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Preliminary analysis of dry-steam geothermal power plant by employing exergy assessment: Case study in Kamojang geothermal power plant, Indonesia

机译:利用能值评估对干蒸汽地热发电厂进行的初步分析:以印度尼西亚卡莫姜地热发电厂为例

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The objectives of this study are to perform the exergy analysis and ambient temperature optimization of the Kamojang geothermal power plant by employing Engineering Equation Solver (EES). The geothermal capacity is 55MW and the field is vapor-dominated reservoir with temperature 245°C. In the initial state temperature, pressure and mass flow data are collected from the plant operation. The study results show that system has overall efficiency of 35.86% which means that only 111,138.92kW electrical power can be extracted from 309,000kW thermal power being produced by 10 production wells of Kamojang. This low efficiency is due to irreversibility associated with different processes and components in the system. The largest irreversibility occurs in condenser due to which 53% of total energy is disposed into the environment. Ambient temperature at Kamojang varies from 17 to 20°C. The effect of this variation in temperature is also investigated and it is observed that higher temperature does not have any significant impact on system efficiency.
机译:这项研究的目的是通过使用工程方程求解器(EES)对Kamojang地热发电厂进行火用分析和环境温度优化。地热容量为55MW,该区域为温度为245°C的以蒸汽为主的储层。在初始状态下,从工厂运行中收集压力和质量流量数据。研究结果表明,该系统的总效率为35.86%,这意味着从Kamojang的10口生产井生产的309,000kW热力中只能提取111,138.92kW电力。这种低效率是由于与系统中不同过程和组件相关的不可逆性。最大的不可逆性发生在冷凝器中,因为它将53%的总能量分配到环境中。 Kamojang的环境温度范围为17至20°C。还研究了温度变化的影响,并且观察到较高的温度对系统效率没有任何重大影响。

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