首页> 外文会议>American Society of Mechanical Engineers(ASME) Internal Combustion Engine Division Fall Technical Conference; 20050911-14; Ottawa(CA) >ALTERNATE MODES COMBUSTION STUDY: HCCI FUELED WITH HEPTANE AND SPARK IGNITION FUELED WITH REFORMER GAS
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ALTERNATE MODES COMBUSTION STUDY: HCCI FUELED WITH HEPTANE AND SPARK IGNITION FUELED WITH REFORMER GAS

机译:交替模式燃烧研究:HCCI伴有庚烷,而火花点火则伴有重整气

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摘要

Homogenous Charge Compression Ignition (HCCI) combustion is an efficient operating mode for internal combustion engines operating at low specific power and has the further advantage of very low specific NOx emission rate. High Compression Lean Burn (HCLB) spark ignition (SI) provides a more conventional approach to achieving high engine efficiency. Specific NOx emission rates are low though not as low as with HCCI. Compared with HCCI engines, HCLB-SI engines have the advantage of direct combustion control, (through spark timing), and thus are able to start from cold and operate over a wider range of conditions including higher specific power than HCCI. On the other hand HCCI still has the advantage in efficiency and NOx emission rate. These trade-offs makes it desirable to develop an engine which can operate in either mode, hopefully without significantly adding to engine cost or compromising either mode. This paper presents a first exploration of a dual-mode engine which can use either HCCI or HCLB mode by operating on either a base, low-octane liquid fuel or on reformer gas (RG) produced by steam reforming or partial oxidation from the base fuel. Engine experiments with a CFR engine are used to demonstrate engine operation in both HCLB-SI and HCCI operating modes fueled with some combination of n-heptane and reformer gas. The combustion characteristics including combustion stability and cyclic variation are measured and compared for HCCI operation and RG-fueled HCLB-SI engine operation. CNG-fueled SI engine operation is also used as an additional basis for comparison.
机译:均质充量压缩点火(HCCI)燃烧是内燃机以低比功率运行的一种有效运行模式,并且还具有非常低的比NOx排放率的优点。高压缩稀薄燃烧(HCLB)火花点火(SI)提供了一种更常规的方法来实现高发动机效率。特定的NOx排放率低,尽管不如HCCI那样低。与HCCI发动机相比,HCLB-SI发动机具有直接燃烧控制(通过火花正时)的优势,因此能够从低温启动并在更宽的条件范围内运行,包括比HCCI更高的比功率。另一方面,HCCI在效率和NOx排放率方面仍具有优势。这些折衷使得期望开发一种可以在任何一种模式下运行的发动机,希望在不显着增加发动机成本或不损害任何一种模式的情况下。本文介绍了一种双模发动机的首次探索,该双模发动机可以通过在基础,低辛烷值液体燃料或由蒸汽重整或基础燃料部分氧化产生的重整器气体(RG)上运行而使用HCCI或HCLB模式。 。使用CFR发动机进行的发动机实验用于证明HCLB-SI和HCCI运行模式下的发动机运行,其中正庚烷和重整炉气体的某种组合为燃料提供了燃料。测量并比较了HCCI操作和RG燃料HCLB-SI发动机操作的燃烧特性(包括燃烧稳定性和循环变化)。 CNG供油的SI发动机运行也用作比较的附加依据。

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