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Problems of hydro-electric design in mixed thermal????????hydro-electric systems

机译:混合热力水力发电系统中水力发电设计的问题

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The paper deals with some of the problems which arise in the planning and development of a system comprising both thermal and hydro-electric plant. In general, when thermal plant predominates it is considered desirable to develop hydro-electric power with the greatest installed capacity the system can absorb in conjunction with the available amount of energy. Practical limitations to low-load-factor operation are discussed. The effects of the introduction of low-load-factor hydro-electric plant on system operation and on the overall fuel consumption of the thermal plants are examined. New circumstances which cannot readily be forecast may later make desirable a change in the design load factor of some of the hydro-electric plants, and the paper stresses the advantage of having, where possible, flexibility in the initial design to enable such changes to be made. Where circumstances permit, consideration of the use of pumps, and especially reversible pump-turbines, is recommended as a means of augmenting storage capacity and either increasing the firm annual load factor or permitting increased installed capacity. The basic economics of the pumped-storage scheme are explained and an example illustrating the flexibility which is possible in planning such an installation is given in the Appendix. The paper discusses the effect on hydro-electric development of the possible ultimate replacement of coal and oil by nuclear fuel in thermal plants, and it is concluded that hydro-electric plant is likely to continue to be advantageous for peak-load operation and that there is no justification for any postponement of long-term investment in hydroelectric works on account of the advent of nuclear power. The effect of rising prices is also discussed, and a general survey is given of present practice in the design of hydro-electric machines. Transmission practice and problems are briefly reviewed as an integral part of hydro-electric design. In conclusion it is pointed out that dif-nferences of opinion between thermal and hydro-electric engineers may arise because of inadequate mutual understanding of the inherent characteristics of the two types of plant and of the problems of combined operation. The design of hydro-electric projects in a mixed system must be based, not only on the hydrographical and civil engineering data, but on a comprehensive study of all the many factors involved.
机译:本文涉及由火力发电厂和水力发电厂组成的系统的规划和开发中出现的一些问题。通常,在火力发电厂占主导地位的情况下,人们希望以最大的装机容量开发水力发电系统,该系统可以结合可用的能量进行吸收。讨论了低负载因数操作的实际局限性。研究了引入低负荷系数水力发电厂对系统运行和热电厂总燃料消耗的影响。无法轻易预测的新情况可能会在以后使某些水力发电厂的设计负荷系数发生变化,并且本文强调了在可能的情况下在初始设计中具有灵活性以使这种变化得以实现的优势。制作。在情况允许的情况下,建议考虑使用泵,特别是可逆式水泵水轮机,以增加存储容量并增加固定的年度负荷系数或允许增加安装容量。解释了抽水蓄能方案的基本原理,并在附录中给出了一个示例,说明了在规划此类安装时可能出现的灵活性。本文讨论了火力发电厂可能最终用核燃料替代煤和石油对水电开发的影响,并得出结论认为,水电发电厂可能继续对峰值负荷运行有利,并且存在由于核电的出现而推迟对水电工程的长期投资是没有道理的。还讨论了价格上涨的影响,并对水力发电机设计中的当前实践进行了总体调查。输电实践和问题作为水电设计的组成部分进行了简要回顾。总之,要指出的是,由于对两种电厂的固有特性和联合运行问题的相互理解不足,因此热力工程师和水力发电工程师之间可能会产生分歧。混合系统中的水力发电项目的设计不仅必须基于水文和土木工程数据,而且还必须基于对所有许多因素的综合研究。

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