首页> 外文会议>ASME International Conference on Energy Sustainability >APPLICATION OF LOW TEMPERATURE PHASE CHANGE MATERIALS TO ENABLE THE COLD WEATHER OPERABILITY OF B100 BIODIESEL IN DIESEL TRUCKS
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APPLICATION OF LOW TEMPERATURE PHASE CHANGE MATERIALS TO ENABLE THE COLD WEATHER OPERABILITY OF B100 BIODIESEL IN DIESEL TRUCKS

机译:低温相变材料在柴油卡车中实现B100生物柴油的寒冷天气可操作

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The use of pure biodiesel for compression ignition engines during the winter poses a challenge due to gelling and plugging of engine filters and fuel lines. The most common method to prevent this issue is blending with petroleum diesel and many engine manufacturers limit the biodiesel in blends to 20% or less for warrantee purposes; as low as 5% may be set for winter months. In a previous work, the authors proposed a novel fuel tank design that could potentially solve this problem and presented a numerical validation of the concept of using phase change materials (PCM) to enable cold weather operability of 100% biodiesel by maintaining its temperature above a cloud point of 5 degrees Celsius for over 3 days at an ambient temperature of -25 degrees Celsius and initial temperature of 20 degrees Celsius. In this research, an experimental analysis is performed using a scaled model of the fuel tank with canola oil as a test fluid in the tank. The tank is subjected to an ambient temperature of -20 degrees Celsius in an icing tunnel facility with air velocity at 10 m/s. The results show that the time above cloud point was increased from 18.6 hours to 22.5 and 33 hours respectively when 4 and 12 PCM tubes were inserted in the tank containing 33 litres of canola oil. A simple numerical model was formulated to predict the transient temperature of the oil and comparison with experimental results showed excellent agreement.
机译:在冬季期间使用纯生物柴油用于压缩点火发动机由于胶凝和堵塞发动机过滤器和燃料管而导致挑战。最常见的防止这个问题的方法与石油柴油和许多发动机制造商的混合将混合物中的生物柴油限制在保修目的的20%或更少;冬季可能会为低至5%。在以前的工作中,作者提出了一种新型燃料箱设计,可以解决这个问题,并呈现了使用相变材料(PCM)的概念的数值验证,通过将其温度保持高于A的温度来实现100%生物柴油的寒冷天气可操作性。云点5摄氏度超过3天,环境温度为-25摄氏度,初始温度为20摄氏度。在该研究中,使用用油菜油的尺度模型进行实验分析,作为油菜油作为罐中的测试流体。在冰布隧道设施中,罐在-20摄氏度的环境温度下,在10米/秒的空气速度下。结果表明,当在含有33升Catola油的罐中插入4和12个PCM管时,分别从18.6小时增加到22.5和33小时。配制简单的数值模型以预测油的瞬态温度和与实验结果的比较显示出很好的一致性。

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