Showing posts sorted by relevance for query transportation. Sort by date Show all posts
Showing posts sorted by relevance for query transportation. Sort by date Show all posts

Saturday, July 29, 2017

Move by Rosabeth Moss Canter

The major elements of America’s transportation infrastructure and policy frameworks are six decades old (or older in the case rail). We haven’t even kept up with the maintenance since then. In addition to taking care of what we have, we need to adapt to the changes in technology, culture and the economy that have occurred. Our policies haven’t been keeping up.

In Move, Harvard business professor Rosabeth Moss Kanter explores how we got here and how we can move forward. We got here by adopting a defense-oriented policy that emphasized cars (especially interstate highways) and air travel, largely ignoring rail, public transit and intermodal development.

The path forward has several elements. First is a focus on mobility. Transportation infrastructure is a technical, bureaucratic realm of deep silos. Mobility changes the focus to moving people and products around communities and the nation in whatever ways make sense. Physical mobility and economic mobility are tied, and if we want to strengthen our economic leadership on the world stage, we need to break down internal policy barriers to advancing the way people move.

That means developing a national strategy. Of course, a rigid approach won’t work because we have varied nation. However, national priorities and frameworks can make room for regional priorities, adaption and leadership.

Money is always in issue. There are potentials in public-private partnership (PPP), and that can be arranged in many ways. America has a world-leading freight rail system that has very limited public investment. Airports are generally owned by governments, and attempts to privatize them have meet a cool response from possible investors. However, there are examples of successful PPPs in which there is something for everybody.

I already mentioned that technology has come a long way in the past several decades, especially in the realm of communication and data analysis. Some transportation industries, such as airlines, are taking advantage of the opportunities in new technology, while other are lagging. There are many ways our transportation system can be smarter, and we need sensible ways of incorporating technology in ways that are safe without losing out on the benefits through unnecessary delays.

This requires leadership and vision, especially in government. Politicians are often motivated by short-term wins, but mobility is a long-term investment. We need leaders who can see passed the next election and the boundaries of party.

Finally, citizen engagement is important. Plans can quickly fail if the people who are going to use, pay for and otherwise feel the ultimate effects of new transportation policies and infrastructure are not informed, involved and empowered to take action that works for them.

If you’re interested in this book, you may also be interested in


Kanter, Rosabeth Moss. Move: Putting America’s Infrastructure Back in the Lead. New York: W. W. Norton & Company, 2015.

Friday, April 17, 2009

What's New April 17, 2009

Action Packed (10)

Alternative Fuels and Energy Resources Articles and Links (Updated)

Asset Management Presentation Available

Bill Would Limit Greenhouse Gas Considerations in Endangered Species Decisions

Bridge Bill Could Require States to Address Corrosion


The busy googleganger: Keenan Patterson - Silicon Valley, CA Facebook
, Widgetbox › Keenan Patterson commented on the group 'Website Owners', April Fools Day Around The Web Keenan's Blog, New Theme » Keenan Patterson’s Blog, Keenan Patterson (keenanpatterson) on Twitter

Congress Considers Dam Safety Bills

Economic Stimulus Funds 2000 Transportation Projects (Infrastructure Watch, Apr. 14, 2009)

Infrastructure Watch can now be reached at www.infrastructurewatch.net

Infrastructure Watch has a New URL

Missouri Gets Economics Stimulus Fund for Clean Diesel Projects

More Federal Environment and Infrastructure Appointees Announced

Missouri Selects Transportation Projects for Economic Stimulus Funding

Missouri to Hold Public Meeting on Economic Stimulus for Weatherization Program

New Chief of Natural Resources Conservation Service Named

New Commissioner Appointed to Missouri Highways & Transportation Commission

Pharmaceuticals in Water (Updated)

Progress ReportProposed House Resolution Supports National Public Works Week

Transportation Headlines for Wednesday, March 18, 2009

What I Read

What's New March 27, 2009

www.keenanpatterson.net now redirects to Keenan’s Book Reviews

Wednesday, August 31, 2011

Canals and Their Architecture by Robert Harris

Harris, Robert. Canals and Their Architecture. New York: Frederick A. Praeger, 1969.

Water has always been an important part of human life. Drinking water is a necessity, but that is only the beginning of our uses of it. Water is also an element in agriculture, industry, transportation and commerce.

It is water’s role in transportation and commerce that Robert Harris focused on in Canals and Their Architecture. At times, artificial or modified waterways have been major means of transporting products in bulk.

Harris mentions canals from continental Europe and North America, especially the United States, but his book is mainly about the canals of Britain. This is an appropriate focus because the canal boom in Britain both fed and was fed by the Industrial Revolution that started there.

The boom began with the Duke of Bridgewater’s famous canal, construction of which began in 1760. The duke owned coalmines and wanted a cheaper way get coal to the mills and factories in Manchester. The canal was by no means an easy or inexpensive project, but it was greatly successful and the wealth put into it was regains many times over.

Bridgewater recognized the talents of millwright James Brindley, who went on to become the most prominent canal engineer of his day. Harris discussed the works of several British engineers who were successors of Brindley including Thomas Telford, John Rennie, and William Edwards.

As the title of the book suggests, it is organized mainly by the types of structures found on canals. In addition to the canal cut, Harris wrote about bridges and auqueducts, locks , tunnels, boats, buildings and unique ways of handling elevation changes on a canal route. Early canals followed the contours of the land to avoid the use of expensive and complex equipment and, where needed, were crossed by utilitarian bridges of wood or brick. As canals became straighter, and more lucrative, they added locks and other mechanisms for raising and lowering boats. The materials became more varied and complex, including stone and iron. Spectacular aqueducts carried canals over low lands. Tunnels were well-made features of canals early on because the technology for building them was readily adapted from mining.

The older canals are impressive in that so much was done with manpower and simple tools. As canals aided other industries, the improvements those industries spawned, especially in iron construction and railroads, returned to canals and the way they were made. The construction of modern canals is the work of enormous equipment.



Canals and Their Architecture includes many illustrations and photographs. These are very helpful for the laymen to see the types of structures discussed in the text, though even an engineer familiar with the terms will likely appreciate the images.

If you’re interested in this book, you may also be interested in
The Ancient Engineers by L. Sprague de Camp
Dreams of Iron and Steel by Deborah Cadbury
Water by Marq de Villiers

Saturday, September 29, 2018

Contents Under Pressure by Sylvia F. Munson


Regular readers of this blog may recall that about two and a half years ago I read several books about utility depreciation. This was part of my preparation for a new job at the time. I recently changed jobs, and that is starting a new round of reading.

A book that came highly recommended by my new supervisor is Contents Under Pressure by Sylvia F. Munson. In this book, Munson describes the business processes and operations of natural gas pipelines.

This book provides a very straightforward description of the process. It is complicated. Munson does not avoid the complexity, but neither does she get bogged down in trying to describe every situation that may arise.

Readers of this book can gain an understanding of how the business of a natural gas pipeline is set up. It shows how the industry and regulators have solved a lot of practical problems. How does a customer of a pipeline (shipper) tell the pipeline how much gas it wants to transport (nomination)? How does the pipeline figure out how to balance the gas available and wanted and how to move it (scheduling)? How does the pipeline reconcile what was schedules with what actually happens (allocation) because gas moving in a pipe is a complex thing? Munson describes these processes and the regulations and standards that govern them.

Munson does not try to be excessively comprehensive. Anyone who works doing this type of work for a pipeline or shipper will need to become familiar with a lot of rules, standards and company-specific procedures. However, Contents Under Pressure is a place to get started. It is also a book that shows the process from beginning to end so one can see how one step leads to the next.

The book has several short segments that are contributed by other authors. These contributors have experience in the energy industry and most are connected to the North American Energy Standards Board through positions of leadership or committee service.

If you’re interested in this book, you may also be interested in

Munson, Sylvia F. Contents Under Pressure: The Complete Handbook of Natural Gas Transportation. Houston, TX: Farris Ventures.

Saturday, November 11, 2017

The Power Makers by Maury Klein

Maury Klein’s book The Power Makers is a history of power from the Thomas Newcomen’s steam engine to the foundations of America’s electric grid.

Unlike many historians who look at the history of electric power, Klein gives a lot of attention to steam. We haven’t had steam engines directly powering industrial plants for decades, but steam turbines are still central to the production of most electricity in the United States. Even nuclear power plants use steam turbines to run their generators, they just use the heat from nuclear reactions rather than from the combustion of coal or natural gas to boil water and heat the steam to more than a thousand degrees.

Klein gives attention to many lesser known names in the history of power. He shows that Thomas Edison and George Westinghouse had rivals other than each other, such as Elihu Thomson. Nikola Tesla is well known as the genius who invented the AC motor, but other engineers helped develop his prototype into a commercial product, such as mathematically talented engineer Benjamin Lamme. Many talented inventors tried their hands at making electric lighting and power systems better. Only some of them had the vision, business sense, good partners and luck to turn their ideas into successful products. Few of them are widely known today.

Electrification had clear, direct effects in industry and transportation. Klein discusses how it’s influence reached into other sectors of the economy. Corporate management and finance changed to meet the needs of a growing new technology. For instance, Edison General Electric was able to take advantage of a new New Jersey law that allowed corporations to own businesses in other states. Electric companies grew, expanded and consolidated through numerous mergers and acquisitions. They had a demand for capital that nearly rivaled the railroads, another transformative technology that had shortly preceded electric power.

As the availability of electricity grew, certain industries were able to grow, too. Some chemical and metals manufacturing required abundant electric power to catalyze chemical reactions or generate the high temperatures of electric furnaces. Manufacturers flocked to Niagara after a lager hydroelectric power station started operation there in 1895.

Klein brings the many thread of his story of power together by reflections on three great fairs: the 1876 Centennial Exhibition in Philadelphia, the 1893 Columbian Exposition in Chicago and the 1939 New York World’s Fair. In the first, a giant steam engine that powered exhibits by means of belts and pulley was a significant attraction. By the second, electricity was on display, and the White City fairground was a model for testing AC power systems. By the 1939 fair, large power utilities of the type we would recognize today were becoming common. By then it was no big deal to flip a switch or pull a lever and get power so, unlike the previous to fairs, no dignitary undertook a show of doing it; the power was on from the start.

If you’re interested in this book, you may also be interested in


Klein, Maury. The Power Makers: Steam, Electricity, and the Men Who Invented Modern America. New York: Bloomsbury Press, 2008.

Friday, December 21, 2012

STEM Books

I’ve reviewed 39 STEM-related books (and counting).  STEM is an acronym for science, technology, engineering, and mathematics.  As you may have seen in the news, there is a push to improve STEM education, interest students in STEM fields, and grow the number of workers in these fields.  The idea is that these will be the skills needed by workers of the future.  If you’re a STEM educator or a student considering a career in STEM fields, you might like to take a look at some of these books.

I’ll confess that I’m not an educator, but I think most of these books will be accessible to high school and college students, and a few to middle school students.  The list is also a reflection of my career and interests in engineering, public health, policy, and history.  Even with these biases, I think it is a good list for someone looking for STEM-related books.


I was fascinated by robots as a kid.  I enjoyed reading Isaac Asimov’s robot stories.  I longed for the Omnibot 2000 in the Sears Wishbook.

Robots have come a long way.  In How to Build an Android, David F. Dufty describes the short strange life of a very complex robot made to look and talk like science fiction author Philip K. Dick.  The robot had a very sophisticated and lifelike head and complex artificial intelligence.  As with most complex things, it was the work of many people who had to solve a lot of problems.

If you’re interested in robotics, this is an interesting nontechnical book.  In addition, you’ll get introduced to some freaky sci-fi.  You may even get as (somewhat) legitimate reason to use the word “Dickhead” (capitalized, it refers to a fan of PKD, so don’t go using it on anyone).



The Interstate highway system in the United States is one of the most enormous structures built.  Some of the prospective STEM students who read this may actually be younger than the Intestate system, though in some sense it is never complete because it needs constant repair and maintenance.  The Interstates were completed in the 1990s, but the Federal-Aid Highways go back to 1916.

Earl Swift wrote an accessible history of the Interstates in The Big Roads.  If you interested in automobiles or transportation, it’s a good read.



Deborah Cadbury describes seven wonders of engineering in Dreams of Iron and Steel.  It covers almost a century of history, but many of the events are concentrated in the Victorian Era.  That was a time of great technological innovation.

Though the book is history, many of the structures still stand.  Railways, the Brooklyn Bridge, the Suez and Panama Canals, and Hoover Dam stand testament to an age of big engineering.



Though the memory of Professor Wragg’s sneer prompts me to not make this confession, part of my interest in science and technology came from comic booksIron Man was cool.  Spider-Man’s web shooters were very cool.  Superhero comics are full of fantasy, admittedly, but the strange, unrealistic science and technology they depict have inspired many to study STEM in reality.

Physicist John Kakalios uses examples from comic books to explore real physics in The Physics of Supeheroes.  Sometimes comics get there science right.  Even when they get it wrong, it can be instructive.  If you know what people are talking about when they refer to the “New 52,” you may find this book to be a great introduction to physics.



Here is another confession: I’m not especially interested in math.  I endured a lot of math classes to study engineering.  Reading David Acheson’s 1089 and All That did not require such endurance.  For one reason, it is a short book.  For another, Acheson doesn’t expect his readers to be mathematicians; it is enough to follow the outline of the math he discusses.

I recommend this book because so many people have a fear of math.  1089 can be followed by many high school students and older folks with math phobias.  Just take a deep breath, relax, and follow along as well as you can.  You’ll see that math can be interesting, useful, and even beautiful in a way.



Judith St. George’s The Brooklyn Bridge is a short history of and iconic bridge.  Written for the bridge’s 100th anniversary, it is also the story of the engineers who sacrificed life and health to see it completed: John Roebling and his son Washington.  John Roebling was a German immigrant who built many suspension bridges and owed a wire-making business.  He gave his son and extraordinary education in bridge engineering for the time, and before beginning work on the Brooklyn Bridge he served as an officer in the Union Army during the Civil War.

Why should a cutting-edge STEM student read about a bridge that is almost 130 years old?  It’s because we still use and rely on very successful, centuries old technologies.  Improving and rebuilding our infrastructure will be an important part of our economy.  As recently as 2010, New York City and the federal government committed $500 million to repair and repaint the Brooklyn Bridge.



STEM lumps together science, technology, engineering, and mathematics.  Is there a difference between science and engineering?  Is it important?

Henry Petroski, a professor of civil engineering and history and author of The Essential Engineer, believes there is an important difference.  At heart, science is about increasing knowledge.  Engineering is about invention.  Of course, new knowledge makes new invention possible.  Just as often, though, engineering runs ahead of science.  Sometimes science didn’t advance until someone invented the instruments to conduct new observations and experiments.  The invention of the microscope made possible the science of microbiologySteam engines were built and greatly improved before we had a modern scientific understanding of thermodynamics.  In fact, thermodynamics was to a large extent born out of desire to understand steam engines. In this sense, it is an engineering science (study of manmade things) as much as a natural science (study of natural things) or branch of physics.

Petroski’s focus in the book is the importance of engineering to policymaking, where it is often overshadowed by science.  Policy, science, and engineering play off of each other a lot.  Most of my career as an engineer has been related to government, policy, and regulatory compliance.



The Ghost Map by science writer Steven Johnson is the story of the birth of epidemiology.  Epidemiology is a medical science that uses statistics to help us understand how diseases operate in a population.  Using various statistical and geographic tools, long before we had computers and GIS, physician John Snow demonstrated that cholera, once a recurring plague that wiped out hundreds of thousands of people in some outbreaks, was a waterborne disease.  This understanding, initially met with much skepticism, allowed officials to intervene to prevent the spread of the disease.  For those who say of their math classes, “I’ll never us this,” here is a case where math (and science and policy) were used to make a great difference.



It is not much publicized today that the Lewis and Clark expedition of 1804 to 1806 had a partly scientific mission.  Captains Lewis and Clark were charges with bringing back samples of the flora, fauna, and culture of the western territories.  It was also hoped that they would find a water passage to the Pacific Ocean.  In Undaunted Courage, Stephen Ambrose writes about the scientific mission as well as the policy, diplomacy, and commercial hopes the expedition carried.

Of course, what attracts most people to the Lewis and Clark expedition is that it was a great adventure.  There is a place in STEM fields for thoughtful adventurers and explorers. 



A list like this deserves something strange, creepy, and more fun than you care to admit.  Right now, thousands of very young future STEM workers are catching bugs and snakes, breaking their toys to see what is inside, or staring into space with a weird expression of vacancy and concentration.

Jan Bondeson’s Buried Alive is not a morbid book.  It is sometimes humorous, especially in consideration of topic.  From a STEM point of view, Bondeson shows how knowledge accumulates over time.  The fears and activities of our forefathers may seem strange to us, but they sometimes made sense in light of what they knew.  Buried Alive doesn’t simply play off our fascination with the grotesque and death, though the book might not have been written if we lacked that fascination, I think it reminds us to approach our ancestors with a touch of grace and humility.  Maybe our progeny will show us the same courtesy.


If you’re looking for something for a younger student, check out this post→ from Joanne Loves Science or these recommendations→ from STEM Friday.  By the way, I also write about engineering, infrastructure and the environment at Infrastructure Watch.

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