Tuesday, 12 January 2016
Ukuran/dimensi Standart Container/peti kemas
Pada umumnya container sudah memiliki ukuran standart internasional, salah satunya “Container 20 ft” seperti terlihat pada gambar berikut. artinya panjang dari container tersebut adalah 20 ft. untuk ukuran lebar dan tingginya biasanya hampir sama, perbedaannya hanya pada panjang container tersebut. secara umum yang banyak kita temukan asalah container dengan ukuran 20 ft dan 40 ft.
Berikut adalah beberapa ukuran standart dari container: Download Dimesion of Container
Saturday, 3 May 2014
7 Manfaat Menakjubkan Semangka Bagi Tubuh Anda
Semangka merupakan jenis buah berair yang sebagian besar jenis daging buahnya bewarna merah. Buah ini sangat cocok di konsumsi di saat udara terasa sangat panas atau di siang hari yang cukup terik. Ini dikarenakan, hampir 90 persen kandungan semangka terdiri atas air. Buah ini mudah di dapatkan di pasar tradisional maupun di pasar yang lebih modern. Sebagian besar dari kita tentu menyukai mengkonsumsi buah berair tersebut. Namun, di samping penganti penghilang dahaga, banyak sekali manfaat buah semangka bagi kesehatan tubuh anda. Lalu, apa saja manfaat menakjubkan semangka bagi kesehatan tubuh tersebut...???
Sahabat, tips kesehatan. Warna merah pada semangka menandakan bahwa buah ini mengandung berbagai nutrisi, vitamin, mineral, kalium, betakaroten, vitamin C dan serat yang dibutuhkan oleh tubuh. Oleh karena itu, mulailah menyediakan semangka sebagai salah satu makanan penutup di setiap menu harian anda. Kandungan berbagai nutris dan vitamin yang melimpah pada semangka membantu menjaga dan mempertahankan kesehatan tubuh setiap orang. Tips kesehatan kali ini akan mengungkapkan berbagai manfaat semangka yang mungkin belum anda ketahui. Berikut ini 7 manfaat menakjubkan semangka bagi kesehatan tubuh anda :
Jantung Yang Lebih Sehat. Buah semangka merupakan sumber likopen. Likopen yang terkandung dalam buah semangka berperan penting untuk menjaga kesehatan organ jantung yang anda miliki.Mata Yang Lebih Sehat. Ini dikarenakan, buah ini mengandung betakaroten yang akan di ubah didalam tubuh menjadi vitamin A. Vitamin A merupakan vitamin yang akan menyehatkan organ penglihatan anda.Meningkatkan Sistem Kekebalan Tubuh. Semangka juga merupakan sumber vitamin C. Vitamin C memiliki fungsi membantu meningkatkan sistem imun tubuh. Sehingga tubuh tidak akan mudah sakit di saat cuaca kurang baik atau sangat ekstrem.Perlindungan Dari Radikal Bebas. Berbagai asap pabrik, asap kendaraan bermotor serta udara kotor yang terhirup dapat memicu masuknya radikal bebas yang bisa mengancam kesehatan tubuh anda. Semangka mengandung senyawa karotenoid yang dapat menetralisir radikal bebas yang masuk ketubuh seseorang.Memperkuat Tulang Tubuh. Ini dikarenakan, semangka merupakan salah satu buah yang kaya akan kandungan kalium. Kalium ini berfungsi untuk mempertahankan kalsium dalam tubuh. Sehingga tulang dan sendi akan lebih sehat dan kuat sepanjang waktu.Organ Ginjal Yang Lebih Sehat. Mengkonsumsi buah semangka akan membantu meningkatkan aliran urine. Dengan lancarnya aliran urine maka akan berdampak pula pada kesehatan organ ginjal di didalam tubuh.Mengurangi Lemak Pada Tubuh. Semangka merupakan jenis buah yang kaya akan kandungan citruline yang mana berperan mengurangi lemak berlebih yang berada di dalam tubuh anda. Demikianlah tips kesehatan yang membahas 7 manfaat menakjubkan semangka bagi tubuh anda. Semoga bermanfaat dan berguna bagi pembaca semua.
Monday, 21 April 2014
Macam Survey Kapal
Tuesday, 3 December 2013
Docking Survey
1.Preface
This document describes the general background of a "Docking Survey," which has an important role in a classification survey, and is meant to be used as a reference for surveyors before they carry out field inspections.This document was prepared by Ichiro Ishikawa, former Chief Surveyor, and is based on the prerequisites described below.
1-1. Underwater inspection
An underwater inspection that replaces a docking or slipway inspection which is carried out by a company approved by the Classification Society. The bottom shell, rudder and propeller should be inspectedindirectly by observing the television images transmitted by an underwater camera used by a diver.
Detection of abnormalities should fundamentally conform to the contents of this document; therefore, details of underwater inspection are not specially described here.
1-2.Method of repairing damage
Various types of damage, such as damage due to stranding and contact with the bottom shell, may be detected during a docking survey. Such damage is usually repaired by the shipowner under insurance, but in this document details of repairing methods will not be described. These tems will be introduced in the separate home page describing "Damage and Repair" in futuer.1-3. Propeller
The propeller and propeller shaft are inspected at the same time as a bottom inspection. However, shafts need not necessarily be inspected during a Docking Survey because "Propeller Shaft and Stern Tube Shaft Surveys" are independent from the Docking Survey under the responsibility of machinery surveyor but brief explanation is entered in this document.1-4. Anchor and Chain Cable
An inspection of the anchors and anchor chains is not a requirement of a Docking Survey; these items fall under the purview of a Special Survey. However, as it is customary to inspect these items during a Docking Survey, they are covered in this document.1-5. Damages in Bottom
Except for defects that occur because of stranding and contact with objects or the sea bed, defects in the bottom shell, such as deformation and corrosion almost never occur unexpectedly; they occur gradually over a long period. Because the most repairs to the bottom shell involve repairs to double bottom tanks, considering that the tank should be emptied and cleaned before starting repairs and hydrostatic tests carried out after repairs, the period for repairs should be estimated aproximately. Therefore, the data below should be collected before performing a bottom survey.1-6. Study the history of the ship
Before carrying out an inspection, have a look the survey report file submitted together with the survey request application, and check the recommendations and the precautionary items if any .And read old survey reports as far back as possible, at least until the previous bottom inspection. Dents in the bottom shell may be under- or over-estimated, or overlooked depending on the position to be inspected, increase or decrease in the intensity of light rays, and arrangement of blocks. Dents that have not appeared in reports in the last few years, may have been reported already in the past. There have been instances1-7. Working Schedule
The schedule for docking , undocking and sailing dates are determined by the shipowner's sailing schedule and the shipyard's docking schedule; therefore, these informations should be obtained for reference. If the docking period is as short as two or three days, both shipowner and shipyard are unlikely to carry out the big repairs to the bottom or side shell unless the shell is heavily damaged. The docking period gives you an approximate idea of the extent of the bottom shell works that is likely to be carried out. Information such as the time the ship will be docked/undocked , how many hours does it take the dock will be dry, and capacity of discharge pumps of the dock should be obtained for reference.1-8. Marine casualties
After the previous docking, instances where the ship hits the quay, or the bottom shell came in contact with the sea bed or floating objects, should be correctly entered in the log book. It is recommended to ask the superintendent or the Master about the instances of marine casualties before starting inspection . If there are any report of bottom contact, the bottom inspection should be carried out with special care; sometimes , In this case the major repairs to the bottom shell may be necessary. Another method of collecting data is to be request shipyard supervisor to show the specifications for repairs carried out to the ship, if possible.Photo 1-1 ULCC in Dry Dock
One of the world largest ship, Piere Guillaumat in LISNAVE Margueira Yard in 1978 Dimensions Lpp 401.10 x B 63.01 x 35.92 m, DW 555,031t Built at the San Nazaire Ship Yard in France BV Class It takes more than 3 hours to carry out the bottom Survey.
2. Docking Survey
A docking survey is also called a bottom survey. According to the "Protocol of 1988 relating to the International Convention for the Safety of Life at Sea, 1974", a bottom inspection is defined by a lengthy expression: thst is, "Inspections of the outside of the ship's bottom". Area of the hull under the water-line are always immersed in water ; therefore, the condition of damage in the event of the stranding or bottom contact can not be observed. The objective of periodical docking is to inspect the area of hull beneath the water- line. Offshore structures in conrtast to a ship, do not sail throughout the world and suffer neither from stranding nor contacting with other object. Conversely, docking an offshore structure is very difficult; therefore, underwater inspection by an underwater camara inspection instead of docking is justifiable. There is no word corresponding to docking survey in the SOLAS Convention. But the Classification Sosieties request the periodical docking survey to the shipownes. According to their requirements ships must be in dry dock twice in 5years as shown in the following figure.http://docking.ship-doctor.com/2/2_1.html
Marine Survey Practice: Surveyor Guide Notes for Oil Tankers Survey
Surveyor Guide Notes for Oil Tankers Survey
Marine Survey Practice: Preparation for Survey
Preparation for Survey
- the owner or master of the ship (or his agent), for a periodical survey, including a mandatory annual survey and an intermediate survey, or occasional survey in the case of damage to the ship's structure or equipment;
- the port State, for clarification of possible non-compliance of the ship's structure or its equipment;
- the Administration of a State whose flag the ship is entitled to fly, for verification of the ship's condition.
- national requirements laid down by the Administration which are additional to the international convention, e.g. regarding a dead-man stopping device at winch controls etc., the use of asbestos, which is banned by many authorities although there may be varying interpretations of this ban, a remote starting of fire pumps on ships having unattended machinery space etc.,
- exemptions from the international convention's requirements, e.g. fixed fire extinguishing system of cargo holds,
- different survey methods and procedures accepted by the national authority, e.g. in-water survey (divers' survey) instead of the dry-docking of a ship, and non-traditional methods of surveying machinery such as surveys based on condition monitoring,
- different procedures for reporting to the Administration, to be followed by the surveyor.
- suitable working clothes
- safety shoes
- safety helmet
- ear protectors
- gloves
- notebook for recording and/or small dicta-phone
- ex-proof electric torch
- test hammer
- pocket measuring tape
Thickness measurement instruments:
Such instruments use ultrasonic testing methods and calibration of the instrument is usually built in, otherwise it must be gauged separately.- Gas reading 1% Lower Explosive Limit (LEL) or less (by Explosimeter).
- Maximum Benzene (C6H6) 10 ppm (by Draeger Tube or equal).
- Maximum Hydrogen Sulphide (H2S) 10 ppm (by Draeger Tube or equal) (this figure is under review and likely to be lower).
- Minimum Oxygen (02) 21% by volume (Oxygen Analyzer).
- Maximum Hydrocarbons no greater than the Threshold Limit Value - Time Weighted Average (TLV-TWA) for the actual mixture encountered (by Draeger Tube or equal).
- Other limits specific to dangerous cargoes (chemical products), if applicable.
- Maximum Carbon Monoxide (CO) 50 ppm (by Draeger Tube or equal).
- Maximum Nitrogen Dioxide (N02) 3 ppm (by Draeger Tube or equal).
- Maximum Nitric Oxide (NO) 25 ppm (by Draeger Tube or equal).
Marine Survey Practice: Hull Survey Methods
Hull Survey Methods
Hull survey methods are therefore not only comprehensive means of detecting deficiencies or monitoring structural condition, but also of defining schemes for inspection between the last overhaul and before the occurrence of failure.
Means of detection of defects and condition monitoring are inter alia:
- Visual inspections
- Non-destructive testing (NDT) and calibrating
- Examination of tightness, function and centre of gravity
- Measurements of thickness, vibration
1. MEANS OF HULL CONDITION ASSESSMENT
1.1 Visual Inspection
A major part of hull surveying work is carried out using visual skills to perform the examinations and to arrive at an opinion on the state of a vessel’s condition.
- Over-all inspections, a general sighting of a vessel's hull condition, followed by
- Close-up examinations at
- locations where discontinuities, ruptures or deformations have been found and
- certain hull structures as stipulated by rules and/or requirements, for instance in way of cargo area of oil tanks.
- Examination of areas of suspected crack and corrosion concentration.
1.1.1 Visual over-all inspection
Examination of external hull body
- unusual deformation,
- misalignment of structures along bottom plating, side shells, bilge keels, decks.
As a result, permanent deformations of misshaped sections can be caused by:
- hogging
- sagging
- bagging
- local deflections from the original structure.
For measuring purposes, a wire or a piano line may be stretched out from forward to aft and gauging derived from such a zero basis.
Inside inspections in holds, tanks, hull parts
Similar visual examinations can be carried out inside of compartments:
Attention should be concentrated on the lack of straightness of structures, along side lines from forward to aft and from port to starboard, with regard to:
- stringers and longitudinal frames,
- walls, longitudinal bulkheads and corrugations,
- platforms, transverse members and bulkheads,
- frames, brackets, deck beams,
- floors and attached stiffeners.
Lines and/or structures showing misalignment, deflection, buckling or other discontinuities, are an indication of existing defects requiring close-up inspection.
Docking inspections
When a vessel is dry-docked, attention has to be focused on:
- discovery of deformations and/or discontinuities along keel plates, bottom, and side plates, bilge keels, and attachments,
- checks for leakages from inside to outside, if the ballast
- tanks have overflow prior to this inspection,
- removal of the drain plug at the rudder blade. If water leaks out this is an indication that the blade has suffered water ingress (which may otherwise have remained hidden);
- measurement of rudder bearing clearances by feelers can also be considered a visual approach to assess wear-down. Ditto calibration of anchor chain links by caliper slide,
- condition of rudder flange; bolts or nut(s) must be absolutely tight;
- condition of welding at seams and butts and in way of outlet openings.
Such inspections should be carried out with floodlight etc. A good torch and a test hammer should always be available, as well as a scraper to remove rust scale and debris to reveal the bare material underneath.
Deformations that may have been produced as a result of external or internal forces should be carefully analyzed.
Without apparent extra loads along shell, deck, or bottom, likelihood of the following should be checked:
- internal movement of cargo, liquids etc.
- excessive flexibility of the structure.
- local stress concentrations (point loads excessive).
- location of crack,
- configuration of the structure/element,
- starting point of the crack,
- length and direction,
- depth and width of the crack,
- possible cause(s):
Resolution A.997(25)E
Resolución A.997(25)S
Resolution A.1020(26)E
Resolución A.1020(26)S






