首页> 外文会议>ASME Internal Combustion Engine Division Technical Conference >EFFECT OF DIESEL INJECTION SPLIT ON COMBUSTION AND EMISSIONS PERFORMANCE OF A NATURAL GAS - DIESEL DUAL FUEL ENGINE AT A LOW LOAD CONDITION
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EFFECT OF DIESEL INJECTION SPLIT ON COMBUSTION AND EMISSIONS PERFORMANCE OF A NATURAL GAS - DIESEL DUAL FUEL ENGINE AT A LOW LOAD CONDITION

机译:柴油注射分裂对低负荷条件下天然气柴油双燃料发动机燃烧和排放性能的影响

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As an inexpensive and low carbon fuel, the combustion of natural gas reduces fuel cost and generates less carbon dioxide emissions than diesel and gasoline. Natural gas is also a clean fuel that generates less particulate matter emissions than diesel during combustion. Replacing diesel by natural gas in internal combustion engines is of great interest for industries. Dual fuel combustion is an efficient way to apply natural gas in internal combustion engines. An issue that to a certain extent offsets the advantage of lower carbon dioxide emissions in natural gas - diesel dual fuel engines is the higher methane emissions and low engine efficiency at low load conditions. In order to seek strategies to improve the performance of dual fuel engines at low load conditions, an experimental investigation was conducted to investigate the effect of diesel injection split on combustion and emissions performance of a heavy duty natural gas - diesel dual fuel engine at a low load. The operating conditions, such as engine speed, load, intake temperature and pressure, were well controlled during the experiment. The effects of diesel injection split ratio and timings were investigated. The engine efficiency and emissions data, including particulate matter, nitric oxides, carbon monoxide and methane were measured and analyzed. The results show that diesel injection split significantly reduced the peak pressure rise rate. As a result, diesel injection split enabled the engine to operate at a more optimal condition at which engine efficiency and methane emissions could be significantly improved compared to single diesel injection.
机译:作为廉价且低碳燃料,天然气的燃烧降低了燃料成本并产生比柴油和汽油的二氧化碳排放量较少。天然气也是一种清洁燃料,在燃烧过程中产生比柴油更少的颗粒物质排放。通过内燃机的天然气代替柴油对行业来说是非常兴趣的。双燃料燃烧是在内燃机中施加天然气的有效方法。在一定程度上抵消了天然气 - 柴油双燃料发动机中较低二氧化碳排放的优势的问题是在低负荷条件下更高的甲烷排放和低发动机效率。为了寻求改善低负荷条件下双燃料发动机的性能的策略,进行了实验研究,以研究柴油注射分裂对厚重天然气 - 柴油双燃料发动机的燃烧和排放性能的影响加载。在实验期间,操作条件,例如发动机速度,负荷,进气温度和压力良好控制。研究了柴油注射分裂比和定时的影响。测量并分析包括颗粒物质,一氧化碳,一氧化碳和甲烷的发动机效率和排放数据。结果表明,柴油注射率显着降低了峰值压力升高率。结果,与单柴油注射相比,柴油注射分流使发动机能够以更优化的条件操作,发动机效率和甲烷排放可以显着提高。

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