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发电柴油机组冷却水温度升高原因分析与处理 被引量:4
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作者 曹新玉 《柴油机》 2014年第5期56-57,共2页
针对某轮发电柴油机组出现冷却水温度异常升高的故障,基于柴油发电机组冷却水系统的工作原理,对引起故障的可能因素进行了逐一分析排查。结果表明:故障原因系调温阀发生故障,高温淡水未经中央冷却器冷却就再次进入柴油机冷却水系统,致... 针对某轮发电柴油机组出现冷却水温度异常升高的故障,基于柴油发电机组冷却水系统的工作原理,对引起故障的可能因素进行了逐一分析排查。结果表明:故障原因系调温阀发生故障,高温淡水未经中央冷却器冷却就再次进入柴油机冷却水系统,致使柴油机组冷却水温度急剧升高。针对该故障做了相应地处理并提出了预防措施。 展开更多
关键词 发电柴油机组 冷却水系统 气动调温阀
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发电柴油机组冷却水温度升高原因分析与处理 被引量:2
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作者 吴瑞斌 周璐 《内燃机与配件》 2019年第19期20-21,共2页
柴油发电机组在全球经济一体化的推动下,国内的柴油发电机组取得了长足的发展和进步,作为以柴油为主燃料的发电设备,为很多不能停电的设备或者企业提供备用的电源,解除了后顾之忧。但柴油发电机组在正常使用中常出现冷却水温度升高的问... 柴油发电机组在全球经济一体化的推动下,国内的柴油发电机组取得了长足的发展和进步,作为以柴油为主燃料的发电设备,为很多不能停电的设备或者企业提供备用的电源,解除了后顾之忧。但柴油发电机组在正常使用中常出现冷却水温度升高的问题,本文重要分析发电柴油机组冷却水温升高的原因与处理方法,寄希望与能够为相关技术人员提供一定的帮助和指导。 展开更多
关键词 发电柴油机组 冷却水温度 原因分析 处理方法
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船舶发电柴油机电子调速系统建模与仿真 被引量:4
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作者 庄一凡 《西安文理学院学报(自然科学版)》 2010年第1期99-102,共4页
在研究船舶发电柴油机调速系统的结构和工作原理的基础上,建立了电子调速系统的数学模型,根据所建立的数学模型,构建了了仿真模型,并进行了突加负载和突卸负载实验,仿真结果比较理想,符合《钢质海船入级规范》规定的标准.
关键词 船舶发电柴油机组 电子调速器 PID建模仿真
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柴油发电机运行控制模型研究 被引量:1
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作者 陈韫韬 《舰船科学技术》 北大核心 2016年第8X期49-51,共3页
决定柴油发电机组发电质量的因素有很多,其中之一是柴油机转速的控制质量。本文首先研究柴油发电机组硬件在仿真系统中的原理框架,接着通过研究实际的柴油机样本,基于NARX建模理论,建立了柴油发电机组的仿真模型。最后通过仿真模型获得... 决定柴油发电机组发电质量的因素有很多,其中之一是柴油机转速的控制质量。本文首先研究柴油发电机组硬件在仿真系统中的原理框架,接着通过研究实际的柴油机样本,基于NARX建模理论,建立了柴油发电机组的仿真模型。最后通过仿真模型获得的数据设计柴油发电机的转速调节装置,实现柴油发电机组各发电机转速动态调节的作用。 展开更多
关键词 柴油机发电 PID 仿真模型 NARX
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Life Cycle Cost of Electricity Generation from Biomass Gasifier 被引量:5
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作者 Debabrata Lahiri Gokul Achariee 《Journal of Energy and Power Engineering》 2013年第11期2060-2067,共8页
India is having more than 500,000 villages of which about 85% have been electrified. But as per RGGVY (Rejiv Gandhi Grammen Vidyutikaran Yojana), the rate of village electrification is much lower as household connec... India is having more than 500,000 villages of which about 85% have been electrified. But as per RGGVY (Rejiv Gandhi Grammen Vidyutikaran Yojana), the rate of village electrification is much lower as household connectivity has been fairly low. The rest 15% villages and a larger proportion of households have to be electrified. Villages have been a major concern as cost of electrification is fairly high. The most favored alternative to any kind of users is generation of electricity from diesel generating sets and renewable sources of energy. But the capital cost of renewable energy equipments is fairly high. Gradually, there is a reduction in the prices of these systems due to availability of better technological options and they are becoming competitive to grid electricity. In this paper, an attempt has been made to calculate the cost of production of electricity from stand-alone, off-grid devices biomass gasifiers (both dual fuel and pure gas type) and compare with that of diesel generating sets by using the concept of LCC (life cycle costing) and Homer software. It is found that the cost of per unit electricity generation (kWh) has been always the lowest in comparison to diesel generating sets even if the price of biomass increases to some extent. 展开更多
关键词 Biomass gasifier DIESEL OFF-GRID life cycle costing.
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Replacement of Diesel Generator Sets in Isolated Communities with More Efficient Biomass Combustion Process 被引量:1
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作者 Victor Bicalho Civinelli de Almeida Marco Aur61io da Cunha Alves 《Journal of Energy and Power Engineering》 2013年第12期2285-2290,共6页
Electrical power supply to communities isolated from urban areas is typically complex and expensive. Their geographical situation and the lack of infrastructure and qualified workforce impede the provision of electric... Electrical power supply to communities isolated from urban areas is typically complex and expensive. Their geographical situation and the lack of infrastructure and qualified workforce impede the provision of electricity. Many are the sources of energy available, but few are appropriate or sustainable. Combustion of diesel fuel is a good technical solution; however, it is neither economic nor environmentally tenable. This paper presents the advantages of using biomass as an energy source, along with its potential increase in efficiency when steam is generated in specific circumstances of temperature and pressure. 展开更多
关键词 BIOMASS direct combustion ELECTRIFICATION isolated communities steam engine.
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Pure Jatropha Oil for Power Generation on Floreana IslandlGalapagos: Four Years Experience on Engine Operation and Fuel Quality
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作者 GeorgGruber 《Journal of Energy and Power Engineering》 2014年第5期929-938,共10页
In the small country of Ecuador, all environmental risks of the production and consumption of fossil fuels can be observed by damages through oil exploration in the amazonite rainforest and two tank ship accidents clo... In the small country of Ecuador, all environmental risks of the production and consumption of fossil fuels can be observed by damages through oil exploration in the amazonite rainforest and two tank ship accidents close by Galapagos Islands causing death of 10,000 marine iguanas and other species. Now Ecuador plans to replace all environmentally dangerous diesel generators from all four inhabited Galapagos Islands by a hybrid system using 100% renewable energy for electricity production. Since 2010 a hybrid system of two Jatropha oil generators with an electrical power of 69 kW (kWel) and a photovoltaic plant with an electrical peak power of 21 kW (kWpeak) is successfully providing electricity from renewable energy for inhabitants and tourists of Floreana Island. After more than 15.000 engine operation hours of each engine there is no engine defect. For fuel supply, the so-called "Living Fence" concept collecting Jatropha seeds by farmers and families from already existing 6,000 km hedges on Ecuadorian mainland was chosen to comply with highest biofuel sustainability standards. The Jatropha oil is produced in a decentralized so-called CompacTropha oil mill container following the ambitious German fuel quality standard DIN51605. Since 2010 Floreana project successfully demonstrates that it is possible to replace diesel gen sets by generators fueled with pure Jatropha oil from decentralized sustainable production. 展开更多
关键词 Jatropha oil power generation off grid hybrid system sustainable biofuel plant oil engines pure vegetable oil.
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