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基于独立运行的海上平台天然气主机控制系统的提升改造
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作者 高金虎 《化工管理》 2024年第6期79-81,共3页
当前设有电站的海上平台间均采用电力组网的运行模式,由一套电网能量管理系统对组网发电机进行功率管理。文章针对独立运行的天然气主机由于其控制系统缺少调速、调压接口而无法接受电网能量管理系统的控制,导致天然气主机并入电网后仅... 当前设有电站的海上平台间均采用电力组网的运行模式,由一套电网能量管理系统对组网发电机进行功率管理。文章针对独立运行的天然气主机由于其控制系统缺少调速、调压接口而无法接受电网能量管理系统的控制,导致天然气主机并入电网后仅能在自带的基载模式下恒功率运行,其带载值只能通过人为设定的方式进行调整,从而提出对天然气主机控制系统的提升改造,使其能够接受电网能量管理系统的调频、调压,同时创新性提出利用工艺系统燃气压力值控制天然气主机的自动加卸载方案,通过增加控制卡件、通讯卡件使其与电网能量管理系统建立通讯。天然气主机控制系统提升改造投用后,解决机组不受电网能量管理系统控制的难题,同时实现根据燃气系统压力值、按照比例设定值实时调控燃气主机的加卸载值,实现稳定燃气系统压力的同时减少火炬放空量,节能降碳效果非常显著。 展开更多
关键词 能量管理系统 等比例模式 调度模式 燃气模式
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杭州城市燃气发展的对策建议
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作者 朱希伟 《杭州科技》 2001年第2期17-19,共3页
关键词 杭州平 城市燃气发展 燃气模式 燃气消费结构
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智能燃气表的现状与发展趋势探讨 被引量:12
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作者 傅德基 《中国高新技术企业》 2016年第5期75-76,共2页
随着科学技术的不断发展,智能化已经成为社会各行各业发展的主要趋势,智能设备广泛应用于人们生活的各个领域。燃气是人们日常生活的重要组成部分,智能燃气表在近些年来得到迅猛发展,技术越来越加成熟,给人们生活带来诸多便利。文章对... 随着科学技术的不断发展,智能化已经成为社会各行各业发展的主要趋势,智能设备广泛应用于人们生活的各个领域。燃气是人们日常生活的重要组成部分,智能燃气表在近些年来得到迅猛发展,技术越来越加成熟,给人们生活带来诸多便利。文章对智能燃气表现状以及发展趋势展开了探讨,以期为智能燃气表的推广应用与进步提供帮助。 展开更多
关键词 智能燃气 智能设备 燃气系统 燃气管理模式 卡式燃气 远传燃气
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膜式燃气表的计量测试及分析 被引量:5
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作者 刘庆华 吴文霞 《科技资讯》 2010年第22期47-47,共1页
膜式燃气表的计量测试及分析包括很多相关内容,本文首先介绍了膜式燃气表,接着主要是从介质温度对膜式燃气表计量测试的影响、环境温度对膜式燃气表计量的影响、温度压力对膜式燃气表计量的影响这三个方面分析膜式燃气表的计量测试的影... 膜式燃气表的计量测试及分析包括很多相关内容,本文首先介绍了膜式燃气表,接着主要是从介质温度对膜式燃气表计量测试的影响、环境温度对膜式燃气表计量的影响、温度压力对膜式燃气表计量的影响这三个方面分析膜式燃气表的计量测试的影响因素。 展开更多
关键词 模式燃气 计量测试 分析
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渤海某油田蒸汽锅炉改双燃料方案分析研究
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作者 王美波 齐亮 《石油和化工设备》 CAS 2015年第3期57-59,共3页
渤海某油田对海上平台钻机模块区域的蒸汽锅炉进行改造以增加燃气模式功能,增加此功能后锅炉房将变成危险区域,房间内部分电气设备不满足防爆要求,故按照规范对房间内部设施的改造方案进行了可行性评估,以保证锅炉房内设备的安全运行。
关键词 蒸汽锅炉 燃气模式 防爆要求 可行性评估
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Effects of different combustion modes on the thermal efficiency and emissions of a diesel pilot-ignited natural gas engine under low-medium loads 被引量:1
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作者 JIN Shou-ying LI Jin-ze +2 位作者 ZI Zhen-yuan LIU Ya-long WU Bin-yang 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第7期2213-2224,共12页
Research on dual-fuel(DF)engines has become increasingly important as engine manufacturers seek to reduce carbon dioxide emissions.There are significant advantages of using diesel pilot-ignited natural gas engines as ... Research on dual-fuel(DF)engines has become increasingly important as engine manufacturers seek to reduce carbon dioxide emissions.There are significant advantages of using diesel pilot-ignited natural gas engines as DF engines.However,different combustion modes exist due to variations in the formation of the mixture.This research used a simulation model and numerical simulations to explore the combustion characteristics of high-pressure direct injection(HPDI),partially premixed compression ignition(PPCI),and double pilot injection premixed compression ignition(DPPCI)combustion modes under a low-medium load.The results revealed that the DPPCI combustion mode provides higher gross indicated thermal efficiency and more acceptable total hydrocarbon(THC)emission levels than the other modes.Due to its relatively good performance,an experimental study was conducted on the DPPCI mode engine to evaluate the impact of the diesel dual-injection strategy on the combustion process.In the DPPCI mode,a delay in the second pilot ignition injection time increased THC emissions(a maximum value of 4.27g/(kW·h)),decreased the emission of nitrogen oxides(a maximum value of 7.64 g/(kW·h)),increased and then subsequently decreased the gross indicated thermal efficiency values,which reached 50.4%under low-medium loads. 展开更多
关键词 diesel pilot-ignited natural gas engine direct injection of natural gas combustion mode thermal efficiency EMISSIONS
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Part-load Performance Characteristics of a Lean Burn Catalytic Combustion Gas Turbine System
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作者 Juan Yin Ming Li Jun-qiang Zhu 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第2期159-167,共9页
The purpose of this study is to compare the part-load performance of a lean burn catalytic combustion gas turbine (LBCCGT) system in three different control modes: varying fuel, bleeding off the fuel mixture flow afte... The purpose of this study is to compare the part-load performance of a lean burn catalytic combustion gas turbine (LBCCGT) system in three different control modes: varying fuel, bleeding off the fuel mixture flow after the compressor and varying rotational speed. The conversions of methane species for chemical process are considered. A 1D heterogeneous plug flow model was utilized to analyze the system performance. The actual turbomachinery components were designed and predicted performance maps were applied to system performance research. The part-load characteristics under three control strategies were numerically investigated. The main results show that: the combustor inlet temperature is a significant factor that can significantly affect the part-load characteristics of the LBCCGT system; the rotational speed control mode can provide the best performance characteristics for part-load operations; the operation range of the bleed off mode is narrower than that of the speed control mode and wider than that of the fuel only mode; with reduced power, methane does not achieve full conversion over the reactor at the fuel only control mode, which will not warrant stable operation of the turbine system; the thermal efficiency of the LBCCGT system at fuel only control strategy is higher than that at bleed off control strategy within the operation range. 展开更多
关键词 Lean burn catalytic combustion gas turbine part-load characteristics control mode
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Numerical and Experimental Investigation on the Performance of Lean Burn Catalytic Combustion for Gas Turbine Application 被引量:1
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作者 Juan YIN Yi-wu WENG Jun-qiang ZHU 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第2期185-193,共9页
This manuscript presents our numerical and experimental results regarding the performance characteristics of lean bum catalytic combustion for gas turbine application. The reactant transport was assumed to be controll... This manuscript presents our numerical and experimental results regarding the performance characteristics of lean bum catalytic combustion for gas turbine application. The reactant transport was assumed to be controlled by both bulk diffusion as well as surface kinetics, implemented by means of an approximate reaction rate equation and empirical coefficients to incorporate reaction mechanism. Experimental and numerical results were compared to examine the effects of methane mole fraction, inlet temperature, operating pressure, velocity and hydrogen spe- cies on combustion intensity. The results indicate that inlet temperature is the most significant parameter that im- pacts operation of the catalytic combustor and the most effective methods for improving the methane conversion are increasing the inlet temperature and increasing the methane mole fraction. Simulations from ID heterogene- ous plug flow model can capture the trend of catalytic combustion and describe the behavior of the catalytic mo- nolith in detail. The addition of hydrogen will provide heat release by the exothermie combustion reaction so that the reactants reach a temperature at which methane oxidation can light-off. 展开更多
关键词 Lean burn catalytic combustion PERFORMANCE gas turbine
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