首页> 外文会议>ASME international conference on energy sustainability;ES2009 >BIODIESEL FUELED ENGINE GENERATOR WITH HEAT RECOVERY: COMPARING BIODIESEL TO DIESEL PERFORMANCE
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BIODIESEL FUELED ENGINE GENERATOR WITH HEAT RECOVERY: COMPARING BIODIESEL TO DIESEL PERFORMANCE

机译:具有回热功能的仿生柴油发动机:将仿生柴油与柴油性能进行比较

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Carnegie Mellon University's departments of Architecture and Mechanical Engineering have designed and installed a biodiesel fueled engine-generator with heat recovery equipment to supply electric and thermal power to an office building on campus, the Intelligent Workplace (IW). The installation was completed in early September 2007, and was commissioned through April of 2008 with standard off-road low sulfur Diesel (LSD) fuel. Additional baseline testing was conducted with LSD until October 2008, when the transition was made to a 100% soybean oil based biodiesel.The turbocharged diesel engine-generator set is operated in parallel with the local electric utility and the campus steam grid. The system is capable of generating 25 kW of electric power while providing 18 kW of thermal power in the form of steam from an exhaust gas boiler and 19 kW in the form of heated water from the engine coolant. The steam is delivered to a double-effect Lithium-Bromide (Li-Br) absorption chiller, which supplies chilled water to the IW for space cooling in the summer or hot water for space heating in the winter. Furthermore, the steam can be delivered to the campus steam grid during the fall and spring when neither heating nor cooling is required in the IW. The thermal energy recovered from the coolant provides hot water for space heating in the winter, and for regenerating a solid desiccant dehumidification ventilation system in summer. All relevant temperatures, pressures, and flows for these systems are monitored via a building automation system. Pressure versus time versus crank angle measurements are recorded in each cylinder of the engine. Emissions of nitric oxide (NO), nitrogen dioxide (NO2), Paniculate Matter (PM), carbon monoxide (CO) and carbon dioxide (CO_2) are also monitored.The performance testing thus far indicates that biodiesel fuel performs just as well as Diesel fuel in the CHP system, providing similar amounts of electrical and thermal energy at the similar temperatures and flows at a similar overall efficiency. As expected, the engine consumes more biodiesel fuel due to the lower energy density of biodiesel fuel compared to LSD.Upon completion of the system performance testing with different types of biodiesel fuel, the operation of the engine generator with its heat recovery components will be integrated with the other HVAC components of the IW including a parabolic trough solar thermal driven Li-Br absorption chiller, a solid desiccant dehumidification ventilation system, and multiple types of fan coils and radiant heating and cooling devices. This integrated energy supply system is expected to reduce the IW's primary energy consumption by half in addition to the 75% site energy savings already realized by architectural features as compared to the average US office space.
机译:卡内基梅隆大学的建筑和机械工程系已经设计并安装了带有生物柴油燃料的发电机,该发电机具有热回收设备,可为校园内的办公楼智能工作场所(IW)提供电力和热能。该安装于2007年9月上旬完成,并使用标准的越野低硫柴油(LSD)燃料进行了调试,直至2008年4月。直到2008年10月,才使用LSD进行了其他基准测试,直到向100%大豆油基生物柴油过渡。 涡轮增压柴油发动机发电机组与当地电力公司和校园蒸汽网并行运行。该系统能够产生25 kW的电能,同时从废气锅炉以蒸汽的形式提供18 kW的热能,从发动机冷却液以热水的形式提供19 kW。蒸汽被输送到双效溴化锂(Li-Br)吸收式制冷机,该制冷机向IW提供冷水以在夏天进行空间冷却,或将热水供应给IW在冬天进行空间加热。此外,当IW不需要加热或冷却时,可以在秋季和春季将蒸汽输送到校园蒸汽网。从冷却剂中回收的热能为冬天的空间供暖提供热水,并在夏天为固体除湿除湿通风系统提供再生。通过楼宇自动化系统监控这些系统的所有相关温度,压力和流量。压力对时间与曲柄角的关系记录在发动机的每个气缸中。还监控一氧化氮(NO),二氧化氮(NO2),颗粒物(PM),一氧化碳(CO)和二氧化碳(CO_2)的排放。 迄今为止的性能测试表明,生物柴油燃料在热电联产系统中的性能与柴油燃料相同,在相似的温度下提供相似量的电能和热能,并以相似的整体效率流动。正如预期的那样,由于生物柴油燃料的能量密度低于LSD,因此发动机消耗的生物柴油燃料更多。 在使用不同类型的生物柴油燃料完成系统性能测试后,带有其热回收组件的发动机发电机的运行将与IW的其他HVAC组件集成在一起,包括抛物线槽太阳能热驱动的Li-Br吸收式制冷机,固态干燥剂除湿通风系统,以及多种类型的风机盘管和辐射加热和冷却装置。与美国的平均办公空间相比,该综合能源供应系统有望将IW的一次能源消耗减少一半,此外,通过建筑功能已经实现了75%的现场能源节省。

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