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Efficiency of electric vehicle interior heating systems at low ambient temperatures

机译:低环境温度下电动汽车内部加热系统的效率

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The electric car market is becoming more and more extensive. According to ACEA, in 2019, 549,387 full electric passenger vehicles, hybrid plug-ins and hydrogen vehicles were registered in the European Union. Thus, it is an increase of 52.9 percent compared to 2018. Germany is the leader with 108 839 registrations of vehicles (+60.9% y/y). Great Britain achieved an increase of 21.5 percent y/y and the number of registrations at 72 834 pieces. The Netherlands came next (66 957 pcs, + 146.3% y/y), France (61 356 pcs, +34.6% y/y) and Sweden (40 406 pcs, + 39.4% y/y).Registration results in Europe shows that the popularity of electric vehicles is increasing. Along with the development of this type of vehicles, the technology used in their construction also changes. The biggest calls at the moment are batteries for these vehicles, as well as their ranges on a single charge. There are already vehicles with ranges of 500 km or even 600 km.However, it turns out that these are not the only problems with electric vehicles One of the drawbacks is the way they heat their passenger cabins. There is no typical heater in an electric vehicle as in the case of a vehicle with a conventional drive. For this purpose, e.g. an electric heater with a blower is used for this purpose. For this reason, the authors of the paper decided to determine the efficiency of the heating system in an electric vehicle at low ambient temperatures.Own tests were carried out on the vehicle at temperatures of +5°C, ?5°C and ?10°C. Based on the research, the authors of the paper could draw conclusions on how to heat the interior in the electric vehicle under test, as well as check whether the efficiency of such a system for individual places in the car is sufficient to obtain the set temperature.
机译:电动汽车市场变得越来越广泛。据Acea介绍,2019年,549,387个全电动轿车,杂交插件和氢气车辆在欧盟注册。因此,与2018年相比,增加了52.9%。德国是108 839辆登记的领导者(+ 60.9%Y / Y)。英国达到了21.5%的Y / Y和72 834件的登记人数。荷兰接下来了(66 957台,+ 146.3%Y / Y),法国(61 356 PC,+ 34.6%Y / Y)和瑞典(40 406 PC,+ 39.4%Y / Y)。Registration在欧洲的结果表明电动汽车的普及正在增加。随着这种车辆的发展,在其施工中使用的技术也发生了变化。目前最大的呼叫是这些车辆的电池,以及他们的范围在一次充电。然而,已经有500公里或甚至600公里的车辆。事实证明,这些不是电动车辆的唯一问题是他们加热乘客舱的方式。电动车辆中没有典型的加热器,如在具有传统驱动器的车辆的情况下。为此目的,例如具有鼓风机的电加热器用于此目的。因此,本文的作者决定在低环境温度下确定电动车辆中的加热系统的效率。在+ 5℃的温度下在车辆上进行测试,Δ5℃和?10 °C。根据研究,本文的作者可以得出关于如何在被测电动车辆中加热内部的结论,以及检查汽车中各个地方的这种系统的效率是否足以获得设定温度。

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