废变压器油在柴油发电机中作为替代燃料的使用

A. Yildiz, Ş. Altun
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引用次数: 3

摘要

本文以废变压器油作为柴油发电机组的候选燃料,对其燃料特性和燃烧特性进行了研究。运动粘度是WTO最受限制的特性(在40℃时为9.6 mm 2 /s),为了在不进行任何修改的情况下检测出适合发动机使用的混合比例,我们在不同的常规柴油混合物中(按体积计为10,20,30,40,50,60,70,80,90和100%)测量了运动粘度,并提出了优化发动机性能和排放的混合策略。按体积计,WTO与柴油含量高达50%的混合燃料的粘度在常规柴油规定的标准值范围内,即EN590中规定的2.0-4.5 mm 2 /s,如果WTO含量为60%,则符合EN14214 (3.5-5.0 mm 2 /s)替代柴油标准。还发现,含有20% WTO和80%柴油的混合燃料的运动粘度和密度与常规柴油的值非常接近。因此,将WTO与柴油按20%的体积比例混合,然后在一台四冲程四缸柴油机驱动的发电机组上进行恒速-变负荷条件下的试验。将实测和计算结果与常规柴油在相同条件下的试验结果进行了比较。实验结果表明,使用混合燃料替代传统柴油后,比油耗、nox和未燃烧HC排放均有所降低。混合燃料的气缸气体压力比传统柴油高,而混合燃料的燃烧开始时间较晚。
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The use of waste transformer oil as alternative fuel in a diesel power generator
In this study, waste transformer oil (WTO) was investigated as a fuel candidate for a diesel power generator set in terms of its fuel and combustion characteristics. Kinematic viscosity, which is the most restrictive property of WTO (9.6 mm 2 /s at 40 o C), was measured on different blends with a conventional diesel fuel (in 10, 20, 30, 40, 50, 60, 70, 80, 90 and 100% by volume) in order to detect the suitable blending ratio to be used in engine without any modification, and to propose some blending strategies to optimize engine performance and emissions. The blended fuels containing WTO up to 50% with diesel by volume were found to have a viscosity which is within standard value specified for conventional diesel fuels, i.e., 2.0-4.5 mm 2 /s in EN590, and in case 60% WTO, it agrees with EN14214 (3.5-5.0 mm 2 /s) alternative diesel fuel standards. It is also found that a fuel blend containing 20% WTO and 80% diesel have a kinematic viscosity and density which are very close to conventional diesel’ values. Therefore, WTO was blended with diesel at the rate of 20% by volume and then tested in a 4-stroke and 4-cylinder diesel engine powered generator set under constant speed-variable load conditions. Measured and calculated results were compared with the results of conventional diesel tested under the same conditions. Experimental results showed that specific fuel consumption, NO x and unburned HC emissions reduced when using blended fuel instead of conventional diesel. Cylinder gas pressure was higher for blended fuels than that of conventional diesel while the start of combustion was later in the case of blended fuels.
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