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Chinese Building Solution for Rapidly Urbanizing Global South

By David SouthDevelopment Challenges, South-South Solutions

SOUTH-SOUTH CASE STUDY

The global South is currently experiencing the biggest surge in urban population ever seen in human history. This transformation from urban to rural is happening in many different ways across the global South. Some countries have highly detailed plans and are building new cities from scratch, while other countries feel overwhelmed by their booming urban populations.

By 2025, it is estimated the developing world could become home to 37 megacities with more than 10 million residents (http://en.wikipedia.org/wiki/Megacity) (The Guardian). Sixty years ago there were just two megacities: New York and Tokyo. Today, there are between 21 and 23, and the UN is forecasting that by 2025 Asia will have nine new megacities. By 2025, the majority of the world’s megacities will be in the global South.

But how will these cities be built? How will they use resources well and ensure the rapidly rising new buildings are safe and healthy?

A Chinese innovator and Internet sensation has developed a way to rapidly build high-density, high-rise structures that are also safe and meet strict earthquake-proofing standards. Building upwards is an efficient way to get more use out of space and to free up land for things like parks.

Just as the first megacities such as New York began building skyscrapers a century ago, going upwards will be the solution many of the new megacities will choose as they feel the pressing twin demands of rising populations and financial restraints.

Based in Changsha, China (http://en.wikipedia.org/wiki/Changsha), the BROAD Group
(http://www.broad.com/) (http://www.broad.com:8089/english/) has become an Internet sensation for posting videos of it rapidly building skyscrapers. It does this to show off its innovative technologies, which have significantly reduced the time it takes to build high-rise buildings.

The BROAD Group calls itself “an enterprise based on the vision of unique technologies and the philosophy of preserving life.”

The company is a pioneer in making non-electric air conditioning equipment, energy systems, and sustainable building technology.

The company has come a long way since it was started in 1988 with just US $3,000. By 1995, it had shed its debts and loans. It sees its mission as confronting the two major crises facing the world today: atmospheric pollution and global warming. The company hopes to evolve into a social enterprise.

BROAD calls itself a world leader in making central air conditioning powered by natural gas and waste heat (http://en.wikipedia.org/wiki/Broad_Group). The company is currently exporting its systems to more than 60 countries and was an official supplier to the 2010 Shanghai Expo.

BROAD has recently been expanding its product range and moving into constructing sustainable buildings. In particular it is developing an expertise in rapid construction techniques. This is important in the modern world as cities across the global South experience population growth and the pressing need to house people and create workplaces efficiently. BROAD is proud of the 15-storey hotel in Dongting Lake in Hunan Province it built in just six days, which became a hit on YouTube (http://www.youtube.com/watch?v=sjGhHl-W8Wg). After this achievement, BROAD constructed a 30-storey hotel in 15 days.

Part of the BROAD Group, Broad Sustainable Building (BSB) claims to make the “World’s first factory-made building.” BROAD says its buildings are sustainable because they efficiently use recycled construction materials, rely on materials free of formaldehyde, lead, radiation and asbestos and avoid “construction sewage” dust or waste.

BROAD was provoked into making sustainable buildings after the Wenchuan Earthquake in 2008 (http://quake.mit.edu/~changli/wenchuan.html). A year after the earthquake, 300 researchers from BROAD developed an earthquake-resistant building technology.

The factory-made building works like this: a “main board” is prepared with a floor and ceiling, ventilation, water supply and drainage, electricity and lighting. This is then placed on a truck and taken to the building site. All the workers need to do on site is assemble the building by screwing in the bolts and finishing it with the painting and other decorating. This makes the time spent assembling the building on site, according to BROAD, just 7 per cent of the total construction hours. This means 93 per cent of the building is prefabricated in a factory compared to an industry norm of 40 per cent.

BROAD’s latest project and biggest challenge is to build Sky City One (http://skycityone.wordpress.com/) – the world’s tallest tower at 220 floors and 838 metres – in Changsha in just 90 days. A mix of residential, commercial and retail space, it will allow between 70,000 and 120,000 people to work and live. The start date could be November 2012 and the building completed by early 2013.

The finished building will be 10 metres taller than the current tallest tower, the Burj Khalifa (http://www.burjkhalifa.ae/) in Dubai.

Published: October 2012

Resources

1) 20th Century World Architecture: The Phaidon Atlas by The Phaidon Editors, Publisher: Phaidon. Focusing on 750 of the most outstanding works built between 1900 and 1999, the book features every imaginable building type. Website: http://uk.phaidon.com/store/ 

2) Megacities Foundation: The Megacities initiative originates from the awareness of the future role of cities as the dominant type of settlement for humanity. Cities will play this role not just as a matter of fact but out of necessity as the only way of housing the world’s increasing population. Website: http://megacities.nl/ 

3) Andrew Marr’s Megacities: A BBC series exploring the rise of the megacities and what life will be like for their residents. Website: http://www.bbc.co.uk/programmes/b011ql6k 

4) The Rise of Megacities Interactive: An online resource on the world’s rising megacities. Website: http://www.guardian.co.uk/global-development/interactive/2012/oct/04/rise-of-megacities-interactive

https://davidsouthconsulting.org/2022/10/26/african-trade-hub-in-china-brings-mutual-profits-2/

https://davidsouthconsulting.org/2021/12/20/better-by-design-in-china/

https://davidsouthconsulting.org/2022/10/20/china-consumer-market-asian-perspective-helps/

https://davidsouthconsulting.org/2020/04/25/china-looking-to-lead-on-robot-innovation/

https://davidsouthconsulting.org/2020/04/25/china-pushing-frontiers-of-medical-research/

https://davidsouthconsulting.org/2020/12/10/china-sets-sights-on-dominating-global-smartphone-market/

https://davidsouthconsulting.org/2022/10/04/chinas-booming-wine-market-can-boost-south/

https://davidsouthconsulting.org/2020/04/29/chinas-outsourced-airliner-development-model/

https://davidsouthconsulting.org/2021/01/25/creating-green-fashion-in-china/

https://davidsouthconsulting.org/2021/01/26/designed-in-china-to-rival-made-in-china/

https://davidsouthconsulting.org/2021/07/19/global-south-trade-boosted-with-increasing-china-africa-trade-in-2013/

https://davidsouthconsulting.org/2021/02/12/rammed-earth-houses-china-shows-how-to-improve-and-respect-traditional-homes/

https://davidsouthconsulting.org/2022/10/26/tackling-chinas-air-pollution-crisis-an-innovative-solution/

https://davidsouthconsulting.org/2020/04/17/virtual-supermarket-shopping-takes-off-in-china/

Development Challenges, South-South Solutions was launched as an e-newsletter in 2006 by UNDP’s South-South Cooperation Unit (now the United Nations Office for South-South Cooperation) based in New York, USA. It led on profiling the rise of the global South as an economic powerhouse and was one of the first regular publications to champion the global South’s innovators, entrepreneurs, and pioneers. It tracked the key trends that are now so profoundly reshaping how development is seen and done. This includes the rapid take-up of mobile phones and information technology in the global South (as profiled in the first issue of magazine Southern Innovator), the move to becoming a majority urban world, a growing global innovator culture, and the plethora of solutions being developed in the global South to tackle its problems and improve living conditions and boost human development. The success of the e-newsletter led to the launch of the magazine Southern Innovator. 

Creative Commons License

This work is licensed under a
Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 License.

ORCID iD: https://orcid.org/0000-0001-5311-1052.

© David South Consulting 2023

Categories
Archive Blogroll Development Challenges, South-South Solutions Newsletters

African Supercomputers to Power Next Phase of Development

By David SouthDevelopment Challenges, South-South Solutions

SOUTH-SOUTH CASE STUDY

Information technology developments in Africa have long lagged behind those in other parts of the world. But the transformation being brought about by the widespread adoption and use of mobile phones – each one a mini-computer – and the expansion of undersea fibre optic cable connections to Africa are creating the conditions for an exciting new phase of computing growth on the continent.

Despite the global economic crisis, Africa is on course to see annual consumer spending reach US $1.4 trillion by 2020, nearly double the US $860 billion in 2008 (McKinsey). On top of this, by 2050, a projected 63 per cent of Africa’s population will be urban dwellers. With Africa’s middle class the fastest-growing in the world – doubling in less than 20 years – matching computing power with this consuming urban population could unleash a treasure trove of opportunity for information technology entrepreneurs.

These developments are creating the conditions for game-changing computing in the next years. And this is encouraging the creation of a new supercomputer (http://en.wikipedia.org/wiki/Supercomputer) for Africa in Kenya that will double the total number of supercomputers in Africa. Hugely powerful compared to personal or commercial computers, supercomputers use cutting-edge technology to carry out high-speed calculations involving vast quantities of data.

Expanded supercomputing power brings numerous advantages to both economic and human development. It will radically alter what can be accomplished in Africa – allowing mass data processing to be done, highly complex and data dense applications to be run, and very large research projects to be conducted on the continent rather than overseas.

Increasing computing power in Africa will bring in its wake, it is hoped, a surge in economic and research opportunities.

It will help African researchers and scientists to undertake globally competitive projects, rather than seeing this work done overseas. It will also open up a vast range of possibilities for African entrepreneurs and businesses to do complex data processing, modelling and research and will enable them to become more sophisticated operations.

The new supercomputer, the iHub Cluster, is being built in the Kenyan capital by one of Africa’s pioneering information technology hubs – iHub Nairobi (http://ihub.co.ke/pages/home.php) – in partnership with Internet products and services company Google and microchip maker Intel Corporation.

Africa’s first supercomputer is located in South Africa and is ranked 497 in terms of computing power on the list of 500 supercomputers in the world (http://www.top500.org/).

It is located in the “Tsessebe cluster” in Cape Town’s Centre for High Performance Computing (http://www.chpc.ac.za/).

“With mobile devices coming in multiple cores, it is important for developers to be exposed to higher performance computing; we are hoping to debut at a higher level than ‘Tsessebe cluster’,” Jimmy Gitonga, the project team leader for the iHub cluster, told Computer World.

Africa suffers from poor supercomputer capacity and this has had a knock-on affect on everything to do with economic development. The iHub supercomputer hopes to help universities and colleges to gain competitive edge and be able to undertake more complex research in the fields of media, pharmaceuticals and biomedical engineering.

“In Africa, we need to be on top of the mobile scene, its our widest used device,” Gitonga told Computer World.

Some of the practical applications for the iHub supercomputer in East Africa and the Horn of Africa include improving weather forecasting and drought prediction, increasing the ability to give advance warning of droughts and famines in the region.

“Most of the United Nations agencies and international agencies operating in the region have extensive field research on how to tackle natural disasters in the region. Imagine if they had affordable space where they can meet with developers and test resource-hungry applications,” Gitonga said.

The iHub also wants to offer the services of the supercomputer to researchers and organizations who have had to go abroad to have their data processed.
The iHub supercomputer hopes to be used by mobile phone developers, gamers, universities and research institutions.

In the last two years, China had pushed the United States out of the number one spot for supercomputers. The Tianhe-1A located at the National Supercomputing Center in Tianjin (http://www.nscc-tj.gov.cn/en/), China, was the fastest computer in the world from October 2010 to June 2011.

For those looking to see how they can make the most of the growing supercomputer capability in Africa, examples from other countries offer a good idea. Supercomputers can be used for weather forecasting, climate research, oil and gas exploration, physical simulations like when testing aircraft, complex modelling for medical research, processing complex social data necessary for delivering effective social programmes or running modern health care systems.

Published: October 2012

Resources

1) A video on how to use a supercomputer. Website:http://www.youtube.com/watch?v=yvbSX–LOko

2) Southern Innovator Issue 1: Mobile Phones and Information Technology. Website:http://www.scribd.com/doc/95410448/Southern-Innovator-Magazine-Issue-1-Mobile-Phones-and-Information-Technology?in_collection=3643685

3) Read more about the iHub supercomputer. Website:http://www.ihub.co.ke/blog/2012/09/the-ihub-cluster/

4) More on High Performance Computing from Intel Corporation. Website:http://www.intel.com/content/www/us/en/high-performance-computing/server-reliability.html

https://davidsouthconsulting.org/2022/11/11/african-botanicals-to-be-used-to-boost-fight-against-parasites/

https://davidsouthconsulting.org/2022/11/11/african-breakthroughs-to-make-life-better/

https://davidsouthconsulting.org/2022/11/20/african-bus-to-tackle-african-roads/

https://davidsouthconsulting.org/2022/11/19/african-culture-as-big-business/

https://davidsouthconsulting.org/2022/11/17/african-ingenuity-attracting-interest/

https://davidsouthconsulting.org/2022/11/15/african-innovators-celebrated-in-prize/

https://davidsouthconsulting.org/2022/11/02/african-online-supermarket-set-to-boost-trade/

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Creative Commons License

This work is licensed under a
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ORCID iD: https://orcid.org/0000-0001-5311-1052.

© David South Consulting 2021

Categories
Archive Blogroll Development Challenges, South-South Solutions Newsletters Southern Innovator magazine

Geothermal Energy to Boost Global South’s Development

By David SouthDevelopment Challenges, South-South Solutions

SOUTH-SOUTH CASE STUDY

The geothermal heat produced by the earth’s molten core is a resource receiving more and more attention across the global South. Properly harnessed, geothermal energy (http://en.wikipedia.org/wiki/Geothermal_energy) offers a low-cost, non-polluting source of power and hot water that does not harm the environment or contribute to climate change (http://en.wikipedia.org/wiki/Climate_change).

The country that has made the most of this resource is the Scandinavian island nation of Iceland (http://www.visiticeland.com/), one of the world’s most volcanically active places.

The country was once one of the poorest in Europe, dependent on fishing as its main income source. But by 2007-2008, Iceland was ranked as having the highest level of human development in the world.

One of the contributors to this impressive improvement in human development is the tapping of the country’s geothermal energy reserves (http://www.geothermal.is/).

According to the Geothermal Energy Association (GEA), “Iceland is widely considered the success story of the geothermal community. The country of just over 300,000 people is now fully powered by renewable forms of energy, with 17 per cent of electricity and 87 per cent of heating needs provided by geothermal energy.”

Worldwide, geothermal energy supplies power to 24 countries, producing enough electricity to meet the needs of 60 million people (GEA).

The Philippines generates 23 per cent of its electricity from geothermal energy, and is the world’s second biggest producer behind the U.S.  Geothermal energy is also helping provide power in Indonesia, Guatemala, Costa Rica and Mexico.

Energy is critical to advances in human development. Electricity enables the introduction of lighting in homes, the use of washing machines and other modern appliances and of communications tools such as computers and televisions.

Geothermally heated water can be used to heat homes, provide hot water for bathing, heat swimming pools and bathing places and power electricity turbines. Industry can benefit from the low-cost energy, giving a boost to economic development.

And, crucially, it does not harm the natural environment like conventional energy sources such as coal, gas or nuclear power with its legacy of radioactive waste.

While not all countries are as well positioned as volcanically active Iceland or the Philippines, many can find a way to tap this natural resource.

Interest in this power source is increasing in Central and South America, whose energy consumption is forecast to increase by 72 per cent by 2035 (International Energy Outlook 2011).

South America currently relies heavily on hydro-electric power, but this is proving insufficient to meet the growing demand (http://www.esmap.org/esmap/node/1136). A World Bank study says “Latin American and Caribbean countries could boost region-wide electricity supply by 30 percent by 2030 by diversifying the energy mix to include hydropower, natural gas, and renewable energy” (ESMAP).

The report estimates the region has the potential to generate 300 terawatts of geothermal energy per year, roughly equivalent to the output of fifty 1,000-megawatt power plants or the emission of 210 million metric tons of carbon greenhouse gases (ARPA).

The areas best placed to tap this resource are located along the Pacific Rim from Mexico to Chile, and in parts of the Caribbean.

The 2012 Geothermal International Market Overview Report by the Geothermal Energy Association (GEA) (http://www.geo-energy.org/reports.aspx) found Argentina, Chile and Peru are moving ahead with plans.

In Argentina, Earth Heat Resources (http://www.earthheat.com.au/) is developing geothermal energy in the volcanic Copahue region in partnership with Xtrata Pachon SA (http://www.xstratacopper.com/EN/Operations/Pages/ElPachon.aspx).

Because of government support and legislation, there are now 83 geothermal exploration concessions under review in Chile, according to Renewable Energy World.com.

The Renewable Energy Center (http://www.ecpamericas.org/initiatives/?id=23) has been established in Chile and is the fruit of a partnership between the US Department of Energy (DOE) and the Chilean National Energy Commission. It is being used to gather data on global best practices and techniques to be adapted for use in Chile, and hopes to become a knowledge source for the region. A law is also in place to oblige power utilities with a capacity above 200 megawatts (MW) to have 10 per cent of their energy come from renewable sources.

Central America has already enthusiastically embraced geothermal resources, according to the report by the GEA.

Currently, El Salvador and Costa Rica derive 24 per cent (204 MW) and 12 per cent (163 MW) of their electricity production from geothermal energy. Nicaragua and Guatemala are also generating a portion of their electricity from geothermal energy.

And Central America has still more geothermal potential it can tap. Estimates place this between 3,000 megawatts and 13,000 megawatts at 50 identified geothermal sites.

Published: October 2012

Resources

1) Geothermal Basic from the Geothermal Energy Association. Website: http://www.geo-energy.org/currentUse.aspx

2) Geothermal information for children. Website: http://www.eia.gov/kids/energy.cfm?page=geothermal_home-basics

3) Geoexchange: A website connecting contractors, manufacturers , drilling contractors, ground loop installers, engineers, designers, distributors, architects, builders, utilities, training, financing, software and suppliers. Website: http://www.geoexchange.org/

4) Iceland Geothermal: Icelandic geothermal cluster mapping, geothermal energy consumption. Website: http://www.icelandgeothermal.is/index.php/e-samstarfsverkefni/data-collection.html

5) Iceland Geothermal Conference 2013: An international conference on geothermal will be held 5-8 March 2013 at Harpa Conference Centre in Reykjavik, Iceland and is hosted by the Iceland Geothermal initiative. Website:http://geothermalconference.is/

https://davidsouthconsulting.org/2021/02/01/ethiopia-and-djibouti-join-push-to-tap-geothermal-sources-for-green-energy/

https://davidsouthconsulting.org/2022/03/20/global-south-eco-cities-show-how-the-future-can-be/

https://davidsouthconsulting.org/2021/02/01/kenya-turns-to-geothermal-energy-for-electricity-and-growth/

https://davidsouthconsulting.org/2021/03/05/southern-innovator-issue-5/

https://davidsouthconsulting.org/2022/11/01/southern-innovator-magazine-2010-2014/

https://davidsouthconsulting.org/2021/09/07/10-years-ago/

https://davidsouthconsulting.org/2021/10/28/2012-development-challenges-south-south-solutions/

Creative Commons License

This work is licensed under a
Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 License.

ORCID iD: https://orcid.org/0000-0001-5311-1052.

© David South Consulting 2023