The Naval Constructor: A Vade Mecum of Ship Design for Students, Naval Architects, Shipbuilders and Owners, Marine Superintendents, Engineers and DraughtsmenD. Van Nostrand Company; [etc., etc. ], 1914 - 819ÆäÀÌÁö |
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xi ÆäÀÌÁö
... base . Centre of gravity of ship and engines . Moulded depth to upper deck . Displacement in tons of salt water ( gross ) . Displacement in cubic feet ( volume ) . Displacement in tons at load draught . Displacement in tons at light ...
... base . Centre of gravity of ship and engines . Moulded depth to upper deck . Displacement in tons of salt water ( gross ) . Displacement in cubic feet ( volume ) . Displacement in tons at load draught . Displacement in tons at light ...
xii ÆäÀÌÁö
... base . Stability lever . Height of transverse metacentre above centre of gravity . Height of transverse metacentre above centre of buoy ancy . Longitudinal metacentre above base . Centre of gravity below L.W.L. Centre of gravity above ...
... base . Stability lever . Height of transverse metacentre above centre of gravity . Height of transverse metacentre above centre of buoy ancy . Longitudinal metacentre above base . Centre of gravity below L.W.L. Centre of gravity above ...
1 ÆäÀÌÁö
... base into a suitable even number of equal parts , ecting perpendicular ordinates from the base to the curve , and aft measuring off the lengths of these ordinates , to the sum of the end ones , add four times the odd 1 1 ...
... base into a suitable even number of equal parts , ecting perpendicular ordinates from the base to the curve , and aft measuring off the lengths of these ordinates , to the sum of the end ones , add four times the odd 1 1 ...
3 ÆäÀÌÁö
... base and between same parallels are equal . Draw through G and H two lines parallel to base as GM and DL , then area DCHG area DLMG = 2 x ¡¿ DG = 2xX FK yo + 1 x ( 1 1 - 40 ¡¾ 12 ) 2xY1 Area DFC of above = -- yo + y2 4 Multipliers for ...
... base and between same parallels are equal . Draw through G and H two lines parallel to base as GM and DL , then area DCHG area DLMG = 2 x ¡¿ DG = 2xX FK yo + 1 x ( 1 1 - 40 ¡¾ 12 ) 2xY1 Area DFC of above = -- yo + y2 4 Multipliers for ...
4 ÆäÀÌÁö
... BASE FIG . 3 . Let the Figs . 3 and 4 represent the immersed half longitudinal body of a vessel 100 feet long by 12 feet broad submerged to 5 feet draught as represented by L. W.L. It is required to calculate the volume of water ...
... BASE FIG . 3 . Let the Figs . 3 and 4 represent the immersed half longitudinal body of a vessel 100 feet long by 12 feet broad submerged to 5 feet draught as represented by L. W.L. It is required to calculate the volume of water ...
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anchor angle Awning Deck beam bending bending moment block block coefficient bolts bridge-house bulkheads calculated carry cent centre of gravity CHAIN COEFFICIENT OF FINENESS coko correction for length correction for sheer cubic feet curve davits Deck at Side deck stringer Deck Vessels deduct Diam diameter dimensions displacement distance draught equal First-class Sea-going fitted Flanges foot forecastle frame Freeboard for First-class freeboards in Tables friction half-breadth HEIGHT OF FREEBOARD inertia iron keel keelson KNOTS less Lloyd's load Main Deck Measured from Top MILLIMETRES moment of inertia moulded depth Orlop deck Pipe plate poop pounds RADIUS OF GYRATION RESERVE BUOYANCY riveted rudder rule scantlings screw shackle sheave shelter deck ship space Spar Deck speed square inch Steam Vessels steamers steel stem stern sternpost strake strength stress THICKNESS IN TWENTIETHS tonnage tons upper deck water line white light wire rope wood
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572 ÆäÀÌÁö - Nothing in these rules shall interfere with the operation of any special rules made by the government of any nation with respect to additional station and signal lights for two or more ships of war or for vessels sailing under convoy...
568 ÆäÀÌÁö - A vessel of one hundred and fifty feet or upwards in length, when at anchor, shall carry in the forward part of the vessel, at a height of not less than twenty and not exceeding forty feet above the hull, one such light, and at or near the stern of the vessel, and at such a height that it shall be not less than fifteen feet lower than the forward light, another such light.
567 ÆäÀÌÁö - ... shall be exhibited, in sufficient time to prevent collision, so that the green light shall not be seen on the port side nor the red light on the starboard side.
571 ÆäÀÌÁö - ... use, and shall flash or show them at short intervals, to indicate the direction in which they are heading, but the green light shall not be shown on the port side, nor the red light on the starboard side. A pilot vessel of such a class as to be obliged to go alongside of a...
569 ÆäÀÌÁö - ... abaft the beam on the starboard side, and of such a character as to be visible at a distance ot at least 2 miles. (c) On the port side a red...
567 ÆäÀÌÁö - Pilot vessels, when engaged on their station on pilotage duty, shall not show the lights required for other vessels, but shall carry a white light at the masthead, visible all round the horizon, and shall also exhibit a flare-up light or flare-up lights at short intervals, which shall never exceed fifteen minutes.
566 ÆäÀÌÁö - The highest and lowest of these lights shall be red, and the middle light shall be white, and they shall be of such a character as to be visible all around the horizon, at a distance of at least two miles.
568 ÆäÀÌÁö - The white light required to be shown by this article may be fixed and carried in a lantern, but in such case the lantern shall be so constructed, fitted, and screened that it shall throw...
565 ÆäÀÌÁö - ... feet above or below such lights, if the length of the tow measuring from the stern of the towing vessel to the stern of the last vessel towed exceeds 600 feet.
565 ÆäÀÌÁö - These two lights shall be so placed in line with the keel that one shall be at least 15 feet higher than the other and in such a position with reference to each other that the lower light shall be forward of the upper one. The vertical distance between these lights shall be less than the horizontal distance.