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Malfunction Diagnosis of the GTCC System under All Operating Conditions Based on Exergy Analysis
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作者 Xinwei Wang Ming Li +2 位作者 Hankun Bing Dongxing Zhang Yuanshu Zhang 《Energy Engineering》 EI 2024年第12期3875-3898,共24页
After long-term operation,the performance of components in the GTCC system deteriorates and requires timely maintenance.Due to the inability to directly measure the degree of component malfunction,it is necessary to u... After long-term operation,the performance of components in the GTCC system deteriorates and requires timely maintenance.Due to the inability to directly measure the degree of component malfunction,it is necessary to use advanced exergy analysis diagnosis methods to characterize the components’health condition(degree of malfunction)through operation data of the GTCC system.The dissipative temperature is used to describe the degree of malfunction of different components in the GTCC system,and an advanced exergy analysis diagnostic method is used to establish a database of overall operating condition component malfunctions in theGTCC system.Ebsilon software is used to simulate the critical parameters of the malfunctions of the GTCC system components and to obtain the changes in the dissipative temperature of different components.Meanwhile,the fuel consumption and economic changes of the GTCC system on a characteristic power supply day under health and malfunction conditions are analyzed.Finally,the effects of maintenance costs,electricity,and gas prices on maintenance expenses and profits are analyzed.The results show that the GTCC system maintenance profit is 6.07$/MWh,while the GTCC system maintenance expense is 5.83$/MWh.Compared with the planned maintenancemode,the malfunction maintenance mode saves 0.24$/MWh.Simultaneously,the maintenance coefficient of GTCC should be adjusted under different malfunctions to obtain a more accurate maintenance period. 展开更多
关键词 Gas turbine combined cycle malfunction diagnosis exergy analysis maintenance profits
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Exergy Analysis of a Solar Vapor Compression Refrigeration System Using R1234ze(E)as an Environmentally Friendly Replacement of R134a
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作者 Zakaria Triki Ahmed Selloum +6 位作者 Younes Chiba Hichem Tahraoui Dorsaf Mansour Abdeltif Amrane Meriem Zamouche Mohammed Kebir Jie Zhang 《Frontiers in Heat and Mass Transfer》 EI 2024年第4期1107-1128,共22页
Refrigeration plays a significant role across various aspects of human life and consumes substantial amounts of electrical energy.The rapid advancement of green cooling technology presents numerous solar-powered refri... Refrigeration plays a significant role across various aspects of human life and consumes substantial amounts of electrical energy.The rapid advancement of green cooling technology presents numerous solar-powered refrigeration systems as viable alternatives to traditional refrigeration equipment.Exergy analysis is a key in identifying actual thermodynamic losses and improving the environmental and economic efficiency of refrigeration systems.In this study exergy analyze has been conducted for a solar-powered vapor compression refrigeration(SP-VCR)system in the region of Gharda颽(Southern Algeria)utilizing R1234ze(E)fluid as an eco-friendly substitute for R134a refrigerant.A MATLAB-based numerical model was developed to evaluate losses in different system components and the exergy efficiency of the SP-VCR system.Furthermore,a parametric study was carriedout to analyze the impact of various operating conditions on the system’s exergy destruction and efficiency.The obtained results revealed that,for both refrigerants,the compressor exhibited the highest exergy destruction,followed by the condenser,expansion valve,and evaporator.However,the system using R1234ze(E)demonstrated lower irreversibility compared to that using R134a refrigerant.The improvements made with R1234ze are 71.95%for the compressor,39.13%for the condenser,15.38%for the expansion valve,5%for the evaporator,and 54.76%for the overall system,which confirm the potential of R1234ze(E)as a promising alternative to R134a for cooling applications. 展开更多
关键词 Solar cooling vapor compression refrigeration eco-friendly refrigerant thermodynamic losses exergy analysis
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Energy and Exergy Analysis of Pyramid-Type Solar Still Coupled with Magnetic and Electrical Effects by UsingMatlab Simulation
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作者 Karrar A.Hammoodi Hayder A.Dhahad +1 位作者 Wissam H.Alawee Z.M.Omara 《Frontiers in Heat and Mass Transfer》 EI 2024年第1期217-262,共46页
In the face of an escalating global water crisis,countries worldwide grapple with the crippling effects of scarcity,jeopardizing economic progress and hindering societal advancement.Solar energy emerges as a beacon of... In the face of an escalating global water crisis,countries worldwide grapple with the crippling effects of scarcity,jeopardizing economic progress and hindering societal advancement.Solar energy emerges as a beacon of hope,offering a sustainable and environmentally friendly solution to desalination.Solar distillation technology,harnessing the power of the sun,transforms seawater into freshwater,expanding the availability of this precious resource.Optimizing solar still performance under specific climatic conditions and evaluating different configurations is crucial for practical implementation and widespread adoption of solar energy.In this study,we conducted theoretical investigations on three distinct solar still configurations to evaluate their performance under Baghdad’s climatic conditions.The solar stills analyzed include the passive solar still,themodified solar still coupled with a magnetic field,and themodified solar still coupled with bothmagnetic and electrical fields.The results proved that the evaporation heat transfer coefficient peaked at 14:00,reaching 25.05 W/m^(2).℃for the convention pyramid solar still(CPSS),32.33 W/m^(2).℃for the magnetic pyramid solar still(MPSS),and 40.98 W/m^(2).℃for elecro-magnetic pyramid solar still(EMPSS),highlighting their efficiency in converting solar energy to vapor.However,exergy efficiency remained notably lower,at 1.6%,5.31%,and 7.93%for the three still types,even as energy efficiency reached its maximum of 18.6%at 14:00 with a corresponding peak evaporative heat of 162.4 W/m^(2). 展开更多
关键词 Pyramid solar still solar desalination energy and exergy analysis innovative solar still technique theoretical study Matlab
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高温气冷堆氦气透平直接循环的Exergy分析 被引量:3
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作者 曹建华 王捷 +1 位作者 杨小勇 于溯源 《原子能科学技术》 EI CAS CSCD 北大核心 2007年第2期211-214,共4页
针对100 MW电功率的氦气透平直接循环的设计,对循环各个部件分别进行热力学第一和第二定律分析。给出了各个部件的输入和产出Exergy公式,计算了Exergy损失分布,并与按照传统分析方法获得的分析结果进行了比较。结果表明:一半以上的Exerg... 针对100 MW电功率的氦气透平直接循环的设计,对循环各个部件分别进行热力学第一和第二定律分析。给出了各个部件的输入和产出Exergy公式,计算了Exergy损失分布,并与按照传统分析方法获得的分析结果进行了比较。结果表明:一半以上的Exergy损失发生在堆芯部分,而由预冷器、压气机和间冷器组成的压缩系统所占Exergy损失比重比按照第一定律计算的能量损失份额小得多;循环Exergy损失主要原因是能量形式的转换和不可逆换热。系统Exergy效率略高于热效率。 展开更多
关键词 热力学分析 exergy分析 高温气冷堆 布雷登循环 exergy损失
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生物质气成分含量变化对燃烧室exergy效率的影响 被引量:2
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作者 余超 袁怡祥 +4 位作者 詹德君 陈聪 曹文宇 谢鹏福 谭春青 《可再生能源》 CAS 北大核心 2014年第8期1216-1219,共4页
用富含CO,N2,CO2,H2的燃料模拟生物质气在燃气轮机燃烧室中燃烧,从exergy量不守恒的关系上考查可燃气体成分变化、惰性气体成分变化情况下燃烧室的exergy损失,研究成分对燃烧室exergy效率的影响。结果表明:降低H2在可燃成分中的比例能... 用富含CO,N2,CO2,H2的燃料模拟生物质气在燃气轮机燃烧室中燃烧,从exergy量不守恒的关系上考查可燃气体成分变化、惰性气体成分变化情况下燃烧室的exergy损失,研究成分对燃烧室exergy效率的影响。结果表明:降低H2在可燃成分中的比例能够提高燃烧室exergy效率,提高N2在惰性气体中的占比,exergy损失持续增大,但exergy效率存在极大值点。 展开更多
关键词 exergy分析 生物质气 exergy效率 可燃成分 惰性成分 燃烧室
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埃三极(Exergy)理论──生态系统研究的一种新方法 被引量:14
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作者 孙平跃 陆健健 《生态学杂志》 CAS CSCD 北大核心 1997年第5期32-37,共6页
埃三极(Exergy)理论生态系统研究的一种新方法孙平跃陆健健(华东师范大学河口海岸国家重点实验室,上海200062)ExergyTheory:ANewMethodForEcosystemResearch.SunPi... 埃三极(Exergy)理论生态系统研究的一种新方法孙平跃陆健健(华东师范大学河口海岸国家重点实验室,上海200062)ExergyTheory:ANewMethodForEcosystemResearch.SunPingyue,LuJianjian(... 展开更多
关键词 生态系 埃三极理论
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基于生态(Eco-exergy)的鹤山红木荷人工林群落结构发展动态 被引量:5
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作者 李浩 曾宪曙 陆宏芳 《生态环境学报》 CSCD 北大核心 2012年第11期1822-1829,共8页
能量是生态系统过程的趋动力,系统内的一切生命活动都伴随着能量转化与传递;因此,生态系统发展过程中的热力学普遍规律是生态学与生物物理学长期以来共同的研究焦点。源于热力学的生态(Eco-exergy)理论是当前生态系统自组织研究过程中... 能量是生态系统过程的趋动力,系统内的一切生命活动都伴随着能量转化与传递;因此,生态系统发展过程中的热力学普遍规律是生态学与生物物理学长期以来共同的研究焦点。源于热力学的生态(Eco-exergy)理论是当前生态系统自组织研究过程中较流行的目标函数,已被广泛用于湿地和水生生态系统等的研究中,森林生态系统研究中案例匮乏。本研究运用生态(Eco-exergy)理论方法,量化分析了鹤山红木荷Schima wallichii人工群落12~27龄间的结构发展动态,探讨了生态理论在森林研究中的应用。同时,为更好地表征物种的群落热力学地位,构建并使用了群落生态贡献率(PC)和冠层生态贡献率(PL)两个新指标,丰富了森林系统生态的计算方法。结果显示,15年间,红木荷群落生态和结构(SpecificEco-exergy)均波动上升,群落结构趋于有序;群落乔-灌-草层热力学结构发展不同步,但互有影响。拥有巨大生物量的乔木层和遗传信息较丰富的草本层分别在生态和结构中占据较大比重,两者在群落结构的稳定和复杂性的发展与维系中发挥着重要作用。先锋种红木荷的生长增加了林内荫庇度,促使林下结构向"耐阴种占优"的方向转变,但其自我更新受阻,而区域森林演替后期优势树种亦未能自然进驻,阻滞了群落的演替发展和结构健康水平的进一步提升;建议人为引入锥栗Castanopsis chinensis、荷木Schima superba、厚壳桂Cryptocarya chinensis、云南银柴Aporusa yunanensis等进行林份改造,加速系统演替与结构有序化进程。 展开更多
关键词 南亚热带人工林 物种结构 热力学规律 生态 结构
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Exergy作为生态学指标用于底栖动物群落恢复监测 被引量:6
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作者 章飞军 童春富 +1 位作者 谢志发 陆健健 《生态学报》 CAS CSCD 北大核心 2007年第5期1910-1916,共7页
Exergy作为热力学指标是指系统从给定状态到与其周围介质达到热力学平衡所需做的最大功,Exergy概念被生态学家借鉴应用于生态系统的研究,使它有了生物学的含义。应用Exergy作为生态指标,用于指示崇西潮滩湿地生态工程中受到干扰的大型... Exergy作为热力学指标是指系统从给定状态到与其周围介质达到热力学平衡所需做的最大功,Exergy概念被生态学家借鉴应用于生态系统的研究,使它有了生物学的含义。应用Exergy作为生态指标,用于指示崇西潮滩湿地生态工程中受到干扰的大型底栖动物群落结构的复杂的恢复过程。用BACI(before versus after,control versus impact)方法进行底栖动物采样,根据(a)不同食性类群的代码基因数;(b)储存在有机体基因内的信息;(c)种水平上的基因组尺度(C值)作为参数估算局域Exergy。结果显示工程区的Exergy值在工程干扰后9d时降到最低,接着工程区大型底栖动物群落的Exergy值逐渐与周围对照区趋向平衡。270d后,工程区的大型底栖动物群落得到恢复。3种不同方法估算的区域Exergy值表现出极为相似的动态趋势,进一步证实了用基因组尺度数据估算Exergy的可行性和优越性。研究表明Exergy指标不但适用于干扰后底栖动物群落恢复过程的监测,而且适合更广泛的生物系统研究。用周边对照区作为计算受干扰群落的局域Exergy值的动态参考比用历史资料更合适。 展开更多
关键词 能质 生态学指标 底栖群落 恢复过程 监测
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基于Exergy研究的地源热泵降温系统性能分析 被引量:8
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作者 柴立龙 马承伟 +2 位作者 袁小艳 张义 余飞 《农业机械学报》 EI CAS CSCD 北大核心 2009年第2期146-150,共5页
以地下水式地源热泵系统在农业温室和办公楼中的夏季降温研究为例,归纳出地源热泵降温系统的能量利用质量模型——Exergy分析模型,以Exergy损失Edest和Exergy效率ε为评价指标对降温工况下系统及其组成单元的热力学性能进行分析和探讨... 以地下水式地源热泵系统在农业温室和办公楼中的夏季降温研究为例,归纳出地源热泵降温系统的能量利用质量模型——Exergy分析模型,以Exergy损失Edest和Exergy效率ε为评价指标对降温工况下系统及其组成单元的热力学性能进行分析和探讨。分析结果表明:蒸发器的Exergy效率达到92.5%,具有较高的能源利用质量;冷凝器的Exergy效率相对较小,Exergy损失较大,不可逆性大;总体来看,系统的Exergy效率较低。与此同时,试验期间地源热泵机组和系统的制冷性能系数分别为5.90和3.56。 展开更多
关键词 地源热泵 降温 可用能 性能系数
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(Exergy)在湖泊生态系统建模中的应用 被引量:14
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作者 张永泽 刘玉生 郑丙辉 《湖泊科学》 EI CAS CSCD 1997年第1期75-81,共7页
基于达尔文“适者生存”理论的热力学表述,本文把热力学概念“(Exergy)”作为一些重要模型参数的目标函数引入湖泊生态动力学模型.应用拥控制下的参数组合模拟程序实现了参数随时间的变化,并通过变化的模型参数来反映湖泊生态系统... 基于达尔文“适者生存”理论的热力学表述,本文把热力学概念“(Exergy)”作为一些重要模型参数的目标函数引入湖泊生态动力学模型.应用拥控制下的参数组合模拟程序实现了参数随时间的变化,并通过变化的模型参数来反映湖泊生态系统中物种组成和生态结构随时间的变化.这一改进克服了以往模型刚性较强、适应性差和生态系统特性考虑少的缺陷,该改进的湖泊生态动力学模型被成功用于滇池生态系统的模拟. 展开更多
关键词 YONG 生态动力学模型 湖泊 生态系统
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可降低数据中心热管理能耗的嵌入机柜式冷却方法及其EXERGY分析 被引量:3
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作者 刘明 刘静 《电子机械工程》 2009年第2期1-7,共7页
随着社会信息化和对高性能计算的需求,全球数据中心的规模和集成度均以较快的速度增长,由此使得数据中心热耗散功率密度不断攀升,冷却成本大幅增加,传统热管理方案很难适应计算机能耗继续增长的需求。文中提出一种旨在降低数据中心能耗... 随着社会信息化和对高性能计算的需求,全球数据中心的规模和集成度均以较快的速度增长,由此使得数据中心热耗散功率密度不断攀升,冷却成本大幅增加,传统热管理方案很难适应计算机能耗继续增长的需求。文中提出一种旨在降低数据中心能耗的可对机柜内部直接进行冷却的嵌入式热管理方案,并引入exergy分析方法对分别于机柜内的顶端或各计算单元设置制冷机蒸发器两种热管理方案的性能进行了评估。结果显示,两种方案在可优化exergy部分分别较之传统冷却方案高出0.04%和1.05%,表明其在热经济性方面具有优势,可望发展为今后数据中心有前景的热管理方案。 展开更多
关键词 数据中心 计算机热管理 蒸汽压缩制冷 exergy分析 嵌入式冷却 热经济性
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基于Exergy天津市生态经济系统可持续发展度量
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作者 孟伟庆 王中良 李洪远 《生态科学》 CSCD 北大核心 2014年第4期818-824,共7页
城市生态系统是复杂的高度人工化的复合生态系统,其正常的运转动力来自于外界能量的输入,Exergy作为热力学指标是指系统从给定状态到与其周围介质达到热力学平衡所需做的最大功,Exergy概念被生态学家借鉴应用于生态系统的研究,使它有了... 城市生态系统是复杂的高度人工化的复合生态系统,其正常的运转动力来自于外界能量的输入,Exergy作为热力学指标是指系统从给定状态到与其周围介质达到热力学平衡所需做的最大功,Exergy概念被生态学家借鉴应用于生态系统的研究,使它有了生物学的含义。在分析能量、能值和Exergy概念的内涵及总结Exergy的研究进展的基础上,通过构建城市尺度的能质账户分析模型,对天津市生态经济系统的能质效率进行了分析。将生态热力学的理论应用区域经济地理学定量研究中,结果表明,天津市总体的能质(exergy)输入从2003年的682.5PJ增加到2010年的1254.2 PJ,系统的总能质输出从1 42.0 PJ增加到299.8 PJ,能源输入总量快速增加,但总体的能质效率增加不大,提高资源和能源的利用效率方面还有较大的提升空间,这与采用其他方法的计算结果相一致,在该指标易于理解,可以为政府决策者在制定经济发展战略时提供有效理论支持。 展开更多
关键词 能质exergy 城市 生态经济系统 可持续评价
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生命周期exergy分析在能源动力工程中的应用
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作者 张泰岩 安连锁 刘树华 《可再生能源》 CAS 2006年第3期77-79,共3页
生命周期评价是一种有效的用于诊断和评价清洁生产的工具,其理念已经逐步引入我国,并在诸多领域得到不同程度的应用。为了能够分析具有不同能量形式的产物的能源系统,引入exergy的概念,将exergy作为比较的统一标准,这就是生命周期exerg... 生命周期评价是一种有效的用于诊断和评价清洁生产的工具,其理念已经逐步引入我国,并在诸多领域得到不同程度的应用。为了能够分析具有不同能量形式的产物的能源系统,引入exergy的概念,将exergy作为比较的统一标准,这就是生命周期exergy方法。文章通过实例介绍生命周期评价及生命周期exergy分析在能源动力工程中的应用。 展开更多
关键词 生命周期评价 生命周期exergy方法 能源动力工程 可再生能源 环境保护
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用有效能EXERGY()值法衡定TRT最大轴功率 被引量:1
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作者 潘华珊 《冶金动力》 2000年第5期43-44,共2页
从工程热物理和物理化学的角度阐述了为何要用和如何用有效能 (火用 )判定 TRT轴功率的极值方法和运算公式 ,说明了运算概念的异同点 ,并从实际出发 ,提出了如何决定运算中所需的状态参数。
关键词 TRT 最大轴功率 有效能法判定 计算公式
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钢铁工业铁前工序的Exergy分析 被引量:3
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作者 杨龙飞 苍大强 《冶金能源》 2014年第2期9-13,共5页
铁前工序是钢铁工业能源消耗的主要环节,占总能耗的80%。为此,根据铁前工序的生产数据,通过建立物料平衡,建立了Exergy计算模型,获得了各工序的Exergy平衡关系、热力学完善度、Exergy效率、Exergy损失系数。同时结合理论分析,论述了Exe... 铁前工序是钢铁工业能源消耗的主要环节,占总能耗的80%。为此,根据铁前工序的生产数据,通过建立物料平衡,建立了Exergy计算模型,获得了各工序的Exergy平衡关系、热力学完善度、Exergy效率、Exergy损失系数。同时结合理论分析,论述了Exergy分析法对铁前工序(焦化、烧结、高炉炼铁)节能分析的优势,并且提出各工序的节能途径。 展开更多
关键词 exergy计算模型 exergy分析 铁前工序 节能
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Exergy and ecological modelling of lake environment 被引量:3
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作者 Zhang Yong ze Environmental Engineering Center, Chinese Research Academy of Environmental Sciences, Beijing 100012, China Wang Xuan Institute of Environmental Science, Beijing Normal University, Beijing 100875, China 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 1998年第4期114-121,共8页
The thermodynamic theories and ecological theories can be integrated effectively by exergy(biogeochemical energy of the system) to study the environmental problems of the lakes and reservoirs. In this paper, the appl... The thermodynamic theories and ecological theories can be integrated effectively by exergy(biogeochemical energy of the system) to study the environmental problems of the lakes and reservoirs. In this paper, the applications of exergy in the ecological modelling of lake environment were reviewed. Results showed that exergy can be used as a goal function to estimate the parameters of the ecological model for lakes and reservoirs and to develop the structural dynamic models accounting for the changes in lake ecosystems, and as an ecological indicators for the development and evolution of lake ecosystems. 展开更多
关键词 exergy ecological indicator structural dynamic model goal function.
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Effects of working parameters on gasoline engine exergy balance 被引量:9
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作者 LIU Jing-ping FU Jian-qin +1 位作者 FENG Ren-hua ZHU Guo-hui 《Journal of Central South University》 SCIE EI CAS 2013年第7期1938-1946,共9页
To improve the energy utilization efficiency of internal combustion (IC) engine, exergy analysis was conducted on a passenger car gasoline engine. According to the thermodynamic theory of IC engine, in-cylinder exer... To improve the energy utilization efficiency of internal combustion (IC) engine, exergy analysis was conducted on a passenger car gasoline engine. According to the thermodynamic theory of IC engine, in-cylinder exergy balance model was built. The working processes of gasoline engine were simulated by using the GT-power. In this way, the required parameters were calculated and then gasoline engine exergy balance was obtained by programming on computer. On this basis, the influences of various parameters on exergy balance were analyzed. Results show that, the proportions of various forms of exergy in gasoline engine from high to low are irreversible loss, effective work, exhaust gas exergy and heat transfer exergy. Effective exergy proportion fluctuates with cylinder volumetric efficiency at full load, while it always increases with break mean effective pressure (BMEP) at part load. Exhaust gas exergy proportion is more sensitive to speed, and it increases with speed increasing except at the highest speed. The lower proportion of heat transfer exergy appears at high speed and high load. Irreversible loss is mainly influenced by load. At part load, higher BMEP results in lower proportion of irreversible loss; at full load, the proportion of irreversible loss changes little except at the highest speed. 展开更多
关键词 gasoline engine exergy balance waste heat recovery thermal efficiency energy conservation
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Exergy Analysis and Retrofitting of Natural Gas-based Acetylene Process 被引量:5
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作者 王志方 郑丹星 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2008年第5期812-818,共7页
This article presents an acetylene production process by partial oxidation/combustion of natural gas. The thermodynamic performance and exergy analysis in the process are investigated using the flow-sheeting program A... This article presents an acetylene production process by partial oxidation/combustion of natural gas. The thermodynamic performance and exergy analysis in the process are investigated using the flow-sheeting program Aspen Plus. The results indicate that the most important destruction of exergy is found to occur in the reactor and water quenching scrubber, amounting to 8.23% and 10.39%, respectively, of the entire system. Based on the results of thermodynamic and exergy analysis, the acetylene reactor has been retrofitted. The improvement ratios of molar 02 to CH4 and molar CO to CN4 are 0.65 and 0.20, respectively. An improvement of the acetylene production system is proposed. Adopting the improvement operation conditions and using oil to realize the reaction heat recovery, the feedstock of natural gas is reduced by 9.88% and the exergy loss in the retrofitting process is decreased by 19.71% compared to the original process. 展开更多
关键词 ACETYLENE exergy analysis natural gas partial oxidation HYDROGEN
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Exergy Analysis of a Double-Effect Solar Absorption Refrigeration System in Ngaoundere 被引量:2
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作者 Maurice Tenkeng Paiguy Armand Ngouateu Wouagfack Réné Tchinda 《World Journal of Engineering and Technology》 2019年第1期158-174,共17页
Solar energy is replacing more and more traditional sources of energy because of the fact that it’s also fighting about global warming. This study is based on exergy analysis of a double-effect series flow absorption... Solar energy is replacing more and more traditional sources of energy because of the fact that it’s also fighting about global warming. This study is based on exergy analysis of a double-effect series flow absorption refrigeration system powered by solar energy in Ngaoundere. The simulation is done on the basis of a half hourly analysis for the first time, from 6.30 AM to 6.30 PM, using water-lithium bromide as working pair. The main parameters for the performance of an absorption cycle, which are the COP and the ECOP, have been analyzed and the results show that this two parameters increase while increasing the temperature of the main generator. The exergy loss of each component of the system and the total exergy loss of the system have been analyzed and their effectiveness calculated, using the first and second law of thermodynamics. The highest exergy loss occurs in the main generator GI and in the absorber, making these components more important in an absorption cycle. This analysis is based on a mathematical model using FORTRAN?language. The results obtained may be useful for the optimization of solar absorption refrigeration systems. 展开更多
关键词 DOUBLE Effect REFRIGERATION HALF Hourly exergy LOSS
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Energy and exergy recovery from exhaust hot water using organic Rankine cycle and a retrofitted configuration 被引量:8
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作者 SUN Wen-qiang YUE Xiao-yu +1 位作者 WANG Yan-hui CAI Jiu-ju 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第6期1464-1474,共11页
Exhaust hot water (EHW) is widely used for various industrial processes. However, the excess heat carried by EHW is typically ignored and discharged into the environment, resulting in heat loss and heat pollution. A... Exhaust hot water (EHW) is widely used for various industrial processes. However, the excess heat carried by EHW is typically ignored and discharged into the environment, resulting in heat loss and heat pollution. An organic Rankine cycle (ORC) is an attractive technology to recycle heat from low-temperature energy carriers. Herein, ORC was used to recycle the heat carried by EHW. To investigate the energy and exergy recovery effects of EHW, a mathematical model was developed and a parametric study was conducted. The energy efficiency and exergy efficiency of the EHW-driven ORC system were modeled with R245fa, Rl13 and R123 as the working fluids. The results demonstrate that the EHW and evaporation temperatures have significant effects on the energy and exergy efficiencies of the EHW-driven ORC system. Under given EHW conditions, an optimum evaporation temperature exists corresponding to the highest exergy efficiency. To further use the low-temperature EHW, a configuration retrofitted to the ORC by combining with flash evaporation (FE) was conducted. For an EHW at 120 ~C and 0.2 MPa, the maximum exergy efficiency of the FE-ORC system is 45.91% at a flash pressure of 0.088 MPa. The FE-ORC performs better in exergy efficiency than the basic FE and basic EHW-driven ORC. 展开更多
关键词 exhaust hot water (EHW) organic Rankine cycle (ORC) energy efficiency exergy efficiency flashevaporation (FE)
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