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Featured researches published by M. Klimkiewicz.


Journal of KONES | 2015

EXPERIMENTAL TEST OF COMMON RAIL DIESEL ENGINE SUPPLIED WITH DIESEL FUEL - RAPE SEED OIL MIXTURES

M. Klimkiewicz; Remigiusz Mruk; Pawel Oleszczak

In the next few decades, the resources of oil will be depleted. From the other hand, growing market and usage of oils cause increase of oil price. Additionally, only some countries have oil deposits large enough to be independent from foreign suppliers. All these reasons show need for searching and development of new fuels, which can replace traditional ones produced from oil. One of the solutions for Diesel engines are bio-fuels produced from various vegetable oils like rapeseed, coconut or palm oil. Nowadays, the majority of new Diesel engines are equipped with Common Rail fuel injections system. It enables to achieve higher power of the engine, lower emissions and lower fuel consumption. This suggests that the Common rail system should be also utilized in Diesel engines supplied with bio-fuels, produced from various plants, as it was mentioned above. However, the bio-fuels have some properties much different from those of conventional Diesel fuel, for example they usually have significantly higher viscosity. In consequence, the fuel supply and fuel injection systems require some modifications. The paper presents results of the experimental test of Common Rail Diesel engine supplied with four fuels: standard Diesel fuel, rapeseed oil and two mixtures of these fuels: 70% of Diesel with 30% of rape seed oil and 50% of Diesel fuel with 50% of rape seed oil. For the research, a new test bench was built in Faculty of Production Engineering, Warsaw University of Life Sciences. The main element of the test bench is one cylinder, direct injection engine Farymann Diesel 18W. Originally, the engine was equipped with mechanical Bosh direct injection system, which was replaced with Common Rail system. The test bench enables measurements of various parameters: torque, pressure inside the cylinder, temperature of cooling water and exhaust gases, emissions etc. The tests of the modified engine were conducted with use of several types of piston and injector.


Renewable Energy | 2015

An analysis of metal concentrations in food wastes for biogas production

Marta Bożym; Iwona Florczak; Paulina Zdanowska; Janusz Wojdalski; M. Klimkiewicz


Teka Komisji Motoryzacji i Energetyki Rolnictwa | 2011

Energetic and technological analysis of the process of oil pressing from winter rape

Adam Drosio; M. Klimkiewicz; Remigiusz Mruk


Inżynieria Rolnicza | 2008

Zastosowanie zbiorów przybliżonych do analizy satysfakcji klienta serwisu pojazdów

M. Klimkiewicz; Katarzyna Moczulska; Katedra Organizacji


Inżynieria Rolnicza | 2005

Zastosowanie sieci neuronowych w diagnostyce aparatury paliwowej silników o zapłonie samoczynnym

M. Klimkiewicz


Annals of Warsaw University of Life Sciences - SGGW, Agriculture | 2017

Detection of potatoes damages by thermal imaging

M. Klimkiewicz; Łukasz Sokolnicki; Karol Tucki


Logistyka | 2015

Badania procesu spalania mieszanin oleju napędowego i surowego oleju rzepakowego jako element projektowania wyrobu

Remigiusz Mruk; M. Klimkiewicz; Katarzyna Botwińska


Logistyka | 2015

Wykorzystanie metod numerycznych w modelowaniu układów zasilania silników wysokoprężnych zasilanych biopaliwami, jako przykład komputerowego wspomagania procesów produkcji w logistyce

Remigiusz Mruk; M. Klimkiewicz; Katarzyna Botwińska


Logistyka | 2015

Ocena rozkładu temperatury zewnętrznej silnika o zapłonie samoczynnym zasilanego olejem napędowym oraz nieprzetworzonym olejem rzepakowym za pomocą pomiarów termowizyjnych

Krzysztof Człapiński; M. Klimkiewicz; Katarzyna Botwińska; Remigiusz Mruk; Paweł Obstawski


Logistyka | 2015

Ocena niezawodności silnika o zapłonie samoczynnym zasilanego nieprzetworzonym olejem rzepakowym metodą FTA

M. Klimkiewicz; Katarzyna Botwińska; Remigiusz Mruk; Jacek Słoma; Karol Tucki

Collaboration


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Remigiusz Mruk

Warsaw University of Life Sciences

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Karol Tucki

Warsaw University of Life Sciences

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Katarzyna Botwińska

Warsaw University of Life Sciences

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Jacek Słoma

Warsaw University of Life Sciences

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Iwona Florczak

Warsaw University of Life Sciences

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Janusz Wojdalski

Warsaw University of Life Sciences

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Justyna Nieznalska

Warsaw University of Life Sciences

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Marta Bożym

Opole University of Technology

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P. Tomczykowski

Warsaw University of Life Sciences

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Paulina Zdanowska

Warsaw University of Life Sciences

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