723 resultados para net trade cycle
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Nuestra preocupación reside en estudiar empíricamente el mecanismo de transmisión internacional de ciclos económicos a economías pequeñas y menos desarrolladas (LDC), evaluando el impacto de los shocks en los términos de intercambio en países dónde existen imperfecciones en el mercado crediticio que imponen severas restricciones en el financiamiento de la inversión doméstica y al crecimiento económico. Primero, analizamos si la cuenta corriente responde de manera asimétrica a movimientos de largo plazo en los términos de intercambio. La hipótesis es que “en los buenos tiempos” cuando se produce una mejora permanente en términos de intercambio (y con ello el nivel de ingreso) los individuos no elevan su consumo en un monto acorde con la mejora de su ingreso (permanente) sino que ahorran una fracción del aumento en su dotación para hacer frente a una reversión en la mejora en los términos de intercambios (aunque ésta sea transitoria) en el futuro. En consecuencia, la cuenta corriente (diferencia entre ingreso y absorción) responde de manera positiva a un shock permanente en los términos de intercambio, ya que el individuo ahorra de manera cautelosa –debido a que sabe que no le prestarán para suavizar consumo - aún suponiendo que en el futuro tendrá una reversión transitoria de su ingreso. Segundo, estudiamos la relación dinámica entre los términos de intercambio y la tasa de interés en la economía pequeña abierta y con imperfecciones en el mercado crediticio (información asimétrica). La hipótesis es que la economía doméstica tiene que soportar una prima de riesgo que eleva el costo de la inversión y retarda el crecimiento (Gertler y Rogoff; 1990). Esta prima de riesgo depende, además, en forma negativa del nivel del colateral que tenga la economía. El colateral es la dotación de recursos naturales, por ejemplo, que la economía posee a los fines garantizar el cumplimiento de las obligaciones contraídas (en el modelo presentado las actividades dónde se invierten son independientes del colateral). La hipótesis establecida indica que los cambios en los términos de intercambio generan un aumento del colateral de la economía y una reducción del riesgo país: aumentos en los términos de intercambio reducen la prima de riesgo de la economía que opera en mercados de capitales con asimetrías de información, y como consecuencia aumentarían los ingresos de capitales. De esta forma, se estaría encontrando una explicación a la denominada “Paradoja de Lucas”. Finalmente, el proyecto estudia la conexión entre dos variables “clave” en la economía de los países emergentes: la relación entre los términos de intercambio y el tipo de cambio real. Argumentamos que los efectos de las mejoras de los términos de intercambio sobre los flujos de capitales externos tienden a ser sobreestimadas si no se consideran los efectos “secundarios” de éstas sobre el tipo de cambio real de la economía pequeña menos desarrollada. En este proyecto se controlan estadísticamente esta relación. La estrategia empírica elegida resulta en aplicar a un panel (constituido por dieciocho países de Latinoamérica) el método generalizado de momentos (GMM) a dos modelos de regresión estadística a los fines de abordar de manera eficiente el problema de la endogeneidad de la variable dependiente que actúa como regresor rezagado. La estrategia de estimación elegida enfatiza el análisis de la relación dinámica de las variables económicas incluidas en el análisis. The paper analyzes the general problem related to the transmission of economic cycles to Small Open Economies. The analysis focuses on terms-of-trade shocks, which are considered one of the major sources of income volatility in developing economies. Specifically, we tackle the problem related to the impact of terms-of-trade shocks in Less Developed SOEs. ‘Less Developed SOEs’ are understood as those countries who have borrowing constraints. First, we put to a test the hypothesis of asymmetric response of current account to terms-of-trade shocks (the impact of the shock on current account differs depending whether it is positive or negative), which originates from considering binding restrictions in international capital markets (Agénor and Aizenman; 2004). Second, we investigate about the main determinants of External Capital Flows (ECF) directed to Developing Countries. We put to a test the Gertler and Rogoff (1990) hypothesis that a “risky rate” arises in that markets because the economy has not sufficient amount of wealth to “collateralize” the capital she needs to borrow to take advantage of the investment opportunities she has and additionally because the lender does not have the chance of observing what the borrowed does with the funds (that is information asymmetry arises because the lender can check the realized output of investment but he can not observe if he really invest in the project or secretly lend abroad). Finally, Following Prasad, E. S., Rajan and R. Subramanian, A (2007) we measure the relationship between external capital flows and domestic currency overvaluation. We run a panel GMM estimation for a set of 18 Latin American Countries during the period 1973-2008.
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We study relative price behavior in an international business cyclemodel with specialization in production, in which a goods marketfriction is introduced through transport costs. The transporttechnology allows for flexible transport costs. We analyze whetherthis extension can account for the striking differences betweentheory and data as far as the moments of terms of trade and realexchange rates are concerned. We find that transport costs increaseboth the volatility of the terms of trade and the volatility of thereal exchange rate. However, unless the transport technology isspecified by a Leontief technology, transport costs do not resolvethe quantitative discrepancies between theory and data. Asurprising result is that transport costs may actually lower thepersistence of the real exchange rate, a finding that is in contrastto much of the emphasis of the empirical literature.
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Multi-country models have not been very successful in replicating important features of the international transmission of business cycles. Standard models predict cross-country correlations of output and consumption which are respectively too low and too high. In this paper, we build a multi-country model of the business cycle with multiple sectors in order to analyze the role of sectoral shocks in the international transmission of the business cycle. We find that a model with multiple sectors generates a higher cross-country correlation of output than standard one-sector models, and a lower cross-country correlation of consumption. In addition, it predicts cross-country correlations of employment and investment that are closer to the data than the standard model. We also analyze the relative effects of multiple sectors, trade in intermediate goods, imperfect substitution between domestic and foreign goods, home preference, capital adjustment costs, and capital depreciation on the international transmission of the business cycle.
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Includes bibliography
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This issue of the FAL Bulletin provides information on trends in current maritime transport and their implications for Latin America and the Caribbean, as well as some consequences for the ports in the region. This article updates some of the information contained in Recursos naturales e infraestructura series, No. 82 (ECLAC). This issue is based on a paper prepared by Ricardo J. Sánchez, Division of Natural Resources and Infrastructure, with the collaboration of Myriam Echeverría, Division of International Trade and Integration.
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This edition of the FAL Bulletin analyses the maritime cycle and its impact on the overall business cycle. In particular, it considers the financial and economic crisis which shook the world from 2008 onwards, affecting both world trade and levels of economic activity, with serious consequences for maritime transport.
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This paper presents an analysis of an irreversible Otto cycle aiming to optimize the net power through ECOP and ecological function. The studied cycle operates between two thermal reservoirs of infinite thermal capacity, with internal irreversibilities derived from non-isentropic behavior of compression and expansion processes, irreversibilities from thermal resistance in heat exchangers and heat leakage from the high temperature reservoir to the low temperature reservoir. Analytical expressions are applied for the power outputs optimized by the ECOP, by the ecological function and by the maximum power criteria, in conjunction with a graphic analysis, in which some cycle operation parameters are analyzed for an increased comprehension of the effects of the irreversibilities in the optimized power.
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In the IT industry, there has been a remarkable increase in the demand for system LSI. A system LSI must be tailor-designed for each electrical appliance, and then produced. It is said that in recent years, this production method has made the IC cycle ambiguous. It can be sought that the choice of whether the economy pursues a development path centering on technology which is tradable or technology which is embodied in labor, depends on the historical background. In this paper, the economic background is explained in order to analyze and capture movements in the IT industry and technology. Then, an econometric model for Hungary has been constructed to estimate the effect of technological progress on the economy.
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In the IT industry, there has been a remarkable increase in the demand for system LSI. A system LSI must be produced, tailor-designed for each electrical appliance. It is said that this production method has made the IC cycle ambiguous in recent years. It can be sought that the choice of whether the economy pursues a development path centering on technology which is tradable or technology which is embodied in labor, depends on the historical background. The relationship between these two types of technologies is changing rapidly every one or two years. In this background, the analysis is focused on the new trend of technology. In the section 2, the newest trend of technology in the field of system LSI is explained. Then, which kind of technology will be developed and how it will have an affect in the near future, is considered.
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This study is an attempt at achieving Net Zero Energy Building (NZEB) using a solar Organic Rankine Cycle (ORC) based on exergetic and economic measures. The working fluid, working conditions of the cycle, cycle configuration, and solar collector type are considered the optimization parameters for the solar ORC system. In the first section, a procedure is developed to compare ORC working fluids based on their molecular components, temperature-entropy diagram and fluid effects on the thermal efficiency, net power generated, vapor expansion ratio, and exergy efficiency of the Rankine cycle. Fluids with the best cycle performance are recognized in two different temperature levels within two different categories of fluids: refrigerants and non-refrigerants. Important factors that could lead to irreversibility reduction of the solar ORC are also investigated in this study. In the next section, the system requirements needed to maintain the electricity demand of a geothermal air-conditioned commercial building located in Pensacola of Florida is considered as the criteria to select the optimal components and optimal working condition of the system. The solar collector loop, building, and geothermal air conditioning system are modeled using TRNSYS. Available electricity bills of the building and the 3-week monitoring data on the performance of the geothermal system are employed to calibrate the simulation. The simulation is repeated for Miami and Houston in order to evaluate the effect of the different solar radiations on the system requirements. The final section discusses the exergoeconomic analysis of the ORC system with the optimum performance. Exergoeconomics rests on the philosophy that exergy is the only rational basis for assigning monetary costs to a system’s interactions with its surroundings and to the sources of thermodynamic inefficiencies within it. Exergoeconomic analysis of the optimal ORC system shows that the ratio Rex of the annual exergy loss to the capital cost can be considered a key parameter in optimizing a solar ORC system from the thermodynamic and economic point of view. It also shows that there is a systematic correlation between the exergy loss and capital cost for the investigated solar ORC system.
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Biofuels are both a promising solution to global warming mitigation and a potential contributor to the problem. Several life cycle assessments of bioethanol have been conducted to address these questions. We performed a synthesis of the available data on Brazilian ethanol production focusing on greenhouse gas (GHG) emissions and carbon (C) sinks in the agricultural and industrial phases. Emissions of carbon dioxide (CO(2)) from fossil fuels, methane (CH(4)) and nitrous oxide (N(2)O) from sources commonly included in C footprints, such as fossil fuel usage, biomass burning, nitrogen fertilizer application, liming and litter decomposition were accounted for. In addition, black carbon (BC) emissions from burning biomass and soil C sequestration were included in the balance. Most of the annual emissions per hectare are in the agricultural phase, both in the burned system (2209 out of a total of 2398 kg C(eq)), and in the unburned system (559 out of 748 kg C(eq)). Although nitrogen fertilizer emissions are large, 111 kg C(eq) ha-1 yr-1, the largest single source of emissions is biomass burning in the manual harvest system, with a large amount of both GHG (196 kg C(eq) ha-1 yr-1). and BC (1536 kg C(eq) ha-1 yr-1). Besides avoiding emissions from biomass burning, harvesting sugarcane mechanically without burning tends to increase soil C stocks, providing a C sink of 1500 kg C ha-1 yr-1 in the 30 cm layer. The data show a C output: input ratio of 1.4 for ethanol produced under the conventionally burned and manual harvest compared with 6.5 for the mechanized harvest without burning, signifying the importance of conservation agricultural systems in bioethanol feedstock production.