933 resultados para production development
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The effects of elevated CO2 on leaf development in three genotypes of Populus were investigated during canopy closure, following exposure to elevated CO2 over 3 yr using free-air enrichment.• Leaf quality was altered such that nitrogen concentration per unit d. wt (Nmass) declined on average by 22 and 13% for sun and shade leaves, respectively, in elevated CO2. There was little evidence that this was the result of ‘dilution’ following accumulation of nonstructural carbohydrates. Most likely, this was the result of increased leaf thickness. Specific leaf area declined in elevated CO2 on average by 29 and 5% for sun and shade leaves, respectively.• Autumnal senescence was delayed in elevated CO2 with a 10% increase in the number of days at which 50% leaf loss occurred in elevated as compared with ambient CO2.• These data suggest that changes in leaf quality may be predicted following long-term acclimation of fast-growing forest trees to elevated CO2, and that canopy longevity may increase, with important implications for forest productivity.
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Includes bibliography
Infrastructure, transport and production development in an agricultural region: a case in Argentina.
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The development of the agricultural area in central and northern Argentina was analysed in a recent ECLAC study. More than 80% by volume of the country's agricultural exports pass through the ports in this area. Exports by the agroindustrial complex account for 58% of the total value of Argentine sales.It is known that investments in infrastructure generally help to reduce the costs of enterprises and to enhance productivity. The main idea presented in this study is that investments in transport infrastructure are a necessary condition for the productive development of a region, especially in relation to external trade through ports and navigable waterways.In the case of Argentina, a positive relationship has been observed between the development of port and waterway services (with reduced costs and operating times, improved reliability and new services), and expansion of the agricultural border, growth of productivity and agricultural production, and its industrialization.
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Domains where knowledge representation is too complex to be described analytically and in a deterministic way is very common in the petroleum industry, particularly in the field of exploration and production. In these domains, applications of artificial intelligence techniques are very suitable, especially in cases where the preservation of corporate and technical knowledge is important. The Laboratory for Research on Artificial Intelligence Applied to Petroleum Engineering (LIAP) at Unicamp, has, during the last 10 years, dedicated research efforts to build intelligent systems in well drilling and petroleum production fields. In the following sections, recent advances in intelligent systems, under development in the research laboratory, are described. (C) 2001 Published by Elsevier B.V. B.V.
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A genetic linkage map of mungbean (Vigna radiata, 2n = 2x = 22) consisting of 255 RFLP loci was developed using a recombinant inbred population of 80 individuals. The population was derived from an intersubspecific cross between the cultivated mungbean variety 'Berken' and a wild mungbean genotype 'ACC 41' (V radiata subsp. sublobata). The total length of the map, which comprised 13 linkage groups, spanned 737.9 cM with an average distance between markers of 3.0 cM and a maximum distance between linked markers of 15.4 cM. The mungbean map was compared to a previously published map of lablab (Lablab purpureus, 2n = 2x = 24) using a common set of 65 RFLP probes. In contrast to some other comparative mapping studies among members of the Fabaceae, where a high level of chromosomal rearrangement has been observed, marker order between mungbean and lablab was found to be highly conserved. However, the two genomes have apparently accumulated a large number of duplications/deletions after they diverged.
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Tässä diplomityössä käsitellään erikoispumppujen korjausprosessia teollisuuspumppujen korjauksiin erikoistuneessa konepajassa. Työn pääasiallinen tarkoitus on tuotantoprosessin kehittäminen ja tuotantovaiheiden esitteleminen. Tavoitteen taustalla on pyrkimys entisestään parantaa palvelukykyä ja asiakastyytyväisyyttä.Kolme eri keinoa päätavoitteen saavuttamiseksi ovat tuotannon suunnittelun ja ohjauksen kehittäminen, työssä käsiteltyjen pumpputyyppien korjausprosessien läpäisyaikojen lyhentäminen sekä korjausvaiheiden määrittely ja esittely vaihe vaiheelta. Työssä käsiteltyjä erikoispumpputyyppejä ovat imupumput, monijaksopumput sekä pysty/potkuripumput.Tuotannonsuunnittelun ja -ohjauksen kehittämiseksi sekä läpäisyaikojen lyhentämiseksi työssä etsittiin vaihtoehtoisia toimintatapoja. Kolmas tavoite, eli korjausvaiheiden määrittely, toteutettiin esittelemällä korjausprosessin vaiheet käsitellyillä pumpputyypeillä.Tuloksena saatiin keinoja tuotannon suunnittelun ja hallinnan kehittämiseksi. Useimmat keinot koskevat toimintatapojen selkiyttämistä. Myös keinoja läpäisyaikojen lyhentämiseksi löydettiin. Tietyllä imupumpputyypillä ja -koolla läpäisyajan lyheneminen oli 25 % ja osalla monijaksopumpuista jopa 75 %. Tulokset saavutetaan varastoimalla tiettyjä komponentteja, joilla on pitkä valmistus- tai korjausaika. Pysty/potkuripumppujen korjauksen läpäisyaikaa ei saatu lyhennettyä työn rajausten puitteissa Näiden tulosten lisäksi korjausprosessin toimintatavat määriteltiin.
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Foreword by Alicia Bárcena.