Introduction of the compensatory method of gas sample control in universal systems of ecological diagnostics of diesel engines – microtunnels

  • A. P. Polivyanchuk O. M. Beketov National University of Urban Economy in Kharkiv
  • O. I. Kaslin National Technical University “Kharkiv Polytechnic Institute”
  • M. F. Smirny O. M. Beketov National University of Urban Economy in Kharkiv
  • O. P. Strokov Classic Private University
  • O. O. Skuridina Volodymyr Dahl East Ukrainian National University
Keywords: diesel, exhaust gases, gas sample, microtunnel, compensation method, differential method, accuracy

Abstract

Purpose. The development, implementation and confirmation of the practical suitability of the compensatory method for monitoring a gas sample in microtunnels, which is significantly less expensive than the known analogs, in particular the differential method used in the AVL SPC 472 measuring system. Methods. Analysis and synthesis of information on methods for controlling gas samples, regression analysis in the construction of calibration dependences, experimental studies of the method under study, a calculated experiment in evaluating the accuracy of determining the dilution factor of a sample. Results. Measures have been developed to introduce an inexpensive compensatory method for controlling gas samples in universal systems for the ecological diagnosis of diesel engines – microtunnels: the method of calibrating the flowmeters of this method - standard narrowing devices, the method of indirect measurement of the mass flow rate of the sample in a microtunnel, the algorithm for regulating the flow rate of the sampled sample. Conclusions. Theoretically justified, the expediency of using the compensation method of sample control, which is 5 ... 8 times cheaper than the known analogue - the differential method used in the microtunnel AVL SPC 472. It has been experimentally confirmed that, when implementing the compensation test method, inexpensive flow meters - standard tapering devices with a precision class of 1.5 provide the required accuracy of measurements of the dilution factor of exhaust gases by air with an error not exceeding the permissible value of ± 4% and can be used in universal ecological diagnostic systems diesels - microtonules.

 

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Author Biographies

A. P. Polivyanchuk, O. M. Beketov National University of Urban Economy in Kharkiv

доктор технічних наук, професор

M. F. Smirny, O. M. Beketov National University of Urban Economy in Kharkiv

доктор технічних наук, професор

O. P. Strokov, Classic Private University

доктор технічних наук, професор

References

Polivyanchuk A. Improving the efficiency of emission control dispersed particles from diesel exhaust gases. Вісник Харківського національного університету ім. Каразіна. Серія «Екологія». 2014. №1140, вип. 11. С. 83-88.

2. Polivyanchuk A., Parsadanov I. Experimental verification of microtunnel MKT-2 on the brake stand autotractor diesel engine . Industrial technology and engineering. Republic of Kazakhstan. 2015. №2 (15). P. 11-16.

3. Поливянчук А.П. Повышение эффективности систем экологического диагностирования дизельних силових установок – туннелей . Людина та довкілля. Проблеми неоекології. 2016. № 3-4 (26). С. 132-140.

4. Regulation No 49. Revision 6. Uniform provision concerning the approval of compression ignition (C.I.) and natural gas (NG) engines as well as positiveignition (P.I.) engines fuelled with liquefied petroleum gas (LPG) and vehicles equipped with C.I. and NG engines and P.I. engines fuelled with LPG, with regard to the emissions of pollutants by the engine. / United Nations Economic and Social Council Economic Commission for Europe Inland Transport Committee Working Party on the Construction of Vehicles. // E/ECE/TRANS/505, 2013. 434 p.

5. Regulation № 96. Revision 3. Uniform provision concerning the approval of compression ignition (C.I.) engines to be installed in agricultural and forestry tractors with regard to the emissions of pollutants by the engine. E/ECE/TRANS/505. 2014. 416 p.

6. ISO 8178-1: 2017. Reciprocating internal combustion engines. Exhaust emission measurement. Part 1: Test-bed measurement of gaseous and particulate exhaust emissions, 2017. 150 p.

7. Smart Sampler PC SPC 472. PC program for SPC 472 control. AVL, List GmbH Graz, 1993. – 76 р.

8. Lianga Z., Tiana J., Rezaeia S., Zhanga Y. Investigation of SVOC nanoparticle emission from light duty diesel engine using GC×GC-ToF-MS . School of Mechanical Engineering, University of Birmingham. 2015. 31 р.

9. Поливянчук А., Игнатов О. Оценка эффективности компенсационного способа измерения массового расхода отработавших газов дизеля в микротуннеле. Прикладна екологія. 2009.№ 1(5). С 149-154.

10. Поливянчук А.П. Сравнительный анализ дифференциального и компенсационного способов измерения массового расхода отработавших газов дизеля в микротуннеле. Двигатели внутреннего сгорания. 2011. №2. С. 123-126.

11. Ханженков В.И. Аэродинамические характеристики коллекторов. Промышленная аэродинамика, №4. – М.: Изд-во ЦАГИ, 1953. С.45-62.

12. РД 50-213-80. Правила измерения расхода газов и жидкостей стандартными сужающими устройствами. М.: Изд-во стандартов, 1982. 319 с.
Published
2017-12-29
How to Cite
Polivyanchuk, A. P., Kaslin, O. I., Smirny, M. F., Strokov, O. P., & Skuridina, O. O. (2017). Introduction of the compensatory method of gas sample control in universal systems of ecological diagnostics of diesel engines – microtunnels. Visnyk of V. N. Karazin Kharkiv National University. Series Еcоlogy, (17), 80-88. https://doi.org/10.26565/1992-4259-2017-17-09