Stadiums: past, present and future
A Stadiums are among the oldest forms of urban architecture: vast stadiums where the public could watch sporting events were at the centre of western city life as far back as the ancient Greek and Roman Empires, well before the construction of the great medieval cathedrals and the grand 19th- and 20th-century railway stations which dominated urban skylines in later eras.
Today, however, stadiums are regarded with growing scepticism. Construction costs can soar above £1 billion, and stadiums finished for major events such as the Olympic Games or the FIFA World Cup have notably fallen into disuse and disrepair.
But this need not be the cause. History shows that stadiums can drive urban development and adapt to the culture of every age. Even today, architects and planners are finding new ways to adapt the mono-functional sports arenas which became emblematic of modernisation during the 20th century.
B The amphitheatre* of Arles in southwest France, with a capacity of 25,000 spectators, is perhaps the best example of just how versatile stadiums can be. Built by the Romans in 90 AD, it became a fortress with four towers after the fifth century, and was then transformed into a village containing more than 200 houses. With the growing interest in conservation during the 19th century, it was converted back into an arena for the staging of bullfights, thereby returning the structure to its original use as a venue for public spectacles.
Another example is the imposing arena of Verona in northern Italy, with space for 30,000 spectators, which was built 60 years before the Arles amphitheatre and 40 years before Rome’s famous Colosseum. It has endured the centuries and is currently considered one of the world’s prime sites for opera, thanks to its outstanding acoustics.
C The area in the centre of the Italian town of Lucca, known as the Piazza dell’ Anfiteatro, is yet another impressive example of an amphitheatre becoming absorbed into the fabric of the city. The site evolved in a similar way to Arles and was progressively filled with buildings from the Middle Ages until the 19th century, variously used as houses, a salt depot and a prison. But rather than reverting to an arena, it became a market square, designed by Romanticist architect Lorenzo Nottolini. Today, the ruins of the amphitheatre remain embedded in the various shops and residences surrounding the public square.
D There are many similarities between modern stadiums and the ancient amphitheatres intended for games. But some of the flexibility was lost at the beginning of the 20th century, as stadiums were developed using new products such as steel and reinforced concrete, and made use of bright lights for night-time matches.
Many such stadiums are situated in suburban areas, designed for sporting use only and surrounded by parking lots. These factors mean that they may not be as accessible to the general public, require more energy to run and contribute to urban heat.
E But many of today’s most innovative architects see scope for the stadium to help improve the city. Among the current strategies, two seem to be having particular success: the stadium as an urban hub, and as a power plant.
There’s a growing trend for stadiums to be equipped with public spaces and services that serve a function beyond sport, such as hotels, retail outlets, conference centres, restaurants and bars, children’s playgrounds and green space. Creating mixed-use developments such as this reinforces compactness and multi-functionality, making more efficient use of land and helping to regenerate urban spaces.
This opens the space up to families and a wider cross-section of society, instead of catering only to sportspeople and supporters. There have been many examples of this in the UK: the mixed-use facilities at Wembley and Old Trafford have become a blueprint for many other stadiums in the world.
F The phenomenon of stadium as power stations has arisen from the idea that energy problems can be overcome by integrating interconnected buildings by means of a smart grid, which is an electricity supply network that uses digital communications technology to detect and react to local changes in usage, without significant energy losses. Stadiums are ideal for these purposes, because their canopies have a large surface area for fitting photovoltaic panels and rise high enough (more than 40 metres) to make use of micro wind turbines.
Freiburg Mage Solar Stadium in Germany is the first of a new wave of stadiums as power plants, which also includes the Amsterdam Arena and the Kaohsiung Stadium. The latter, inaugurated in 2009, has 8,844 photovoltaic panels producing up to 1.14 GWh of electricity annually. This reduces the annual output of carbon dioxide by 660 tons and supplies up to 80 percent of the surrounding area when the stadium is not in use. This is proof that a stadium can serve its city, and have a decidedly positive impact in terms of reduction of CO2 emissions.
G Sporting arenas have always been central to the life and culture of cities. In every era, the stadium has acquired new value and uses: from military fortress to residential village, public space to theatre and most recently a field for experimentation in advanced engineering. The stadium of today now brings together multiple functions, thus helping cities to create a sustainable future.
* amphitheatre: (especially in Greek and Roman architecture) an open circular or oval building with a central space surrounded by tiers of seats for spectators, for the presentation of dramatic or sporting events
Reading Passage 2 has seven paragraphs, A-G.
Which section contains the following information?
Write the correct letter, A-G, in boxes 14-17 on your answer sheet.
NB You may use any letter more than once.
题目关键词:negative attitudes, building projects
答案位置:Section A 第 2 小节
题目:提及对于场馆建设项目的负面态度
按照文章顺序读文章可知,Section A 在第 1 小节描述完古代体育场馆的辉煌之后,在第 2 小节以 Today,however 表示转折,可知下文
将要描写体育馆的现状与古时有异。原文中 growing scepticism 对应第 14 题中的 negative attitudes,如果考生不理解 scepticism,可根 据 however 这一转折关系来判断:与上文相反,下文应该是关于体育场馆的负面观点;或者接着阅读下文也可知,建筑场馆的成本暴涨(soar),而场馆在运营大型体育赛事后经常废弃失修(disuse and disrepair),这是 negative attitudes 的具体描述。以上不同方法均可得知,14 题中每个成分在 Section A 中均有所体现, 因此答案为 A。
题目关键词:figures, environmental benefits, certain
答案位置:Section F 第 2 小节
题目:数据显示某个体育场馆有益于环境
读题目可预判,figures 意味着原文中需要数据论证。按照顺序阅读原文,Section E 讲述设计师对体育场馆改造的两大成功策略中,第二点为体育馆用作发电站。接着阅读 Section F,虽然没有明确提到 environmental benefits,但第 2 小节提及 2009 年落成的 Kaohsiung 体育场(对应题目中的 a certain stadium)有 8844 片光伏发电板,每年生产 1.14 GWh 的电,减少了 660 吨的二氧化碳排放,提供了周围区域 80% 的电量。上述数据,皆对应题目中的 figures,而减少碳排、光伏发电,即 environmental benefits,题目中每个成分都出现在 Section F,因此答案为 F。
题目关键词:examples, wide range, facilities, new
答案位置:Section E 第 2 小节
题目:举例论证一些新建的体育场内有广泛的设施可供使用
分析题目可知,原文段落需要包含新型剧场各种用途的具体例子。Section E 提及当今最有创造力的建筑师们看到了体育场馆优化城市的潜 力,他们采取的策略中有两点尤为成功:第一作为城市中心(an urban hub),第二作为发电站。接下来展开描述第一点时提及,体育场馆所包含的公共区域和服务的功能已经不再局限于体育(beyond sport),还可以作为(such as)旅馆、奥特莱斯、会展中心、餐厅和酒吧。这些例子的多样功能性与题目中的 examples 和 wide range of facilities available 一一对应,16 题中所有成分在 Section E 中都有体现,因此答案为 E。
题目关键词:disadvantages, a certain era
答案位置:Section D
题目:提及某段时期内修建的体育场馆的一些劣势
本题容易误选为 A,可使用如下方法排除:读题可知,原文对应段落必须包含:(1)缺点;(2)某个具体时段。Section A 确实提到对现代体育场馆的一些负面评价(造价昂贵,大型体育项目之后无人使用修缮),似乎与题目中的 disadvantages 相对应。但是,由于 Section A 中说到负面评价时只是宽泛使用了 today 这个表示时间的词,不符合题目中的 during a certain era,因此排除。而 Section D 不但提及现代体育场丧失灵活性(the flexibility was lost)和位置远离公众(not be accessible to the general public)这两个表示 disadvantages 的观点,还明确指出这些场馆的建造时间是 20 世纪初期(at the beginning of the 20th century),因此答案为 D。
