首页> 外文会议>International Congress of Automotive and Transport Engineering >Development of Two-Dimensional Models for Estimating Densities of Biodiesel-Diesel-Alcohol Ternary Blends
【24h】

Development of Two-Dimensional Models for Estimating Densities of Biodiesel-Diesel-Alcohol Ternary Blends

机译:估算生物柴油柴油三元共混物密度的二维模型的发展

获取原文

摘要

Recently, biodiesel has become one of the most significant clean alternative biofuels because of many advantages. However, it has also some shortcomings such as: higher density and viscosity. The high density of biodiesel can cause an increase in the fuel consumption and NO_x emissions. In order to overcome this problem, the blending of biodiesel with diesel fuel or alcohols is generally recommended in the existing literature. Although many one-dimensional models are proposed by different authors for predicting fuel properties of biodiesel-diesel binary blends, two-dimensional models are still inadequate for estimating densities of biodiesel-diesel fuel-alcohol ternary blends. Therefore, in this study, (1) densities of waste cooking oil biodiesel-diesel fuel-ethanol ternary blends were measured at different temperatures (278.15 K-343.15 K) according to ISO test method, and (2) some two-dimensional models, previously suggested by the authors, were fitted to the density data of ternary blends obtained from the authors and specialized literature to determine the best correlation for prediction of density. The quadratic surface model is found to be best predictor to estimate densities of ternary blends.
机译:最近,生物柴油已成为最重要的干净替代生物燃料之一,因为许多优点。然而,它也有一些缺点,如:更高的密度和粘度。生物柴油的高密度会导致燃料消耗和NO_X排放增加。为了克服这个问题,通常在现有文献中建议使用柴油燃料或醇的生物柴油的混合。虽然不同作者提出了许多一维模型,用于预测生物柴油 - 柴油二进制混合物的燃料特性,但是对于估计生物柴油柴油燃料 - 醇三元共混物的密度仍然不足。因此,在本研究中,根据ISO试验方法在不同温度(278.15k-343.15k)的不同温度(278.15k-343.15k)中测量废物烹饪油生物柴油燃料燃料 - 乙醇三元共混物的密度,以及(2)一些二维模型,此前提出的作者,拟合从作者获得的三元共混物的密度数据和专业文献中,以确定密度预测的最佳相关性。发现二次表面模型是最佳预测因子来估计三元共混物的密度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号