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THE NUCLEAR RENAISSANCE MATERIALS OF CHOICE FOR SURFACE CONDENSERS BOP HEAT EXCHANGERS

机译:表面冷凝器和防喷器换热器的核选择材料

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Amidst the clamor and increasing world demand for energy, the continued use of fossil fuels for electric power generation has recently emerged as the bane of the industry. Green power is being championed as the new fuel de jour kid on the block. Environmentalists and other global warming advocates are successfully lobbying their political agendas for emission caps, carbon sequestration, NO_x and SO_x and other greenhouse gas limits. In many cases, these efforts have resulted in the outright cancellation, delay or unit reductions of new coal-fired plants. Similarly, simple and combined cycle gas turbine (CCGT) units, popularized during the Enron "gas bubble" era are at the mercy of unstable fuel prices which have, in large part, relegated this generation type from base load to load follow. Wind, biomass, hydro, photovoltaic and other renewables continue to produce an increased percentage of the power base but total contribution remains costly, inefficient and pitifully low.rnEnter the nuclear renaissance. A dramatic paradigm shift, even by the green power advocates, has allowed the nuclear phoenix to rise with the promise of emission-free power, generation efficiencies, increasing ROI revenues and demonstrating an enviable safety record since TMI and Chernobyl. Assuming this energy source conceives and bears the gestated fruit of a renaissance, the next decade will be telling in terms of the challenges brought forward by licensing, design, financing, construction and operation of a new generation of nuclear power reactors.rnParamount among these is a new, time-tested generation of construction materials that will be evaluated to insure a 40 to 60 or even 80 year operational life of these new plants. Consider the problematic copper materials that were chosen during the early 70's for their high thermal conductivity, competitive cost and ease of fabrication. Contrast these past lessons-learned to current-day, state-of-the-art generation fleet construction standards where demonstrated long-term sustainability coupled with state-of-the-art designs & materials must emerge as the prominent industry players of choice. The paper will examine these and other relevant aspects of the technical and commercial supply chain that is predicted to both challenge and reward designers and material suppliers well into the next decade.
机译:在喧嚣和世界对能源的需求日益增长的背景下,最近一直在继续使用化石燃料发电,这已成为该行业的祸根。绿色能源正在成为区块链上的新燃料。环保主义者和其他全球变暖倡导者正在成功游说其有关排放上限,碳固存,NO_x和SO_x以及其他温室气体排放限制的政治议程。在许多情况下,这些努力导致了新建燃煤电厂的直接取消,延迟或单位减少。同样,在安然“气泡”时代流行的简单和联合循环燃气轮机(CCGT)受到不稳定的燃料价格的支配,这些燃料价格在很大程度上已从基本负荷降级为负荷负荷。风能,生物质能,水能,光伏能和其他可再生能源继续占电力基础的比例不断提高,但总贡献仍然昂贵,低效且可怜的低。进入核复兴。自从TMI和切尔诺贝利以来,即使是绿色动力的倡导者,也发生了巨大的范式转变,这使核菲尼克斯得以崛起,实现了无排放电力,发电效率,增加的ROI收入以及令人羡慕的安全记录。假设这种能源孕育并复兴了孕育的成果,那么未来十年将讲述新一代核动力反应堆的许可,设计,融资,建造和运行所带来的挑战。经过时间考验的新一代建筑材料,将对其进行评估,以确保这些新工厂的使用寿命为40至60年,甚至80年。考虑一下在70年代初选择的有问题的铜材料,它们具有高的导热性,具有竞争力的成本和易于制造的特性。将这些过去的经验教训与当今最先进的机队建设标准进行对比,在这些标准中,经证明具有长期可持续性以及最先进的设计和材料,它们必将成为业界首选的重要参与者。本文将研究技术和商业供应链的这些及其他相关方面,这些方面预计将在未来十年内挑战和奖励设计师和材料供应商。

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