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Abstract

This paper sets out to characterise and analyse logical atomism of Bertrand Russell. Main tenets of that theory are described by reference to Russell’s lecture Facts and Propositions (1918) and to other publications by that author. The essential claims of Russell’s position are discussed and confronted with tenets of ontology of situations developed by Bogusław Wolniewicz, a position inspired by logical atomism of Ludwig Wittgenstein. The author argues that several of Russell’s theses on logical atomism can be interpreted in the light of Wolniewicz’s ontology of situations. Finally, some minor concluding remarks are offered that can help to develop an ontology conceived in the spirit of the ontology of logical atomism. 366 Janusz Kaczmarek
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Authors and Affiliations

Janusz Kaczmarek
1
ORCID: ORCID

  1. Uniwersytet Łódzki, Instytut Filozofii, ul. Lindleya 3/5, 90-131 Łódź
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Abstract

A high performance and light-weight wound composite material wheel has been developed and is intended to be used for many purposes. One of these applications is marine current turbine (MCT). Traditionally, major problems influencing the design and operation of MCTs are fatigue, cavitation and corrosion due to the sea water. Considering these factors, implementation of composite materials, especially Kevlar fiber/epoxy matrix, in MCTs is explained in this paper. This novel design pattern of composite material marine current turbine (CMMCT) shows many advantages compared to conventional turbines. This paper investigated several factors which should be considered during this novel turbine design process such as the composite material selection, filament winding of composite wheel and turbine's structural and cavitation analysis. The power coefficient of CMMCT by using CFD is also obtained and the experimental facilities for testing CMMCT in a water towing tank are briefly described.

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Authors and Affiliations

Jifeng Wang
Janusz Piechna
Norbert Müller
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Abstract

In this study, the turbulent non-premixed methane-air flame is simulated to determine the effect of air velocity on the length of flame, temperature distribution and mole fraction of species. The computational fluid dynamics (CFD) technique is used to perform this simulation. To solve the turbulence flow, k-ε model is used. In contrast to the previous works, in this study, in each one of simulations the properties of materials are taken variable and then the results are compared. The results show that at a certain flow rate of fuel, by increasing the air velocity, similar to when the properties are constant, the width of the flame becomes thinner and the maximum temperature is higher; the penetration of oxygen into the fuel as well as fuel consumption is also increased. It is noteworthy that most of the pollutants produced are NOx, which are strongly temperature dependent. The amount of these pollutants rises when the temperature is increased. As a solution, decreasing the air velocity can decrease the amount of these pollutants. Finally, comparing the result of this study and the other work, which considers constant properties, shows that the variable properties assumption leads to obtaining more exact solution but the trends of both results are similar.

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Authors and Affiliations

Zafar Namazian
Heidar Hashemi
Farideh Namazian

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