首页> 外文期刊>Journal of Urban and Environmental Engineering >COMPARISON OF EFFICIENCY OF A SOLAR DRIVEN CARNOT ENGINE UNDER MAXIMUM POWER AND POWER DENSITY CONDITIONS
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COMPARISON OF EFFICIENCY OF A SOLAR DRIVEN CARNOT ENGINE UNDER MAXIMUM POWER AND POWER DENSITY CONDITIONS

机译:最大功率和功率密度条件下太阳能驱动卡诺发动机的效率比较

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A comparative analysis on thermodynamic efficiency based on maximum power & power density conditions have been performed for a solar-driven Carnot heat engine with internal irreversibility. In this analysis, the heat transfer from the hot reservoir is to be in the radiation mode and the heat transfer to the cold reservoir is to be in the convection mode. The thermodynamic efficiency function, power & power density functions have been derived and maximization of the power functions have been performed for various design parameters. From the optimum conditions, the thermal efficiencies at maximum power and power densities have been obtained. The effects of internal irreversibility, extreme temperature ratios & specific engine size in area ratio between the hot & cold reservoirs as various design parameters on thermodynamic efficiencies have been investigated for both the conditions. The efficiencies have been compared with Curzon- Ahlborn & Carnot efficiencies respectively. The analysis showed that the efficiency at maximum power output is greater than the efficiency at maximum power density. And the efficiencies can be greater than the Curzon- Ahlborn`s efficiency only for low values of design parameters.
机译:基于内部不可逆的太阳驱动卡诺热机,已经根据最大功率和功率密度条件对热力学效率进行了比较分析。在该分析中,从热容器的热传递将处于辐射模式,而向冷容器的热传递将处于对流模式。推导了热力学效率函数,功率和功率密度函数,并对各种设计参数进行了功率函数的最大化。根据最佳条件,获得了最大功率和功率密度下的热效率。在这两种情况下,都研究了内部不可逆性,极限温度比和特定的发动机尺寸(作为不同设计参数的冷热库之间的面积比)对热力学效率的影响。分别将效率与Curzon-Ahlborn和Carnot效率进行了比较。分析表明,最大功率输出时的效率大于最大功率密度时的效率。仅在设计参数值较低的情况下,效率才能大于Curzon-Ahlborn的效率。

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