908 resultados para Termoeletricidade de concentração solar


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Foram conduzidos dois experimentos de campo, um em solo areno-barrento e outro em solo argiloso, com a finalidade de estudar o efeito de trifluralin, aplicado nas doses de 0,60 e 0,96.kg/ha e vernolate, nas doses de 2,52 e 3,60 kg/ha, incorporados ao solo, sobre o desenvolvimento de amendoim e teor de macronutrientes em folhas no início do florescimento e sementes na colheita, e o teor de óleo nestas. O desenvolvimento da cultura foi observado por meio de pesos de matéria seca de folhas, caules e vagens, durante o ciclo, obtendo -se, também, a produção de vagens no fim do ciclo. Houve pequena redução no desenvolvimento, nos estágios iniciais do ciclo, pelas doses mais elevadas de trifluralin e vernolate em solo argiloso apenas. Os teores de N, P, K, Ca, Mg e S, não foram afetados em folhas nem nos grãos por nenhum tratamento, nos dois experimentos, assim como o teor de óleo. As produções de grãos em casca não foram afetadas por nenhum tratamento, sendo elevadas nos dois experimentos.

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O crescimento e a eficiência na conversão da energia solar foram estudados em soja (Glycine max (L.) Merri ll, cv. 'Uberaba'), cultivada em condições de campo, sob quatro doses de metribuzin (0, 0,35; 0,70 e 1,05 kg i.a.ha-1). O valor máximo da conversão da energia solar foi de 0,75%, para as plantas cultiva das na maior dose do herbicida. Os valores da conversão da energia solar média durante o ciclo da cultura foram 0,32 ; 0,31 ; 0,32 e 0,33%. em ordem crescente de dose do metribuzin. De modo geral, na fase vegetativa as plantas controle apresentaram valores inferiores em todos os valores de crescimento determinados, superando as tratadas com metribuzin somente na fase reprodutiva, mostrando que no período crítico de competição o dano causado pelas plantas daninhas é maior que a possível fitotoxicida de causada pelo metribuzin.

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The acceleration of solar energetic particles (SEPs) by flares and coronal mass ejections (CMEs) has been a major topic of research for the solar-terrestrial physics and geophysics communities for decades. This thesis discusses theories describing first-order Fermi acceleration of SEPs through repeated crossings at a CME-driven shock. We propose that particle trapping occurs through self-generated Alfvén waves, leading to a turbulent trapping region in front of the shock. Decelerating coronal shocks are shown to be capable of efficient SEP acceleration, provided seed particle injection is sufficient. Quasi-parallel shocks are found to inject thermal particles with good efficiency. The roles of minimum injection velocities, cross-field diffusion, downstream scattering efficiency and cross-shock potential are investigated in detail, with downstream isotropisation timescales having a major effect on injection efficiency. Accelerated spectra of heavier elements up to iron are found to exhibit significantly harder spectra than protons. Accelerated spectra cut-off energies are found to scale proportional to (Q/A)1.5, which is explained through analysis of the spectral shape of amplified Alfvénic turbulence. Acceleration times to different threshold energies are found to be non-linear, indicating that self-consistent time-dependent simulations are required in order to expose the full extent of acceleration dynamics. The well-established quasilinear theory (QLT) of particle scattering is investigated by comparing QLT scattering coefficients with those found via full-orbit simulations. QLT is found to overemphasise resonance conditions. This finding supports the simplifications implemented in the presented coronal shock acceleration (CSA) simulation software. The CSA software package is used to simulate a range of acceleration scenarios. The results are found to be in agreement with well-established particle acceleration theory. At the same time, new spatial and temporal dynamics of particle population trapping and wave evolution are revealed.

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As plantas competem por recursos do meio situados abaixo e/ou acima da superfície do solo. A separação física da competição entre plantas possibilita conhecer a importância relativa de cada fração, bem como apontar possíveis diferenças em competitividade entre espécies. Objetivou-se neste trabalho separar os efeitos individuais decorrentes da competição por recursos do solo ou radiação solar, entre soja e plantas concorrentes. Foram realizados seis experimentos em vasos na UFRGS, em Porto Alegre-RS, sendo dois em 2001 e quatro em 2002. Os tratamentos testados resultaram das combinações de dois genótipos concorrentes (cultura e competidor) e quatro condições de competição (ausência de competição, competição por recursos do solo e radiação solar, competição por recursos do solo e competição por radiação solar). Os cultivares de soja IAS 5 e Fepagro RS 10 representaram a cultura, enquanto o nabo forrageiro e o cultivar de soja Fundacep 33 foram os competidores. Determinaram-se variáveis morfofisiológicas em plantas de soja e de nabo forrageiro. O crescimento das plantas de soja foi mais afetado pela competição por recursos do solo, sendo o cultivar RS 10 mais competitivo do que IAS 5. O nabo forrageiro não interferiu no crescimento dos cultivares de soja, porém cresceu mais na presença da cultura.

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The goal of the thesis is to analyze the strengths and weaknesses of solar PV business model and point out key factors that affect the efficiency of business model, the results are expected to help in creating new business strategy. The methodology of case study research is chosen as theoretical background to structure the design of the thesis indicating how to choose the right research method and conduction of a case study research. Business model canvas is adopted as the tool for analyzing the case studies of SolarCity and Sungevity. The results are presented through the comparison between the cases studies. Solar services and products, cost in customer acquisition, intellectual resource and powerful sales channels are identified as the major factors for TPO model.

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Culturas axênicas de Hypnea musciformis (Wulfen) Lamouroux foram estabelecidas em meio de Provasoli (PES) sólido com diferentes concentrações de ágar (0,4%, 0,6%, 0,8% e 1,0%) para avaliar o seu efeito na formação de calos e na regeneração de plantas. O cultivo em meio sólido induziu a formação de quatro tipos de calos (apical - CApi, lateral 1 - CLat1, lateral 2 - CLat2 e basal - CBas), os quais são constituídos internamente por proliferações unisseriadas pigmentadas. O tipo CApi foi o mais freqüente (taxa de 5,3 calos por explante em 1,0% de ágar). A maior biomassa das plântulas regeneradas (7,4 g) foi alcançada a partir de calos cultivados a 1,0% de ágar. A formação dos quatro tipos de calos é um dado inédito e indica que as diferentes concentrações de ágar no meio apresentam efeitos morfogenéticos no crescimento dos calos e na regeneração de segmentos apicais em H. musciformis

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A gramínea africana Melinis minutiflora P. Beauv. é alvo de preocupação no Brasil, pois vem substituindo espécies de gramíneas nativas do cerrado até em áreas protegidas. Neste estudo comparou-se o acúmulo de biomassa aérea e a concentração de nutrientes em M. minutiflora e gramíneas nativas para testar a hipótese de que esta espécie tem a capacidade de acumular uma maior biomassa com menores concentrações de nutrientes. O estudo foi realizado no Parque Nacional de Brasília. Quatro diferentes locais onde ocorria invasão por M. minutiflora foram escolhidos para o estudo e, em cada local, foram demarcadas duas parcelas de 20 m x 20 m, uma com apenas M. minutiflora e outra com apenas gramíneas nativas. Quatro amostras de biomassa aérea foram coletadas de cada parcela a cada três meses durante um ano, utilizando quadrados de 25 cm x 25 cm. Foram determinadas concentrações de nutrientes na biomassa viva e morta. A biomassa aérea viva foi maior em M. minutiflora no período de seca durante a floração de M. minutiflora, e no início da estação chuvosa do que nas gramíneas nativas. Não houve diferenças significativas entre M. minutiflora e gramíneas nativas na disponibilidade de nutrientes no solo ou na concentração de nutrientes na biomassa viva. No caso da biomassa morta, apenas o nitrogênio apresentou menores concentrações em M. minutiflora em relação às gramíneas nativas.

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The main objective of the present study was to design an agricultural robot, which work is based on the generation of the electricity by the solar panel. To achieve the proper operation of the robot according to the assumed working cycle the detailed design of the main equipment was made. By analysing the possible areas of implementation together with developments, the economic forecast was held. As a result a decision about possibility of such device working in agricultural sector was made and the probable topics of the further study were found out.

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Mentha x piperita L. var. piperita (hortelã-pimenta) é bastante utilizada devido à presença de óleos essenciais, principalmente pelo componente mentol, produzidos nos tricomas glandulares. Foi avaliada a influência da intensidade de luz e da adubação do substrato na quantidade e qualidade do óleo essencial. As intensidades de luz utilizadas foram 100%, 70% e 50% da luz solar total e dois níveis de nutrição do substrato aplicados, solo de mata e solo de mata com adição de adubo orgânico. A alta intensidade de luz e a adubação favoreceram o crescimento em biomassa, influenciando no rendimento do óleo essencial por planta. A intensidade de luz e a adubação influenciaram na qualidade do óleo essencial, apresentando as plantas sob luz solar plena e adubadas apresentaram maior concentração relativa de mentol que plantas sombreadas ou sem adubo. O mentol foi o componente majoritário encontrado no óleo essencial.

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The Sun is a crucial benchmark for how we see the universe. Especially when it comes to the visible range of the spectrum, stars are commonly compared to the Sun, as it is the most thoroughly studied star. In this work I have focussed on two aspects of the Sun and how it is used in modern astronomy. Firstly, I try to answer the question on how similar to the Sun another star can be. Given the limits of observations, we call a solar twin a star that has the same observed parameters as the Sun within its errors. These stars can be used as stand-in suns when doing observations, as normal night-time telescopes are not built to be pointed at the Sun. There have been many searches for these twins and every one of them provided not only information on how close to the Sun another star can be, but also helped us to understand the Sun itself. In my work I have selected _ 300 stars that are both photometrically and spectroscopically close to the Sun and found 22 solar twins, of which 17 were previously unknown and can therefore help the emerging picture on solar twins. In my second research project I have used my full sample of 300 solar analogue stars to check the temperature and metallicity scale of stellar catalogue calibrations. My photometric sample was originally drawn from the Geneva-Copenhagen-Survey (Nordström et al. 2004; Holmberg et al. 2007, 2009) for which two alternative calibrations exist, i.e. GCS-III (Holmberg et al. 2009) and C11 (Casagrande et al. 2011). I used very high resolution spectra of solar analogues, and a new approach to test the two calibrations. I found a zero–point shift of order of +75 K and +0.10 dex in effective temperature and metallicity, respectively, in the GCS-III and therefore favour the C11 calibration, which found similar offsets. I then performed a spectroscopic analysis of the stars to derive effective temperatures and metallicities, and tested that they are well centred around the solar values.

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Concentrated solar power (CSP) is a renewable energy technology, which could contribute to overcoming global problems related to pollution emissions and increasing energy demand. CSP utilizes solar irradiation, which is a variable source of energy. In order to utilize CSP technology in energy production and reliably operate a solar field including thermal energy storage system, dynamic simulation tools are needed in order to study the dynamics of the solar field, to optimize production and develop control systems. The object of this Master’s Thesis is to compare different concentrated solar power technologies and configure a dynamic solar field model of one selected CSP field design in the dynamic simulation program Apros, owned by VTT and Fortum. The configured model is based on German Novatec Solar’s linear Fresnel reflector design. Solar collector components including dimensions and performance calculation were developed, as well as a simple solar field control system. The preliminary simulation results of two simulation cases under clear sky conditions were good; the desired and stable superheated steam conditions were maintained in both cases, while, as expected, the amount of steam produced was reduced in the case having lower irradiation conditions. As a result of the model development process, it can be concluded, that the configured model is working successfully and that Apros is a very capable and flexible tool for configuring new solar field models and control systems and simulating solar field dynamic behaviour.

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Solceller baserade på organiska halvledare erbjuder en möjlighet till storskalig och billig solenergiproduktion. Organiska halvledare har den fördelen att de är lösningsprocesserbara vilket gör att solceller och andra elektroniska komponenter baseradedessa halvledare kan tillverkas vid låga temperaturer och med liten energiförbrukning. Nackdelen med dessa material är deras strukturella och energetiska oordning som leder till lägre effektivitet. För att organiska solceller ska kunna kommersialiseras krävs grundläggande insikter i de olika processer som begränsar effektiviteten. En stor del av forskningen om dessa processer har varit fokuserad kring egenskaperna av solcellens olika komponenter (de aktiva materialen) som sådana, medan gränsytorna mellan olika material har fått mindre uppmärksamhet. Gränsytor mellan olika material har distinkt olika egenskaper jämfört med ett rent material, och gränsytors olika egenskaper kan ha en väldigt stor inverkan på hur solcellerna fungerar. Syftet med denna avhandling är att klargöra några olika gränsyterelaterade effekter i organiska dioder och solceller. De gränsytor som behandlas är gränsytan mellan kontakten och det aktiva lagret (metall-organisk) och gränsytan mellan donor och acceptor (organisk-organisk). Resultaten visar att metall-organiska gränsytor måste designas noggrant för att begränsa förlust av effektivitet. En icke-idealisk kontakt leder till starkt reducerad effektivitet på grund av att elektronerna extraheras ineffektivt. Även till synes idealiska kontakter kan orsaka förluster genom spontan laddningsöverföring från metallen till det organiska lagret som effektivt sett minskar på den spänning som cellen kan alstra. Den organisk-organiska gränsytan påverkar hur mycket ström cellen kan alstra och beroende på gränsytans beskaffenhet kan de negativa rekombinationsprocesserna i materialet kontrolleras. ------------------------------------------------- Orgaanisille puolijohteille perustuvat aurinkokennot mahdollistavat suurimuotoisen ja edullisen aurinkoenergiatuotannon. Orgaanisten puolijohteiden etu on että ne voidaan liuottaa, jolloin aurinkokennot ja muut näille johteille perustuvat elektroniset komponentit voidaan valmistaa alhaisessa lämpötilassa kuluttaen vähän energiaa. Materiaalien huonona puolena on kuitenkin niiden rakenteellinen ja energeettinen epäjärjestys, jonka seurauksena niiden tehokkuus on huonompi. Orgaanisten aurinkokennojen kaupallistaminen edellyttää perustavanlaatuista ymmärystä tehokkuutta rajoittavista prosesseista. Aurinkokennotutkimus on pääosin keskittynyt aurinkokennon eri komponenttien (aktiivisten materiaalien) ominaisuuksiin, kun taas eri materiaalien rajapinnat ovat jääneet vähemmälle huomiolle. Eri materiaalien välisillä rajapinnoilla on huomattavan erilaisia ominaisuuksia verrattuna puhtaisiin materiaaleihin. Rajapintojen ominaisuudet voivat kuitenkin vaikuttaa merkittävästi aurinkokennojen toimintaan. Tämän väitöstutkimuksen tarkoituksena on selventää joitain rajapintoihin liittyviä toimintoja orgaanisissa diodeissa ja aurinkokennoissa. Käsiteltävät rajapinnat ovat rajapinta kontaktin ja aktiivisen kerroksen välillä (metallis-orgaaninen) ja rajapinta donorin ja akseptorin välillä (orgaanis-orgaaninen). Tutkimustulokset osoittavat, että metallis-orgaaniset rajapinnat tulee suunnitella huolellisesti, jotta tehokkuuden alenemista voidaan rajoittaa. Mikäli kontakti ei ole ideaalisti suunniteltu, vähenee tehokkuus huomattavasti, mikä johtuu elektronien tehottomasta ekstrahoinnista. Jopa ideaalisilta vaikuttavat kontaktit voivat johtaa tehokkuuden alenemiseen, mikäli varaus siirtyy spontaanisti metallista orgaaniseen kerrokseen, sillä tämä alentaa jännitettä jonka kenno voi tuottaa. Kennon orgaanis-orgaaninen rajapinta vaikuttaa siihen, kuinka paljon virtaa kenno pystyy tuottamaan. Rajapinnan ominaisuuksista riippuen materiaalin rekombinaatio on hallittavissa.

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This thesis presents an analysis of recently enacted Russian renewable energy policy based on capacity mechanism. Considering its novelty and poor coverage by academic literature, the aim of the thesis is to analyze capacity mechanism influence on investors’ decision-making process. The current research introduces a number of approaches to investment analysis. Firstly, classical financial model was built with Microsoft Excel® and crisp efficiency indicators such as net present value were determined. Secondly, sensitivity analysis was performed to understand different factors influence on project profitability. Thirdly, Datar-Mathews method was applied that by means of Monte Carlo simulation realized with Matlab Simulink®, disclosed all possible outcomes of investment project and enabled real option thinking. Fourthly, previous analysis was duplicated by fuzzy pay-off method with Microsoft Excel®. Finally, decision-making process under capacity mechanism was illustrated with decision tree. Capacity remuneration paid within 15 years is calculated individually for each RE project as variable annuity that guarantees a particular return on investment adjusted on changes in national interest rates. Analysis results indicate that capacity mechanism creates a real option to invest in renewable energy project by ensuring project profitability regardless of market conditions if project-internal factors are managed properly. The latter includes keeping capital expenditures within set limits, production performance higher than 75% of target indicators, and fulfilling localization requirement, implying producing equipment and services within the country. Occurrence of real option shapes decision-making process in the following way. Initially, investor should define appropriate location for a planned power plant where high production performance can be achieved, and lock in this location in case of competition. After, investor should wait until capital cost limit and localization requirement can be met, after that decision to invest can be made without any risk to project profitability. With respect to technology kind, investment into solar PV power plant is more attractive than into wind or small hydro power, since it has higher weighted net present value and lower standard deviation. However, it does not change decision-making strategy that remains the same for each technology type. Fuzzy pay-method proved its ability to disclose the same patterns of information as Monte Carlo simulation. Being effective in investment analysis under uncertainty and easy in use, it can be recommended as sufficient analytical tool to investors and researchers. Apart from described results, this thesis contributes to the academic literature by detailed description of capacity price calculation for renewable energy that was not available in English before. With respect to methodology novelty, such advanced approaches as Datar-Mathews method and fuzzy pay-off method are applied on the top of investment profitability model that incorporates capacity remuneration calculation as well. Comparison of effects of two different RE supporting schemes, namely Russian capacity mechanism and feed-in premium, contributes to policy comparative studies and exhibits useful inferences for researchers and policymakers. Limitations of this research are simplification of assumptions to country-average level that restricts our ability to analyze renewable energy investment region wise and existing limitation of the studying policy to the wholesale power market that leaves retail markets and remote areas without our attention, taking away medium and small investment into renewable energy from the research focus. Elimination of these limitations would allow creating the full picture of Russian renewable energy investment profile.

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Thin-film photovoltaic solar cells based on the Cu(In1−xGax)Se2 (CIGS) alloys have attracted more and more attention due to their large optical absorption coefficient, long term stability, low cost, and high efficiency. Modern theoretical studies of this material with first-principles calculations can provide accurate description of the electronic structure and yield results in close agreement with experimental values, but takes a large amount of calculation time. In this work, we use first-principles calculations based on the computationally affordable meta- generalized gradient approximation of the density-functional theory to investigate electronic and structural properties of the CIGS alloys. We report on the simulation of the lattice parameters and band gaps, as a function of chemical composition. The obtained results were found to be in a good agreement with the available experimental data.