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EN
Main goal of article was design, develop and control of Stop&Go system for Mild Hybrid Drive using supercondensator and starter with permanent magnets and carrying out verification Mild Hybrid system drive in NEDC standard tests . Researches of usefulness of supercondensators' system as an energy source in process of starting an internal combustion engine were done. Usage of supercondensators as an energy source of starting led to improvement of economic indicators of the Stop & Go system. Supercondensator has a 1000 times bigger durability than PbPbO2 battery with around 40 times smaller mass. Researchers of real tests NEDC with Suzuki Baleno car were done and calculations of air pollutions and fuel consumption in Mild Hybrid system was designed and produced for this vehicle. A starter, which will have NeFeB magnets built in stator instead of induction winding, was designed. Temperature IR characteristics in stator and rotor in NEDC mode and real rush traffic cycle has been carried. A modernization of the starter is necessary because of different type of working - frequent starting of the internal combustion engine. A project of the Stop & Go system was carried out in the Suzuki Baleno car and project of the Stop & Go system for Mild Hybrid drive and verification of correctness of working has been carried out in this car in standard NEDC tests.
EN
Article describes project of automatic, preheating engine block system, which enable shortening duration of fuel injection after starting combustion engine. It will cause reduction of air pollution during catalyst heating-up phase. The automatic, preheating engine block system should have electric regulation of cooling water temperature, which is realized by electric cooling water pump. Independent control of pump speed and application extra heating-up of cooling water makes possible heating cooling water when engine is turn off and control engines temperature during engine running (admission of increase temperature to 110°C).
EN
Main goal of article was design, develop and control of Stop&Go system in Mild Hybrid Drive using supercondensator and starter with permanent magnets. Many researches and tests were done to determine real and then representative cycles of drive in Silesian agglomeration in Gliwice and Zabrze. Road researches enabled carrying out analysis of fluidity of traffic in cities and setting a percentage shares of movement micro stages (selected accelerations, driving with constant speed, braking, stopover). Researches of usefulness of supercondensators' system as an energy source in process of starting an internal combustion engine were done. Usage of supercondensators as an energy source of starting led to improvement of economic indicators of the Stop & Go system. Supercondensator has a 1000 times bigger durability than PbPbO2 battery with around 40 times smaller mass. Researchers of real characteristics of the car Fiat Palio Weekend 1,2 8V were done for calculations of traditional characteristics The Stop & Go system was designed and produced for this vehicle A starter, which will have NeFeB magnets built in stator instead of induction winding, was designed. A modernization of the starter is necessary because of different type of working - frequent starting of the internal combustion engine. A project of the Stop & Go system was carried out in the Fiat Palio car a project of the Stop & Go system for Mild Hybrid drive and verification of correctness of working has been carried out in the Fiat Palio car.
EN
Article describes project of automatic, preheating engine block system, which enable shortening of duration of fuel injection after starting combustion engine. It will cause reduction of air pollution during catalyst heating-up phase. The automatic, preheating engine block system should have electric regulation of cooling water temperature, which is realized by electric cooling water pump. Independent control of pump speed and application extra heating-up of cooling water makes possible heating cooling water when engine is turn off and control engines temperature during engine running (admission of increase temperature to 110°C).
EN
Main goal of article was project of automatic, preheating engine block system, which enable shortening duration of fuel injection after starting combustion engine. It will cause reduction of air pollution during catalyst heating-up phase. The automatic, preheating engine block system should have electric regulation of cooling water temperature, which is realized by electric cooling water pump. Independent control of pump speed and application extra heating-up of cooling water makes possible heating cooling water when engine is turn off and control engines temperature during engine running (admission of increase temperature to 110°C). Within the framework of this work, there have been done calculations, measurements and researches whose aim was to determine the real parameters of cooling system structure for researched engine Fiat Palio Weekend 1,2 8V. Temperature measurements have been done with the help of camera ThermaCam T400 Flir and thermocouples PT 100 whereas flow rate measurements have been done with the help of turbine flow-meter Vision 2008 4F 22 with Hall's converter. Measurements was repeated several times to get reliable results. The carried out measurements allowed us to create thermal maps and flow rate characteristics of researched engines.
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