SELECTION OF THE TECHNICAL SOLUTION SCHEME OF THE ENERGY GENERATING STEPS

Abstract

Problem. Energy saving and energy efficiency is the pressing issue for now. One way to solve this problem is the implementation of various types of systems and devices that not only fulfill the function of energy saving but are also able to generate a certain amount of energy for its further use. Such pieces of equipment that are small, have good mobility and can easily be installed, are particularly relevant. One of the types of them is a power generating step based on a conversion of kinetic energy into electrical one. Goal. Investigation of technical solution schemes for the development of the power generating steps, converting kinetic energy into electrical one and experimental testing of the chosen solution. Methodology. We used the analytical methods of research on the development and application of methods and devices for transforming the kinetic energy into electricity. Also, experimental methods of research and mathematical methods of processing experimental research were used. Results. The analysis of publications on the ways of converting various types of energy into electric power was carried out. The technical decision schemes concerning the development of the energy generating steps that transform kinetic energy into electric one were analyzed. The advantages and disadvantages of the existing schemes of the energy generating steps were explored. The chosen version of the scheme of the technical solution of the energy generating steps was experimentally investigated. The performed calculations showed, that if there are 10 such devices with the pressing number ~ 10 thousand in a day, you can receive ~ 68 kW/Year of generated power of electrical energy. Originality. We improved the method of determination of the parameters of generated electric energy during its transformation. The modes of converting kinetic energy into electric one found further development by improving the structural elements of the system. Practical value. The proposed power generating step can be used as an alternative source of electric energy in crowded places with intensive people traffic. Installing such power generating steps will lead to reduced costs on electricity.

Authors and Affiliations

A. Hnatov, Shch. Arhun, O. Dzyubenko

Keywords

Related Articles

TECHNICAL REQUIREMENTS AND METHODS OF BITUMEN BINDERS TESTING ACCORDING TO THE SHRP PROGRAM

The essence of the American system SHRP Superpave for assessing the bituminous binders quality is expounded. The technique of the USA territory zoning according to the working condi-tions of binders in the pavement is re...

GREENING OF ELECTRODE PRODUCTION ENTERPRISES BY CATALYTIC GAS EMISSION DISPOSAL

Modeling of pollutant emission dispersion into the air at JSC "Ukrgrafit" is carried out. Concentrations of naphthalene, phenol and carbon monoxide in the air taking into account the background exceed the sanitary norms....

ВПЛИВ ВМІСТУ ТЕРМОЕЛАСТОПЛАСТІВ НА ВЛАСТИВОСТІ ТА СТАРІННЯ БІТУМІВ РІЗНОГО ВИРОБНИЦТВА

Розглянуто вплив вмісту термоеластопластів на властивості окиснених та дистиляційних бітумів. Досліджено зміну властивостей модифікованих бітумів під час їх прогрівання згідно з ГОСТ 18180 та ДСТУ EN 12607-1 (EN 12607-1:...

ИЗМЕНЕНИЕ ЭКОНОМИЧЕСКИХ ИНДИКАТОРНЫХ ПОКАЗАТЕЛЕЙ ПНЕВМОДВИГАТЕЛЯ ПО СКОРОСТНЫМ ХАРАКТЕРИСТИКАМ

Рассмотрены изменения индикаторных показателей поршневого пневмодвигателя D/S = 76/66 с золотниковым воздухораспределителем при его работе по скоростным характеристикам рвх = idem при неизменной температуре сжатого возду...

OPERATION CHARACTERISTICS OF THE ACCELERATION VALVE OF ADVANCED DESIGN

The design of an advanced acceleration valve is presented. Based on the results of mathematical modeling of working processes that occur during the acceleration valve operation there was shown the difference of the propo...

Download PDF file
  • EP ID EP423931
  • DOI -
  • Views 71
  • Downloads 0

How To Cite

A. Hnatov, Shch. Arhun, O. Dzyubenko (2018). SELECTION OF THE TECHNICAL SOLUTION SCHEME OF THE ENERGY GENERATING STEPS. Вестник Харьковского национального автомобильно-дорожного университета, 81(), 29-38. https://europub.co.uk/articles/-A-423931