Chapter II: Part 2
Almost all ships now have more comfortable bunkrooms, with only two or four men in each one. Instead of living on old-fashioned salt meat and salt fish and crackers called hardtack, seamen have almost the same things that they eat ashore. In the old days, seamen often got a disease called scurvy because they had no fresh food. Then the British discovered that lime juice prevented scurvy, and every one of their ships carried barrels of it. That’s why American seamen still call British seamen limeys.
There are laws and regulations now that provide for better food and working hours and pay on ships. Seamen in their unions have worked hard to get the laws and rules that have made life better for them.
FISHING VESSELS
Fishermen have always been among the most daring and hardworking men of the sea. For thousands of years they have experimented and invented, always in search of the boats and ships and nets that will do the best job for them. New England fishermen used to be great whittlers of ship models. They carved out their models partly for fun, partly to give shipbuilders new ideas for improving their designs.
One of the great fishing towns is Gloucester, Massachusetts, and there’s a story about it that goes this way: Almost two hundred and fifty years ago, a ship builder in Gloucester launched a vessel that everyone admired. On the day when she first slid into the water, a big crowd gathered to watch. She was graceful and light, and she fairly skimmed along--the way a flat stone does when a boy skips it over the water. In those days in New England, some people called skipping “scooning.”
All at once, someone in the crowd called out, “See how she scoons!” The builder called back, “A scooner let her be!” And according to the story, the name schooner--a new spelling--has stuck to this very day.
A modern schooner still has sails, but not so many as the early ones. An engine now gives her power, so that she can make fast time to and from the fishing grounds, and her sails are used mostly to steady her in the sea while the men work. The engine also helps with the heavy work of handling the nets.
Each kind of fish has its own habits, and the fishermen know them well. Some fish, such as cod and flounder, live down near the floor of the sea. They are caught in drag nets which are towed at the right speed behind the vessel. Men haul the net in, dump the catch into ice-cooled bins in the hold, then drag the net again.
Mackerel behave differently. They swim along in huge groups called schools near the surface of the water. The lookout man on the mast keeps his eye on the sea till he can yell, “School O!” Quickly the men lower a boat that sets a huge net called a purse-seine. At first the net is really a fence. Hundreds of floating corks at the top, and lead weights at the bottom, hold it in place, while the seine-boat draws it into a circle around the fish. Then, at a signal, a motor in the seine-boat pulls on a sort of drawstring in the bottom of the net, closing it and turning it into a kind of giant sack. The seine is “pursed” with the fish trapped inside.
This is what happens on a lucky day. But mackerel can be very irritating fish. Sometimes the whole school will suddenly dive and race away to safety, just the moment before the trap closes. Fishermen must have patience as well as skill.
Before engines went to sea, the men had to purse the seine by hand. Since their schooner carried no ice, they cleaned the fish, salted them and packed them into barrels as fast as possible. Everybody, including the skipper, worked at top speed. Even the cook lent a hand, and he was often a boy of ten who hung his pots in an open fireplace or smoked some of the mackerel in the chimney.
Fleets of fishing vessels go out together when the season is right. There’s a race for the fishing grounds, and then a race back to deliver the catch to market. In fishing towns all around the seacoasts, small forests of masts fill the harbors when the fleets are in.
Among the schooners you can also see sturdily-built trawlers, which are usually driven by steam-power. Newest of all are the vessels that work like quick-freeze factories. Machines on board clean the fish, cut them up, package them and freeze them right where they are caught. Or the fishermen may quick-freeze the whole fish, then bring them back to be thawed and sent to market.
People in fishing towns are proud of their fleets, and there’s a warm welcome for the vessel that comes in first with a big load.
THE UNITED STATES
The day a ship returns safely has always been important to seafaring men. It’s especially important if she has made a new record of some kind. All the seamen in New York harbor were excited when the passenger liner United States came in after crossing the Atlantic faster than any other liner had ever done. And they all showed their respect in the traditional way.
On tugs and freighters, on tankers, on other liners, skippers passed down the word, “Break out the bunting!” This meant take out all the brightly colored signal flags and hang them on the stays. (On page 91 you can find out what the signal flags are.) The United States had her bunting out, too. When she appeared in the harbor, every vessel there greeted her with tremendous whistle blasts. Fireboats filled the air with high curving streams of water from all their nozzles.
Aboard the United States, the members of the crew were more excited than any one else in the harbor, but their work went right on through all the happy hullaballoo. The AB’s got ready to tie their huge ship up. Others, from the black gang to the steward’s department, were busy with last-minute jobs. Working together as one huge team, they had made the world’s fastest crossing. On the trip from New York to England, the United States averaged 35.9 knots. (That means she travelled nearly 42 land miles an hour. Seamen never say “knots per hour.” They just say knots.) Before that the passenger liner Queen Mary held the record. It took the United States 10 hours and 2 minutes less than the Queen Mary to cross the ocean.
The United States is really more than a ship. With a thousand people in her crew and two thousand passengers, she is a floating town. Besides the seamen who do their regular seamen’s work, there are crew members with special jobs. In the ship’s shopping centers, storekeepers sell souvenirs, and all kinds of things that passengers want and need. Movie operators work in her two theaters. A children’s nurse takes care of children in the nursery. A veterinarian cares for pets on board. Guards watch over the swimming pool. A doctor and a registered nurse are ready in the ship’s hospital to help anyone who is sick. Air conditioning experts see that every room in the ship is kept at the right temperature. Everything from the engine room to the dog kennels is air-conditioned.
Curtains, chair covers and rugs on the ship are made of material that doesn’t burn. There is no wood at all in the ship except in the butchers’ chopping blocks and in the pianos. But suppose a passenger drops a match into a wastebasket in his stateroom. There’s an automatic smoke-smelling gadget that sends a signal to a room on the bridge. The officer there turns on the fire alarm, then pulls a lever which closes that particular stateroom door and blocks the fire off.
There are lifeboats for all three thousand people in case of emergency. These lifeboats are driven by propellers--but they have no engines. People supply the power for the propeller. They push handles back and forth. Even on this most modern ship in the world, there are boats that move in the oldest way--by muscle power.
The four propellers of the liner herself are each as tall as a two-storey house. They are turned by enormous steam turbine engines. Smoke from the boilers goes out through unusual-looking stacks. Inside each one are giant filters that take away most of the soot. Besides, there are wings called vanes at the top of the stacks to help keep the smoke from swirling down onto the deck.
Although the United States is about five city blocks long and twelve decks high, she looks as light and graceful in her way as the old clipper ships. The clippers were American sailing vessels that got their names because they went at a very fast clip. A hundred years ago they held speed records all over the world. No wonder the captain of the United States proudly said that his seamen were carrying on the clipper ship tradition.
Many people think the clippers were the most beautiful ships ever built. Certainly they were the first sailing ships to be planned by men who used scientific ideas in their work. At that time, science was bringing modern machinery of all kinds to the world. Inventors had already put steam engines into ships, but they had not yet studied what was the best shape for a speedy vessel. And speed was becoming very important as more people and cargoes crossed the oceans.
No one knew whether steamships could go fast. But some shipbuilders believed that sailing ships could go faster than ever before. They built the record-breaking clippers. Soon the magnificent vessels began to have races all the way from China to New York and London. It was many years before steamships caught up with the clippers, but in the end they proved to be faster. More important, they could keep going whether there was any wind or not.
OTHER PASSENGER SHIPS
It’s the job of a passenger ship to carry people--and give them a good time on their journey. But passenger ships also carry cargo. That’s true of big ones and little ones, such as the City of Norfolk which belongs to the Old Bay Line, the oldest American shipping company.
The City of Norfolk goes on short trips back and forth between Norfolk and Baltimore on Chesapeake Bay. She takes on cargo during the day and sails at night. Although she’s an old ship, she has radar to help guide her through the busy waters of the Bay. All around are fishing craft, ferries, ocean-going vessels--endless traffic through which the officers must steer a safe course. In the dark wheelhouse, soft small lights hold the key to safety--the sea-green light by which the man at the wheel sees the markings on the compass, the yellow pips and the revolving blue line on the radarscope.
In the hold below are automobiles, piles of second-hand truck tires, crates holding all kinds of things, copper sheets by the ton which have come by train from Utah, and will end up in some eastern factory.
Passengers stroll all over the decks. Some are travelling on business; some are just sailing for fun. A group of school boys and girls on their class trip dance to phonograph records. Their staterooms are air-conditioned, but the inside of the ship looks almost as it did in their grandmothers’ day, with balconies and big living-rooms called saloons.
The City of Norfolk--and many other ships like her on bays and rivers and lakes--is really a sort of combination ferry boat and hotel. Most ferries, of course, have much shorter runs, and they are built to fit the needs of their own special work.
Many ferries look exactly the same fore and aft. They have propellers, rudders and wheelhouses at both ends, and there’s a good reason why. A double-ended ferry makes quick trips back and forth. She can save time if she doesn’t have to turn around in the water when she goes in and out of her dock which is called a slip.
The big ferries carry automobiles, trucks, and as many as three thousand people at a time. Some of them, on long runs, have up-to-date snack bars so passengers can get quick meals. For safety, they carry lifeboats and life jackets, just as ocean-going vessels do. But a ferry could never go to sea. She is built very broad, with very little of her under the water and a great deal above. Big ocean waves would tip her over.
Men have used ferries from the earliest times. Hundreds and even thousands of years ago people and animals were ferried across rivers on rafts. Even today there are raft-like ferries which men guide across our rivers by steel cables.
Train ferries take loaded freight cars across harbors where there are no railroad bridges. In some harbors, the cars travel on flat-bottomed barges which tugboats shove along.
Long ago, barges were quite different. They were elegant vessels in which kings and important people travelled on rivers. And fancy barges, towed along behind paddle steamboats, once carried passengers up and down the Hudson River, too. At that time the steam boilers on paddleboats often exploded. Many crewmen and passengers were killed. So, in order to attract customers, some steamboats towed “safety barges” behind.
Nowadays barges are plain cargo vessels that do heavy work. Most of them have no power of their own. They must be towed or pushed. The seaman who handles a barge is called a barge captain. He must be an AB to get the job, and on some barges he lives in a house at the stern. If he has a family, they may make their home there the year round.
Before the days of railroads, a whole system of canals joined many of the important American cities. Along these waterways horses or mules pulled barge-loads of freight. Many a canal boatman started before he was twelve years old, driving a mule on long trips all by himself. There are still some canals in use, and powerdriven barges carry cargoes on them.
FIREBOATS AND OTHER HELPERS
The old-fashioned engines that used to explode are gone now. So are the candles and whale-oil lamps that lighted ships. All these caused fires in wooden vessels. But even today, when most ships are made of steel, with fireproofing equipment, there’s work for fireboats to do.
The seamen aboard fireboats belong to the Fire Department. They do deck work or engine work, and they also handle the pumps and nozzles that shoot enormous streams of water. The pumps suck in water through holes in the side of the boat and force it through hoses and nozzles that can be aimed like big guns.
Sometimes fireboats go a little way outside their harbor to help a burning ship. On the way, the fireboat captain guides his vessel between buoys that mark the channels where ships can go. All harbors have these channels, which are really streets for water traffic. The buoys are floating signals anchored to the bottom. On a clear day, seamen can tell by looking at the shape and color what each buoy means. In a fog or at night, they listen for the bells or whistles on some special buoys and watch for the flashing lights on others.
Rivers have channels marked with buoys, too, and men who belong to the United States Coast Guard Service have the job of placing and repairing them.
The Coast Guard also cares for lighthouses at dangerous points along the shore. Powerful lights and foghorns in the lighthouses warn ships away from rocks or shallow water and also help them find out exactly where they are. In some places, lightships anchored in the sea do this same job. A lightship is really a giant buoy. Seamen live aboard her to care for the safety equipment. They get their food and mail from vessels called tenders. (Any vessel that supplies another is a tender.)
Coast Guardsmen help seamen in other ways, too. Suppose a ship is sinking. Fast, tough little Coast Guard cutters race off to the rescue the minute the dreaded SOS signal comes over their radio. (SOS is the code
signal for “help!” and every radio man understands it, no matter what language he speaks.)
Using a special gun, men on the cutter shoot a lifeline across to the sinking ship, and a breeches buoy is rigged on it. This is a canvas seat, made like a pair of short pants. The seat hangs from a wheel called a block which runs along the line. One by one the seamen sit in the seat and are pulled along to safety.
CHARTS FOR SAFETY
In the days when the United States was still a very new country, many people in Europe longed for the freedom they were sure they could find here. One of them was Ferdinand Hassler, a young Swiss mathematician. Hassler was no seaman when he set out for the new world in a sailing ship. But luckily he did know a great deal about the stars. After the captain of his vessel collapsed in a terrific storm, Hassler was able to look at the stars and tell the seamen how to steer the ship.
The things Hassler knew about mathematics made it easy for him to navigate, but real troubles began when the ship came into Delaware Bay. The map of the bay was old and very inaccurate. Hassler could not tell whether the ship was in shallow water or deep water, except by watching the leadline day and night.
This last part of his adventure made young Hassler very angry because it was so unscientific. He realized that the safety of all ships depended on accurate maps, called charts, of the coasts and harbors. Soon after he landed he began to make plans for a survey of the whole American coast. He talked to President Jefferson who agreed with him, and Congress finally gave him the job. At last his good charts began to help save lives.
Today the United States Coast and Geodetic Survey carries on the work Hassler started. Using many ships and small boats with marvellous equipment, the scientific men of the sea go about their important and often dangerous work. It’s their job to map the earth that lies under the oceans, rivers and harbors. Here are some of the things they do along the Alaskan coast.
A survey ship moves through the water sending sound waves to the bottom of the ocean. A delicate machine records the echoes made when the sound waves bounce back from the deep valleys and the high mountain tops that lie beneath the surface. Scientists know how fast sound travels in water, so they can tell exactly how deep it is. But some of the peaks are narrow and sharp. Even the wonderful machines miss them. And so these very modern vessels must do something old-fashioned and simple. Two of them travel side by side with a long wire cable hanging between them. If the cable catches on a rock, the men know they have snagged a sunken mountain top.
Often, men on shore help the men on ships with their surveying. The instruments they use are so delicate that the warmth of direct sunlight would cause inaccuracies. One slight error might mean a shipwreck. So, even in Alaska, a surveyor works under an umbrella.
You might think that all the charts and maps should have been finished in the long years since President Jefferson’s time. But the work of making charts can never be finished. The coastline is always changing. Currents and tides, storms and floods shift millions of tons of sand near the coast. Earthquakes and volcanoes raise land or lower it. A place that was safe for ships yesterday may be dangerous today.
In Alaska, glaciers that run into the sea grow bigger or melt back. Sometimes these enormous rivers of ice push themselves out under the water. The little survey vessels mapping the ocean’s bottom have to sail over the sunken glaciers. There is always danger that, at any moment, a great mountain of fresh-water ice may break loose and rush toward the surface. When this happens, any vessel nearby is almost certain to be destroyed.
Seafaring men need to know about the tides when they enter or leave harbors. Tides are very different at different places along our enormous coastline, and they change from one day to another. The Coast and Geodetic Survey has worked out a wonderful way of telling ships about tides in advance. Every day, records pour into Washington from all along the seacoast. The figures they give are put into a fantastic “thinking machine,” together with other figures about the sun and moon which cause the tides. Electricity is turned on, and in no time the machine tells what tides will be like with ordinary weather tomorrow or even next month.
Men have come a long way since they first learned to float on a blown-up animal skin or a bundle of reeds. For thousands of years, they have been inventing new and better ways to travel across water. But the oceans have an enormous power and force. Science and seamen still have much to learn about the power which they must fight and make work for them--and which will always be exciting.
WHAT SEAMEN SAY
Here are some words that you haven’t met in the rest of the book. They are all part of seagoing language.
AHOY--a call given by men on one ship to greet men on another.
AVAST--an officer shouts “avast” if he wants a seaman to stop
hauling on a line.
BELAY--to tie or make fast. A belaying pin is a short rod which can
be stuck into a holder so that a line can be twisted around it.
There were many belaying pins on old sailing vessels, and they made
handy weapons at times.
DEEP SIX--when a sailor throws something overboard, he “gives it
the deep six.” The expression comes from the days when sailors
measured the depth of water with a leadline. The “deep six” was a
place on the line which showed the water was six fathoms (36 feet)
deep.
FOUL--Seamen use this word to describe anything that has gone wrong
or got mixed up. A snarled line is foul. A ship’s hull covered with
barnacles is foul. Bad weather is foul.
NORWEGIAN STEAM--seamen say they use “Norwegian steam” when they do
heavy work without the help of machinery.
SCUTTLE BUTT--the drinking fountain on a ship. Because seamen often
gather there to talk, the rumors and gossip that they pass on are
also called “scuttle butt.”
SEA LAWYER--a seaman who likes to argue about rules and
regulations.
SLOP CHEST--a room where seamen can buy clothes. Every ship is
required to have one.
SLUMGULLION--a seaman’s word for stew that he doesn’t like.
TRAMP--a freighter that ties up anywhere and has no regular
schedule.
WINDJAMMER--a sailing vessel.
Code flags make it possible for ships to talk to each other at sea. Each flag stands for a number or for a letter in the alphabet. The flags are used in combinations--not to spell out individual words, but to send a whole message. For instance, the two flags N and C flown together mean, “In distress. Need prompt aid.” No matter what language a seaman speaks he knows what this signal means. Some of the other messages he can read are IQ--“Do not pass ahead of me”; RW--“Where are you from?”; AG--“Shall not abandon my vessel.”
INDEX
AB, 12, 26
Able Bodied Seaman, 12
accommodation ladder, 26
amidships, 25
anchor, 34-35
athwartships, 25
backstay, 28
banana boats, 43-46
basket boat, 40
barge, 60, 80, 81
barnacles, 50
batten down the hatches, 27
beam, 28
bells, 14
bilge, 28
bireme, 33
booms, 27
bosun, 24, 29
bosun’s chair, 29, 31
bow, 12
Bowditch, Nathaniel, 18, 19
brightwork, 31
bulkhead, 24
buoy, 82
canal, 62, 80, 81
capstan, 22
captain, 29
chantey, 21, 22
charts, 84-87
Chips, 24, 25, 34
Clermont, 58
clipper, 75, 76
City of Norfolk, 76, 77
Coast Guard, 82, 83
companionway, 24
compass, 17, 18
crow’s nest, 13
davit, 46
depth recorder, 57
dhow, 33
dock, 27
draft, 28
drydock, 50-51
dugout, 32
Egypt, 31-32
engineer, 30
engine room telegraph, 19
fathom, 58
fender, 54
ferry boats, 78, 79
fireboat, 81
firemen, 30
fishing vessels, 66-70
forecastle, 10
gantries, 44
galley, 12
galleys, 33
Great Lakes Ships, 60-62
handy billy, 25
Hassler, Ferdinand, 84-86
hatch, 27
hawse pipe, 34
heaving line, 53
helm, 26
helmsman, 26
ice breaker, 62
International Code flags, 91
Jacob’s ladder, 26
junk, 39
jury rudder, 37
keelboat, 58
king posts, 27
knots, 29
leadline, 57, 58, 85
leeward, 25
lifeboat, 44-46, 73, 74
lifeline, 38
life raft, 41
lighter, 40
lights, 15
limey, 65
locks, 62
Mark Twain, 58
marlinspike, 29
mate, 14
merchant ship types, 64-65
messmen, 31
mizzenmast, 24, 29
monkey fist, 53, 54
navigating, 19
oiler, 30
oil tanker, 37-41
Old Bay Line, 76, 77
ore carriers, 60-62
outrigger, 39
paddleboats, 58, 80
papyrus reed canoe, 32
passenger ships, 70-79
pea coat, 10
pier, 27
pilot, 26, 57
pilot house, 26
poop deck, 28
port, 15
purse seine, 68
Queen Mary, 72
quartermaster, 26
radar, 56, 57, 77
radio man, 31
raft, 40
SOS, 82, 83
sailor, 12
sailor’s palm, 21
Samson posts, 27
Santa Maria, 33
schooner, 66, 67
scrimshaw, 49
sea anchor, 45
Seatrain, 42
sheepshank, 29
shroud, 28
sparks, 31
standing watch, 10-19
starboard, 15
stay, 28
steward, 31
storm oil, 45, 46
survey ships, 86-87
taffrail log, 28
tanker, 37-41
tides, 88
towboat, 54-59
trawler, 69
trireme, 33
tugs, 52-59
United States, 70-74
United States Coast Guard, 82, 83
United States Coast Guard and Geodetic Survey, 86-87
Viking ships, 39
watch, 12
whaler, 48-49
wharf, 27
wheel, 17
wheelhouse, 13-14, 17, 26
wildcat, 35
windlass, 35
windward, 25
The saltiest thanks of the author and artist go to the following
who, in one way or another, have helped make this book possible:
Margaret Gossett; R. L. Jones of the Old Bay Line; Inez M. DeVille
of the Baltimore and Ohio Railroad; Penelope Spurr of the United
Fruit Company; Arthur L. Pleasants, Captain, USN; Samuel S. Yeaton,
Colonel, USN, Ret.; the Cleveland, Ohio, Chamber of Commerce: the
Lake Carriers Association, the Mariners’ Museum, Newport News,
Virginia; the National Maritime Union, CIO; the Norfolk Chamber of
Commerce; the Pennsylvania Railroad; the State of Washington;
Department of Fisheries; the San Francisco Chamber of Commerce;
Seatrain Lines, Inc.; the Standard Oil Company (New Jersey); the
State of New York, Department of Public Works; the United States
Coast and Geodetic Survey; the United States Coast Guard; the
United States Lines; and finally to a modest AB and to many people
who have written careful, enthusiastic books about ships and
seafaring men.
* * * * *
$1.50
SHIPS AT WORK
_By_ Mary Elting
_Illustrated by_ Manning deV. Lee
Here is the colorful, exciting life of the sea--the men, the ships they sail, the work they do, the cargoes they carry to the far corners of the world--all vividly presented.
Freighters, tankers, ferries, tugs, and the many unusual ships that do highly specialized jobs are shown in action. The work, the sailor’s language, the kind of life a seaman lives, the use of recent inventions (such as radar) all contribute to this fascinating picture of SHIPS AT WORK. The newest and proudest of ocean liners, the “United States,” is pictured and described as well as the humblest dugouts and sailing vessels of ancient times.
The illustrator, famous for his marine paintings, has combined beauty with clear, sharp detail. His many full-color pictures in this book give added interest to your seafaring knowledge.
You will find this book an exciting companion to TRAINS AT WORK, TRUCKS AT WORK, MACHINES AT WORK.
Garden City Books
Garden City, New York
* * * * *
MACHINES AT WORK
_By_ Mary Elting
_Illustrated by_ Laszlo Roth
There are machines to dig, to hammer, to push--to do every kind of heavy job and to make work thousands of times easier and faster.
On farms, in the mines, in cities where huge buildings are built and out in the woods where powerdriven saws slice through great trees, many kinds of special machines do many kinds of remarkable jobs.
Can you imagine a giant shovel so huge that it took 45 freight cars to haul it from factory to mine? Do you know that there is a machine that plucks the feathers off chickens, ones that pick corn, dig potatoes? Inventors of machines work on everything--they even had fun making a mechanical mouse that can sniff about until it finds a piece of “cheese” and then “remember” and run straight to it next time!
As marvelous and complicated as all these machines are, the author points out that no inventions will ever be as wonderful as the men who invented them--and the men who make them work.
Garden City Books
Garden City, New York
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Ships at WorkChapter II: Part 2
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