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TECHNICAL/TECHNOLOGICAL ADVANCES FOR OPTIMIZING HEAT RATE

机译:优化加热速率的技术/技术进步

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Heat rate in a power plant cycle is a calculated value expressed as the ratio of the amount of heat supplied to the cycle divided by the amount of power that is generated. It is directly affected by the heat source and associated auxiliaries, the prime mover, the regenerative feedwater heating cycle and, the heat sink. Heat rate computations also suffer from imprecision/time lags associated with fuel flow measurements, difficulties/uncertainties in determination of the actual amount of heat supplied to the power plant cycle and, measurement of the power that is generated. Consequently, many power plant owners and operators have reservations as to the intrinsic value of heat rate as a performance metric, since detailed analysis and evaluation of the underlying causes and issues are essential to account for deviations from predicted or expected values. Several innovations and advances have paved the way for real-time monitoring, trending, analyzing, evaluating, diagnosing and optimizing power generating asset performance. Using a coal-fired unit as a representative case study, this paper provides an overview of how technical/technological advances in optimizing power generating asset performance facilitate concomitant optimization of heat rate.
机译:发电厂循环中的热量比率是一个计算值,表示为循环中提供的热量除以所产生的电量的比值。它直接受到热源和相关辅助设备,原动机,再生给水加热循环以及散热器的影响。热率计算还受到与燃料流量测量相关的不精确/时间滞后,确定提供给电厂循环的实际热量的困难/不确定性以及所产生的功率的测量的困扰。因此,许多发电厂的所有者和运营商对于作为性能指标的热率的内在价值持保留态度,因为对根本原因和问题的详细分析和评估对于解决与预期或预期值之间的偏差至关重要。多项创新和进步为实时监控,趋势分析,评估,诊断和优化发电资产性能铺平了道路。以燃煤机组为代表的案例研究,本文概述了优化发电资产性能的技术进步如何促进了热率的同时优化。

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