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Numerical Analysis of a Combined Heat and Power Generation Technology from Residual Biomasses
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作者 c.caputo D.Cirillo +3 位作者 M.Costa M.La Villetta R.Tuccillo R.Villani 《Journal of Energy and Power Engineering》 2018年第6期300-321,共22页
Energy valorization of organic waste material is nowadays an assessed practice of circular economy.Combined heat and power(CHP)technologies based on biomass gasification represent viable substitutes to traditional ene... Energy valorization of organic waste material is nowadays an assessed practice of circular economy.Combined heat and power(CHP)technologies based on biomass gasification represent viable substitutes to traditional energy conversion units based on combustion,whose need has recently experienced a huge growth,due to the increasing concerns about the release of greenhouse gases(GHGs)emissions and the related effects on climate changes.At present,only a few solutions have yet achieved a level of full development for commercialization.One of them is the system developed by CMD,the CMD ECO20,made of a gasifier,a syngas cleaning system and a spark ignition internal combustion engine working as a co-generator.In the present work,a numerical model is developed to study this system into detail and search for optimal controlling parameters.The simulation relies on a combined use of the Thermoflex?environment and a proper one-dimensional(1D)model of the engine module built within GT-Suite?.An original contribution is given to the turbulent combustion model that accounts for the laminar flame speed of the specific syngas.The numerical model,that covers the entire biomass-to-energy conversion process,is validated under real operative conditions.The final purpose of the work is the optimization of input parameters,as the initial biomass moisture content,the equivalence ratio at the gasifier or the timing of spark advance,to maximize the system electrical energy output. 展开更多
关键词 Biomass CHP GASIFICATION internal combustion engine SYNGAS WOOD chip
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比萨斜塔“斜而不倒”的秘密
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作者 c.caputo 《疯狂英语(新读写)》 2021年第11期33-33,共1页
比萨斜塔是世界建筑史上的一大奇迹。由于塔身压力过重和地质松软,其南面的地基比北面约低2米。在施工期间,塔身即出现轻微倾斜,随着工程进度的推进,倾斜度不断增加,比萨斜塔曾一度停工。
关键词 比萨斜塔 工程进度 世界建筑史 塔身 倾斜度 施工期间 地基
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