated, and subsequently the physical mechanisms leading to its initiation and sustenance are explored. As a case study, the heavy precipitation event that led to 65 cm of rainfall accumulation in a span of around 6 h (1430 LT-2030 LT) over Santacruz (Mumbai, India), on 26 July, 2005, is selected. Three sets of numerical experiments have been conducted. The first set of experiments (EXP1) consisted of a four-member ensemble, and was carried out in an idealized mode with a model grid spacing of 1 km. In spite of the idealized framework, signatures of heavy rainfall were seen in two of the ensemble members. The second set (EXP2) consisted of a five-member ensemble, with a four-level one-way nested integration and grid spacing of 54, 18, 6 and 1 km. The model was able to simulate a realistic spatial structure with the 54, 18, and 6 km grids; however, with the 1 km grid, the simulations were dominated by the prescribed boundary conditions. The third and final set of experiments (EXP3) consisted of a five-member ensemble, with a four-level one-way nesting and grid spacing of 54, 18, 6, and 2 km. The Scaled Lagged Average Forecasting (SLAF) methodology was employed to construct the ensemble members. The model simulations in this case were closer to observations, as compared to EXP2. Specifically, among all experiments, the timing of maximum rainfall, the abrupt increase in rainfall intensities, which was a major feature of this event, and the rainfall intensities simulated in EXP3 (at 6 km resolution) were closest to observations. Analysis of the physical mechanisms causing the initiation and sustenance of the event reveals some interesting aspects. Deep convection was found to be initiated by mid-tropospheric convergence that extended to lower levels during the later stage. In addition, there was a high negative vertical gradient of equivalent potential temperature suggesting strong atmospheric instability prior to and during the occurrence of the event. Finally, the presence of a conducive vertical wind shear in the lower and mid-troposphere is thought to be one of the major factors influencing the longevity of the event.

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We calculate the thermal photon transverse momentum spectra and elliptic flow in $\sqrt{s_{NN}} = 200$ GeV Au+Au collisions at RHIC and in $\sqrt{s_{NN}} = 2.76$ TeV Pb+Pb collisions at the LHC, using an ideal-hydrodynamical framework which is constrained by the measured hadron spectra at RHIC and LHC. The sensitivity of the results to the QCD-matter equation of state and to the photon emission rates is studied, and the photon $v_2$ is discussed in the light of the photonic $p_T$ spectrum measured by the PHENIX Collaboration. In particular, we make a prediction for the thermal photon $p_T$ spectra and elliptic flow for the current LHC Pb+Pb collisions.

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In this paper the question of the extent to which truncated heavy tailed random vectors, taking values in a Banach space, retain the characteristic features of heavy tailed random vectors, is answered from the point of view of the central limit theorem.

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Experiments have been conducted to obtain the optimum conditions of hydrogen ion concentration of feed and strip phases and concentration of the carrier ALAMINE 336, in the extraction of Cr(VI) and Hg(II) using two different types of liquid membranes-bulk liquid membrane and emulsion liquid membrane. Experiments have also been carried out to find the effect of metal loading and the effect of extraction time on metal flux.

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Leak detection in the fuel channels is one of the challenging problems during the in-service inspection (ISI) of Pressurised Heavy Water Reactors (PHWRs). In this paper, the use of an acoustic emission (AE) technique together with AE signal analysis is described, to detect a leak that was ncountered in one (or more) of the 306 fuel channels of the Madras Atomic Power Station (PHWR), Unit I. The paper describes the problems encountered during the ISI, the experimental methods adopted and the results obtained. Results obtained using acoustic emission signal analysis are compared with those obtained from other leak detection methods used in such cases.

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Clay liners have been widely used to contain toxic and hazardous wastes. Clays adsorb the contaminant cations due to their exchange capacity. To improve the performance of the clay liner, fly ash, a waste material arising out of combustion of coal has been studied as a pre-filter material. The results indicate that fly ash has the potential to retain heavy metal ions. This study concerns the retention of zinc by fly ash. The influence of pH on retention as well as leaching characteristics are examined. The results obtained from the retention experiments by permeameter method indicate that fly ash retains the zinc ions through precipitation in the pores as well as onto the surface when the ambient pH value is more than 6.9, and only through adsorption when the pH value is less than 6.9. It has been observed that fly ash did not release the retained zinc ions when the pH value is between 3.5 and 10.0. Hence, the retention of zinc ions by fly ash is likely to be permanent since the pH of most of the landfill leachates are between 3.7 to 8.8.