155 resultados para power position
Resumo:
Russia has been one of the fastest developing economic areas in the world. Based on the GDP, the Russian economy grew evenly since the crisis in 1998 up till 2008. The growth in the gross domestic product has annually been some 5–10%. In 2007, the growth reached 8.1%, which is the highest figure after the 10% growth in 2000. Due to the growth of the economy and wage levels, purchasing power and consumption have been strongly increasing. The growing consumption has especially increased the imports of durables, such as passenger cars, domestic appliances and electronics. The Russian ports and infrastructure have not been able to satisfy the growing needs of exports and imports, which is why quite a large share of Russian foreign trade is going through third countries as transit transports. Finnish ports play a major role in transit transports to and from Russia. About 15% of the total value of Russian imports was transported through Finland in 2008. The economic recession that started in autumn 2008 and continues to date has had an impact on the economic development of Russia. The export income has decreased, mainly due to the reduced world market prices of energy products (oil and gas) and raw minerals. Investments have been postponed, getting credit is more difficult than before, and the ruble has weakened in relation to the euro and the dollar. The imports are decreasing remarkably, and are not forecast to reach the 2008 volumes even in 2012. The economic crisis is reflected in Finland's transit traffic. The volume of goods transported through Finland to and from Russia has decreased almost in the same proportion as the imports of goods to Russia. The biggest risk threatening the development of the Russian economy over long term is its dependence on export income from oil, gas, metals, minerals and forest products, as well as the trends of the world market prices of these products. Nevertheless, it is expected that the GDP of Russia will start to grow again in the forthcoming years due to the increased demand for energy products and raw minerals in the world. At the same time, it is obvious that the world market prices of these products will go up with the increasing demand. The increased income from exports will lead to a growth of imports, especially those of consumer goods, as the living standard of Russian citizens rises. The forecasts produced by the Russian Government concerning the economic development of Russia up till 2030 also indicate a shift in exported goods from raw materials to processed products, which together with energy products will become the main export goods of Russia. As a consequence, Russia may need export routes through third countries, which can be seen as an opportunity for increased transit transports through the ports of Finland. The ports competing with the ports of Finland for Russian foreign trade traffic are the Russian Baltic Sea ports and the ports of the Baltic countries. The strongest competitors are the Baltic Sea ports handling containers. On the Russian Baltic Sea, these ports include Saint Petersburg, Kaliningrad and, in the near future, the ports of Ust-Luga and possibly Vyborg. There are plans to develop Ust-Luga and Vyborg as modern container ports, which would become serious competitors to the Finnish ports. Russia is aiming to redirect as large a share as possible of foreign trade traffic to its own ports. The ports of Russia and the infrastructure associated with them are under constant development. On the other hand, the logistic capacity of Russia is not able to satisfy the continually growing needs of the Russian foreign trade. The capacity problem is emphasized by a structural incompatibility between the exports and imports in the Russian foreign trade. Russian exports can only use a small part of the containers brought in with imports. Problems are also caused by the difficult ice conditions and narrow waterways leading to the ports. It is predicted that Finland will maintain its position as a transit route for the Russian foreign trade, at least in the near future. The Russian foreign trade is increasing, and Russia will not be able to develop its ports in proportion with the increasing foreign trade. With the development of port capacity, cargo flows through the ports of Russia will grow. Structural changes in transit traffic are already visible. Firms are more and more relocating their production to Russia, for example as regards the assembly of cars and warehousing services. Simultaneously, an increasing part of transit cargoes are sent directly to Russia without unloading and reloading in Finland. New product groups have nevertheless been transported through Finland (textile products and tools), replacing the lost cargos. The global recession that started in autumn 2008 has influenced the volume of Russian imports and, consequently, the transit volumes of Finland, but the recession is not expected to be of long duration, and will thus only have a short-term impact on transit volumes. The Finnish infrastructure and services offered by the logistic chain should also be ready to react to the changes in imported product groups as well as to the change in Russian export products in the future. If the development plans of the Russian economy are realized, export products will be more refined, and the share of energy and raw material products will decrease. The other notable factor to be taken into consideration is the extremely fast-changing business environment in Russia. Operators in the logistic chain should be flexible enough to adapt to all kinds of changes to capitalise on business opportunities offered by the Russian foreign trade for the companies and for the transit volumes of Finnish ports, also in the future.
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The purpose of this study was to investigate the nature of co-operation between a project owner and an outside engineering consultant in combined heat and power plant implementation projects. Moreover, as another focal subject of the study was to familiarize the purchasing behavior of the energy producer and how an outside engineering consultant participated into different stages of the purchasing process. The study was carried out as a multiple case study including altogether six Finnish power plant implementation projects that had been taken into commercial use during 1995 – 2015. By adjusting the findings of empirical interview data and comparing those to the theoretical framework concerning, among others, Finnish energy production, engineering consulting businesses, delivery methods of construction project and finally the purchasing process, it can be concluded that especially in the power plant implementation projects in the past have a great influence to decisions made during the project. The role of the main engineering consultant is to act as an assistant, who helps to achieve the project goals successfully rather than an advisor who only knows how the project should be conducted. At least in these five project cases this was the case, meaning that the final decision power always remaining with project owner.
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Tutkimus kuvaa tapahtumia mainonnan suunnittelun kulissien takana ja niiden vaikutusta suunnittelutyöhön mainonnan suunnittelijan näkökulmasta. Lähestymistapa on systeemiteoreettinen: tutkimuksessa tarkastellaan sekä mainostoimiston suunnittelijoiden, projektijohtajien ja muiden mainonnan suunnitteluun osallistuvien keskinäistä vuorovaikutusta että mainostoimiston ja mainoksia tilaavan asiakkaan vuorovaikutuksen asettamia rajoja ja mahdollisuuksia. Keskeinen työväline on Kurt Lewinin kentän käsite. Tutkimuksessa se konkretisoituu esitystavaksi mainonnan suunnittelun olennaisista piirteistä, jotka ovat toisistaan riippuvaisia. Tutkimusta pohjustaa ajatus mainonnan suunnittelun perusrakenteesta, joka on riippumaton taloudellisista, yhteiskunnallisista tai mainostoimialan liiketoimintaympäristön muutoksista. Mainostoimistossa työtä tehdään usein ryhmässä. Ydinryhmä muodostuu kirjoittavan ja visuaalisen suunnittelijan työparista, mutta projektijohtaja on avainasemassa hoitaessaan yhteydenpitoa mainostoimiston asiakkaaseen. Tutkimustyötä viitoittivat kysymykset mainonnan suunnittelijoiden tehtävästä ja asemasta, työssä koetuista haasteista sekä osuudesta ja vastuusta lopullisissa töissä. Keskiössä ovat suunnittelutyötä raamittavat haasteet, jotka ohjaavat suunnittelijoiden kykyjä ja haluja toteuttaa luovuuttaan. Tutkimus ammentaa teoreettisia aineksia työnjaon ja tiimityön käsitteiden ohella vallan tilanteisuudesta ja suhteista sekä sosiaalisen pääoman ja luottamuksen moniaineksisuudesta. Tutkimuksen aineisto kerättiin syksyllä 2008 ja alkuvuodesta 2009 haastattelemalla suomalaisten mainostoimistojen suunnittelijoita. Haastatteluaineisto koostuu kymmenestä ryhmähaastattelusta, johon kuhunkin osallistui 3–4 suunnittelijaa. Muu aineisto sisältää toimialan tilastoja ja julkaisuja sekä yksityisiä sähköpostikirjeenvaihtoja ja keskusteluja mainosammattilaisten kanssa. Haastatteluaineisto analysoitiin Milesin ja Hubermannin aineistolähtöisen sisällönanalyysin avulla ja sitä täydennettiin retorisella diskurssianalyysilla. Analyysin alkuvaiheessa koemetodina sovellettiin Straussin ja Corbinin aineistolähtöisen teorian (grounded theory) kolmivaiheista koodausta. Tutkimuksen tuloksena on malli mainonnan suunnittelun kentän jännitteistä, jotka johtavat toimimaan tietyllä tavalla. Mainonnan suunnittelijan tehtävinä näyttäytyvät vaikuttaminen, asiakkaan tarpeiden tunnistaminen ja tyydyttäminen sekä omakohtainen menestyminen. Suunnittelijan asema näyttää työssä koettujen haasteiden kautta häilyvän asiantuntijuuden ja alihankkijuuden välimaastossa. Työn henkilökohtaisina haasteina piirtyvät tarmokkuuden ja jatkuvan oivaltamisen vaateet. Ulkoisina tekijöinä talouden, teknologian ja sen myötä median murros sekä haastaa että kehittää: alituiseen kiireeseen näytetään verhoavan pulmia, joiden todellinen alkuperä paikantuu muualle. Keskeiset ristiriidat ja toiminnan edellytykset ilmenevät juuri yhteistyössä: mainostoimiston sisäinen yhteistyö ja asiakkaan antama palaute ovat merkittäviä tekijöitä luottamuksen taustalla. Siten avoin ja vastavuoroinen kommunikaatio piirtyy olennaiseksi asetettujen tavoitteiden saavuttamisessa ja asiakkaan menestymisessä. Mainonnan suunnittelussa tärkeäksi kysymykseksi nousevat portinvartijoiden roolit. Mainostoimiston sisäisessä työskentelyssä projektijohtajat hallinnoivat suunnitteluresursseja, välittävät tietoa asiak kaalta suunnittelijalle ja päinvastoin sekä tekevät tärkeimmät päätökset. Asiakkaan puolella mainoksia tilaava asiakashenkilö hallinnoi valjastamiaan resursseja, mutta varsinainen päätöksenteko tapahtuu tämän esimiehen toimesta. Tulosten valossa on perusteltua uskoa, että mainonnan suunnittelijat kokevat oman työnsä arvon alentuneen ja päätösvaltansa vähentyneen. Mainostoimialan murroksen kannalta tutkimus tuo esiin uudenlaisen tiimityön ymmärtämisen ja korostaa yksilöiden vahvuuksien tunnistamisen merkitystä. Kiristyvässä taloudessa se suuntaa huomion sekä mainostoimistojen että niiden asiakasyritysten sisäisten ja ulkoisten resurssien tehokkaaseen ja tuottavaan hyödyntämiseen ja organisoimiseen. Sosiologisesti tutkimus tarjoaa yhdenlaisen näkökulman ryhmätyön ulottuvuuksiin ja työelämän yhteistyöhaasteiden pohtimiseen. Siten tutkimuksen tuloksilla voi nähdä arvoa myös muiden kuin mainosalan yhteistyökäytäntöjentarkasteluun.
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Welding is one of the most important process of modern industry. Welding technology is used in the manufacture and repair a wide variety of products from different metals and alloys. In this thesis the different aspects of arc welding were discussed, such as stability and control of welding arc, power supplies for arc welding (especially the welding inverters because it is the most modern welding power source). All parameters of power source have influence on the arc parameters and its by-turn influence on quality. The ways of control for arc welding inverter power sources have been considered. Calculations and modeling in Matlab/Simulink were done for PI control method. All parameters of power source have influence on the arc parameters and its by-turn influence on quality.
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The demand for electricity is constantly growing in contemporary world and, in the same time, quality and reliability requirements are becoming more rigid. In addition, renewable sources of energy have been widely introduced for power generation, and they create specific challenges for the network. Consequently, new solution for distribution system is required, and Low Voltage Direct Current (LVDC) system is the proposed one. This thesis focuses on the investigation of specific cable features for low voltage direct current (LVDC) distribution system. The LVDC system is public ±750 VDC distribution system, which is currently being developed at Lappeen-ranta University of Technology. The aspects, considered in the thesis, are reliable and economic power transmission in distribution networks and possible power line communication in the LVDC cable.
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Tutkielman tavoitteena on kuvata valtio-omistajan vaikutusmahdollisuudet ja vaikuttamiskeinot valtioenemmistöisen osakeyhtiön hallintoon voimassa olevan osakeyhtiölain mukaisesti. Tutkielmassa paneudutaan osakeyhtiön johdon tehtävien ja velvollisuuksien lisäksi valtion rooliin ja asemaan yhtiön omistajana sekä selvitetään valtion omistajavallan jakautumista valtiollisten toimijoiden välillä. Tutkimusmetodina on käytetty oikeusdogmatiikkaa. Tutkielman pääasiallisena lähdeaineistona on voimassa oleva lainsäädäntö valmisteluaineistoineen. Lisäksi lähteinä on käytetty kotimaista oikeuskirjallisuutta, viranomaisten ohjeistuksia ja kannanottoja sekä ajankohtaisia asiantuntija-artikkeleita. Osakeyhtiö on nykyisin tyypillisin yritysmuoto liiketoiminnan harjoittamiseen myös valtion omistamana. Valtio omistaa merkittävästi osakkeita hyvin erityyppisissä yhtiöissä ja hyvin erisuuruisin osuuksin. Enemmistöosakkeenomistajuus tuo käytännössä valtiolle päätösvallan yhtiökokouksessa yhtiön merkittävistä ja laajakantoisista asioista strategisista linjauksista ja hallituksen jäsenten valinnasta päätettäessä. Jo yhtiötä perustettaessa valtio enemmistöosakkaana voi määrätä yhtiöjärjestyksessä melko vapaasti yhtiön tarkoituksesta ja hallinnon järjestämisestä. Hallitus ja toimitusjohtaja toimivat omistajan tahdon ja yhtiön tarkoituksen mukaisesti, mutta kuitenkin itsenäisesti yhtiön edun parhaaksi. Valtio-omistajuus ei tarkoita osakeyhtiön hallinnon ja toiminnan erilaisuutta muihin yhtiöihin nähden, vaan yhtiö toimii hyvän hallintotavan mukaisesti liiketoimintaperiaattein, johon myös valtion omistajaohjauksella pyritään.
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Konferenssiesitelmä: PHOTOGRAPHY NEXT International Conference at Moderna museet and Nordiska Museet, Stockholm, 4-5 February, 2010
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Cutting of thick section stainless steel and mild steel, and medium section aluminium using the high power ytterbium fibre laser has been experimentally investigated in this study. Theoretical models of the laser power requirement for cutting of a metal workpiece and the melt removal rate were also developed. The calculated laser power requirement was correlated to the laser power used for the cutting of 10 mm stainless steel workpiece and 15 mm mild steel workpiece using the ytterbium fibre laser and the CO2 laser. Nitrogen assist gas was used for cutting of stainless steel and oxygen was used for mild steel cutting. It was found that the incident laser power required for cutting at a given cutting speed was lower for fibre laser cutting than for CO2 laser cutting indicating a higher absorptivity of the fibre laser beam by the workpiece and higher melting efficiency for the fibre laser beam than for the CO2 laser beam. The difficulty in achieving an efficient melt removal during high speed cutting of the 15 mmmild steel workpiece with oxygen assist gas using the ytterbium fibre laser can be attributed to the high melting efficiency of the ytterbium fibre laser. The calculated melt flow velocity and melt film thickness correlated well with the location of the boundary layer separation point on the 10 mm stainless steel cut edges. An increase in the melt film thickness caused by deceleration of the melt particles in the boundary layer by the viscous shear forces results in the flow separation. The melt flow velocity increases with an increase in assist gas pressure and cut kerf width resulting in a reduction in the melt film thickness and the boundary layer separation point moves closer to the bottom cut edge. The cut edge quality was examined by visual inspection of the cut samples and measurement of the cut kerf width, boundary layer separation point, cut edge squareness (perpendicularity) deviation, and cut edge surface roughness as output quality factors. Different regions of cut edge quality in 10 mm stainless steel and 4 mm aluminium workpieces were defined for different combinations of cutting speed and laserpower.Optimization of processing parameters for a high cut edge quality in 10 mmstainless steel was demonstrated
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The increasing power demand and emerging applications drive the design of electrical power converters into modularization. Despite the wide use of modularized power stage structures, the control schemes that are used are often traditional, in other words, centralized. The flexibility and re-usability of these controllers are typically poor. With a dedicated distributed control scheme, the flexibility and re-usability of the system parts, building blocks, can be increased. Only a few distributed control schemes have been introduced for this purpose, but their breakthrough has not yet taken place. A demand for the further development offlexible control schemes for building-block-based applications clearly exists. The control topology, communication, synchronization, and functionality allocationaspects of building-block-based converters are studied in this doctoral thesis. A distributed control scheme that can be easily adapted to building-block-based power converter designs is developed. The example applications are a parallel and series connection of building blocks. The building block that is used in the implementations of both the applications is a commercial off-the-shelf two-level three-phase frequency converter with a custom-designed controller card. The major challenge with the parallel connection of power stages is the synchronization of the building blocks. The effect of synchronization accuracy on the system performance is studied. The functionality allocation and control scheme design are challenging in the seriesconnected multilevel converters, mainly because of the large number of modules. Various multilevel modulation schemes are analyzed with respect to the implementation, and this information is used to develop a flexible control scheme for modular multilevel inverters.
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The objective of this master's thesis is to compare two different generator systems for wind turbines. It is the doubly fed induction generator system with three stage gearbox and the direct drive permanent magnet generator system. The comparison of generator systems is based on annual energy production for a given wind climate. For comparison a 3 MW, 15 rpm wind turbine is used. Modelling of a turbine rotor, gearbox and converters were done. Design of two generators was done and their performance was examined.
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Tutkielman tavoitteena on tiivistetysti edesauttaa Lappeenrannan Lifeterveyskaupan yritysmyyntiprosessia kuvailemalla kohdeyrityksen strategiaa, menestystekijöitä ja houkuttelevuutta yritysostajan näkökulma huomioiden siten, että niiden hahmottaminen ja omaksuminen helpottuu yritysostajalle. Tutkielman sisältöä voidaan hyödyntää yritysmyyntiprosessissa sellaisenaan tai tarpeen mukaan muunneltuna. Tutkielma on kvalitatiivinen tapaustutkimus, joka sisältää piirteitä käsite- ja toiminta-analyyttisestä sekä osin nomoteettisesta tutkimusotteesta. Aineisto kerättiin puolistrukturoiduilla teemahaastatteluilla. Kohdeyrityksen strategia on asiakaslähtöinen. Perusstrategia kohdeyrityksessä on riippuvainen kilpailijakontekstista, mutta useimmissa tapauksissa kilpailuetu perustuu differointiin. Suurena terveyskaupan erikoisliikkeenä voidaan hyödyntää myös suuruuden ekonomiaa. Yrityksen toiminta on alalle fokusoitua. Life-terveyskauppaketjuun kuuluminen ja erinomainen liiketilan sijainti ovat olleet tärkeitä tekijöitä menestyksessä. Runsas mainonta, suuri neuvotteluvoima toimittajiin nähden, tuoteportfolion hallinta, osaava henkilöstö ja hyvät sopimusehdot ovat edesauttaneet menestystä. Venäjä-potentiaali Lappeenrannassa on suuri. Markkina-asema on talousaseman ohella erinomainen ja hyödyksi sekä yritykselle että yritysostajalle.
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Finlands industri har av tradition varit starkt energikrävande. Träförädlingsindustrin, som fick sin egentliga start i medlet på 1800-talet, använde stora mängder energi liksom metallförädlingsföretagen i ett senare skede. Krigstiden med sin energiransonering visade handgripligen för allmänheten liksom för specialisterna att en tillräcklig tillgång till energi är ett livsvillkor för vår industri och därmed för vårt land. Efterkrigstiden kännetecknades av en allt snabbare utbyggnad av den på vatten- och ångkraft baserade elkraftskapaciteten, en utbyggnad som den inhemska verkstadsindustrin i stor utsträckning deltog i. Men redan på 1950-talet var vattenkraften till stor del utbyggd, varför den privata såväl som den statliga sektorns intresse allt mera inriktade sig på den speciellt i USA favoriserade atomenergin. Efter fördjupade studier i kärnfysik och kärnteknik vid the International School of Nuclear Science and Engineering i USA deltog författaren av dessa rader intensivt (först som Ahlströmanställd och senare som VD för Finnatom) i den utvecklingsverksamhet inom det kärntekniska området som inte bara elproducenterna utan även verkstadsindustrin i vårt land genomförde. Det var därför naturligt för mig att som objekt för min doktorsavhandling välja introduktionen av kärnkraften i Finland med speciell fokus på den inhemska verkstadsindustrins roll. Jag ställde följande forskningsfrågor: a. När och hur skedde introduktionen av kärnkraften i Finland? b. Vilka var orsakerna till och resultatet av denna introduktion? c. Vilken var den inhemska verkstadsindustrins roll? Ett grundligt studium av litteraturen inklusive mötesprotokoll och tidningsreferat samt personligen genomförda intervjuer med ett trettiotal av de verkliga aktörerna i den långa och komplicerade introduktionsprocessen ledde till en teori, vars riktighet jag anser mig ha kunnat bevisa. Den inhemska verkstadsindustrins roll var synnerligen central. Dess representanter lyckades, bl.a. refererande till erfarenheterna från utbyggnaden av vatten- och ångkraften liksom till byggandet av den underkritiska milan YXP samt forskningsreaktorn TRIGA, övertyga beslutsfattarna om att den besatt nödig kompetens för att kompensera den kompetensbrist som kunde iakttas inom vissa områden hos den sovjetiska kärnkraftverksleverantören. De inhemska leveranserna påverkade även driftsresultatet, speciellt i fallet Lovisa, i positiv riktning. Introduktionsprocessen, som omfattade tiden från slutet av 1950-talet till början på 1980-talet, beskrevs, noterande bl.a. J. W. Creswells anvisningar, i detalj i avhandlingen. Introduktionen fick som resultat konkurrenskraftig elkraft, impuls till start av nya företag, exempelvis Nokia Elektronik, liksom en klar höjning av den tekniska nivån hos vår industri, inkluderande kärnteknisk tillverkning i stor skala. Katastrofen i Tjernobyl i slutet av april 1986 innebar emellertid att utvecklingen tog en paus på ett par decennier. Erfarenheterna från introduktionsfasen kan förhoppningsvis utnyttjas till fullo nu, när utbyggnaden av kärnkraften återupptagits i vårt land.
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The objective of this dissertation is to improve the dynamic simulation of fluid power circuits. A fluid power circuit is a typical way to implement power transmission in mobile working machines, e.g. cranes, excavators etc. Dynamic simulation is an essential tool in developing controllability and energy-efficient solutions for mobile machines. Efficient dynamic simulation is the basic requirement for the real-time simulation. In the real-time simulation of fluid power circuits there exist numerical problems due to the software and methods used for modelling and integration. A simulation model of a fluid power circuit is typically created using differential and algebraic equations. Efficient numerical methods are required since differential equations must be solved in real time. Unfortunately, simulation software packages offer only a limited selection of numerical solvers. Numerical problems cause noise to the results, which in many cases leads the simulation run to fail. Mathematically the fluid power circuit models are stiff systems of ordinary differential equations. Numerical solution of the stiff systems can be improved by two alternative approaches. The first is to develop numerical solvers suitable for solving stiff systems. The second is to decrease the model stiffness itself by introducing models and algorithms that either decrease the highest eigenvalues or neglect them by introducing steady-state solutions of the stiff parts of the models. The thesis proposes novel methods using the latter approach. The study aims to develop practical methods usable in dynamic simulation of fluid power circuits using explicit fixed-step integration algorithms. In this thesis, twomechanisms whichmake the systemstiff are studied. These are the pressure drop approaching zero in the turbulent orifice model and the volume approaching zero in the equation of pressure build-up. These are the critical areas to which alternative methods for modelling and numerical simulation are proposed. Generally, in hydraulic power transmission systems the orifice flow is clearly in the turbulent area. The flow becomes laminar as the pressure drop over the orifice approaches zero only in rare situations. These are e.g. when a valve is closed, or an actuator is driven against an end stopper, or external force makes actuator to switch its direction during operation. This means that in terms of accuracy, the description of laminar flow is not necessary. But, unfortunately, when a purely turbulent description of the orifice is used, numerical problems occur when the pressure drop comes close to zero since the first derivative of flow with respect to the pressure drop approaches infinity when the pressure drop approaches zero. Furthermore, the second derivative becomes discontinuous, which causes numerical noise and an infinitely small integration step when a variable step integrator is used. A numerically efficient model for the orifice flow is proposed using a cubic spline function to describe the flow in the laminar and transition areas. Parameters for the cubic spline function are selected such that its first derivative is equal to the first derivative of the pure turbulent orifice flow model in the boundary condition. In the dynamic simulation of fluid power circuits, a tradeoff exists between accuracy and calculation speed. This investigation is made for the two-regime flow orifice model. Especially inside of many types of valves, as well as between them, there exist very small volumes. The integration of pressures in small fluid volumes causes numerical problems in fluid power circuit simulation. Particularly in realtime simulation, these numerical problems are a great weakness. The system stiffness approaches infinity as the fluid volume approaches zero. If fixed step explicit algorithms for solving ordinary differential equations (ODE) are used, the system stability would easily be lost when integrating pressures in small volumes. To solve the problem caused by small fluid volumes, a pseudo-dynamic solver is proposed. Instead of integration of the pressure in a small volume, the pressure is solved as a steady-state pressure created in a separate cascade loop by numerical integration. The hydraulic capacitance V/Be of the parts of the circuit whose pressures are solved by the pseudo-dynamic method should be orders of magnitude smaller than that of those partswhose pressures are integrated. The key advantage of this novel method is that the numerical problems caused by the small volumes are completely avoided. Also, the method is freely applicable regardless of the integration routine applied. The superiority of both above-mentioned methods is that they are suited for use together with the semi-empirical modelling method which necessarily does not require any geometrical data of the valves and actuators to be modelled. In this modelling method, most of the needed component information can be taken from the manufacturer’s nominal graphs. This thesis introduces the methods and shows several numerical examples to demonstrate how the proposed methods improve the dynamic simulation of various hydraulic circuits.
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In this thesis, analysis of electromagnetic compatibility of high-power photovoltaic solar plant is made. Current standards suitable for photovoltaic applications are given. Measurements of antenna factor for experimental setup are shown. Also, measurements of common mode disturbance voltages in high-power solar plant are given. Importance of DC-side filter is shown. In the last part of the work, electromagnetic simulations are made. These simulations show influence of several factors to EMC of power plant. Based on these simulations and measurements recommendations are given.