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MY'STORY

The MOVE Fire

This is a personal recollection on the Move fire on May 13, 1985 Philadelphia police fired thousands of rounds at the MOVE house, city officials approved dropping an explosive device on the roof, the resulting fire was allowed to burn, 11 people—including five children—died, and 61 homes were destroyed. Philadelphia City Council later called it a “brutal attack carried out by the City of Philadelphia on its own citizens” and acknowledged that no individual faced criminal consequences for the bombing. One timeline correction worth preserving for the BHP record: the major previous MOVE-police confrontation was August 8, 1978, about seven years before the bombing, not a year or two earlier. Officer James Ramp was killed, other police and firefighters were wounded, nine MOVE members were later convicted, and television cameras recorded police beating Delbert Africa during his arrest. The 1985 MOVE Commission later specifically criticized city planners for failing to adequately use lessons from that 1978 confrontation. And that actually strengthens the point you’re making: 1985 did not happen without precedent or institutional memory. There had already been a deadly confrontation with MOVE, years of conflict, negotiations and police involvement before Osage Avenue.

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BLACK FACTS
The Truths They Never Taught You...

Ruler of the Mali Empire in the 14th century

Mansa Musa was the ruler of the Mali Empire in West Africa. Details recorded here should be sourced; unknown information is left blank.

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BHP gathered finds from its connected research sources. Showing the 4 strongest Black History matches.
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Wikipedia

Bailout bottle

Bailout bottle
Filling a spare air bailout cylinder
Other namesBailout cylinder, emergency gas supply
UsesEmergency supply of breathing gas
Related itemsPony bottle

A bailout bottle (BoB) or, more formally, bailout cylinder is a scuba cylinder carried by an underwater diver for use as an emergency supply of breathing gas in the event of a primary gas supply failure. A bailout cylinder may be carried by a scuba diver in addition to the primary scuba set, or by a surface supplied diver using either free-flow or demand systems.[1] The bailout gas is not intended for use during the dive except in an emergency. The term may refer to just the cylinder, or the bailout set or emergency gas supply (EGS), which is the cylinder with the gas delivery system attached. The bailout set or bailout system is the combination of the emergency gas cylinder with the gas delivery system to the diver, which includes a diving regulator with either a demand valve, a bailout block, or a bailout valve (BOV).

In solo diving, a buddy bottle is a bailout cylinder carried as a substitute for an emergency gas supply from a diving buddy. A bailout cylinder for recreational scuba diving is often a small cylinder, known as a pony bottle, with a normal scuba regulator set, or a smaller cylinder with a combined first and second stage integrated with the cylinder valve, known as "Spare air", after a well known example of the type.

Rebreathers also have bailout systems, often including an open-circuit bailout bottle.[2][3]

Purpose

[edit]

The purpose of the bailout cylinder is to provide a fully redundant breathing gas supply for use in emergencies where a single gas mixture is appropriate. If more than one mixture is necessary for the ascent, redundant breathing gas is typically split between two or more cylinders carried by the diver, and in penetration diving where the diver is constrained to use the same route for exit as for entry, cylinders may be staged, which is a term meaning stowed along the route of the guideline, to be retrieved on the return. The procedure of switching to an emergency gas supply is called bailout, and may be from any gas supply planned for use at that stage of the dive to any gas supply available that is acceptable for use at the current depth in an emergency. Bailout may be temporary, to allow the diver to deal with a problem that can be fixed, such as a closed cylinder valve, or may continue until the end of the dive, for an intractable problem such as an out-of-gas incident. Bailout to open circuit is commonly recommended while dealing with rebreather faults where the composition of the loop gas is uncertain. [4][5][6][3]

Bailout cylinders for use with scuba

[edit]

For scuba, a "bailout bottle" or "self-contained ascent bottle" is a small diving cylinder meant to be used as an alternate air source to allow a controlled ascent with any required decompression, in place of a controlled emergency swimming ascent, which will not allow required decompression. A bailout cylinder is required equipment for a professional diver using scuba in some circumstances.[6]

Types

[edit]

A pony bottle is an example of a small bailout cylinder which has a standard diving regulator with first and second stages. There are also significantly smaller cylinders which have the first stage — and in the smallest models also the second stage — integrated into the cylinder valve itself.[7] A well-known example of this class of bailout bottle is the "Spare Air" set, which can supply a few breaths to allow the diver to ascend at a safe rate, but not enough to do a decompression stop. This type of bailout bottle is typically carried in a holster that is attached to the diver's harness.[8]

"Spare Air" bailout bottles, introduced in the 1980s, are very small cylinders with integral scuba regulators. Their disadvantage is that in many emergency situations they do not have sufficient capacity to get a diver back to the surface safely, and thus may cause divers carrying them to feel an unjustified sense of safety. Their advantage is that they are compact and easy to deploy, and that a small amount of air is better than none in an emergency.[8]

Capacity

[edit]

A review carried out by Scuba Diving magazine attempted to give a sense of from what depth bailout bottles of various capacities could get divers to the surface under maximum safe ascent rates, though the review cautioned that the reviewers were in controlled conditions and thus could not replicate the circumstances of an actual panicked diver. The review found that a 1.7-cubic-foot (0.24 L) bottle had sufficient air to get the reviewing diver from 45 feet (14 m) to the surface; a 3-cubic-foot (0.4 L) bottle from a depth of 70 feet (21 m); and a 6-cubic-foot (0.8 L) bottle from the maximum reviewed depth of 132 feet (40 m), which is the maximum depth recommended for recreational dives by some training agencies.[8] A bell diver must be able to return to the bell on the contents of the bailout cylinder, which will be influenced by the depth and umbilical length, and limited by the size of the bell entry lock manway.[9][10]

Mounting arrangements

[edit]
Solo scuba diver with sling mounted 5.5 litre (40 cu ft) aluminium bailout cylinder
A pony bottle strapped to the back cylinder

A bailout cylinder is defined by its function, and may be carried in any convenient way. The small "Spare Air" type is commonly carried in a pocket type holster which is strapped to the harness where it can easily be reached, usually somewhere on the front of a jacket style buoyancy compensator. Larger bailout cylinders may be strapped to the back cylinder, (see Pony bottle), or suspended from the harness D-rings along the side of the diver as a side-mount, or sling cylinder.[2][11] Surface-supplied divers usually carry the bailout set on a back-mount harness, as this leaves the arms unencumbered for work.[12]

Bailout systems used with rebreathers

[edit]

In rebreather diving, bailout to open circuit is a procedure where the diver switches from breathing from the rebreather loop to open circuit. This is done when the loop is compromised for any reason, and is often done temporarily when there is some doubt that the gas in the loop is right for the depth. Bailout to open circuit may be a local switch-over at the bailout valve (BOV) to breathe gas directly from the diluent cylinder, or may be a switch to off-board gas, which is carried in an independent cylinder and is directly equivalent to open circuit bailout.[2] This may be done through an off-board supply connected to the BOV or through a regular fully independent bailout set carried for the purpose. Both options may be available on deep dives with long decompression obligations.[3] Occasionally rebreather divers will carry a bailout rebreather, when it is not practical to carry the required gas volume for open circuit bailout.

Bailout cylinders for use with surface-supplied equipment

[edit]
Surface-supplied divers riding a diving stage. Each carries a scuba bailout cylinder on his back.

For commercial diving using surface-supplied breathing gas, the bailout cylinder is in many cases required by health and safety legislation[5] and approved codes of practice[13] as an obligatory component of the diving system. In this application the intention is that the bailout cylinder should hold sufficient breathing gas for the diver to be able to reach a place of safety where more breathing gas is available, such as the surface or a diving bell. To achieve this the cylinder must contain enough gas to allow decompression if that is included in the planned dive profile and there is no bell. Cylinder volumes are generally at least 7 litres, and may in some cases be as much as twin 12-litre sets.[citation needed] Bailout sets used by closed bell divers must provide enough gas to return to the bell, and must fit through the bottom airlock door.[9]

Bailout gas

[edit]

The emergency gas supply must support life at any depth where it is likely to be used. It will almost always be used for ascent or return to the bell, so a relatively oxygen-rich mixture will usually be advantageous. In closed bell diving an unusually high oxygen partial pressure of 2.8 bar as used in therapeutic decompression was recommended by Association of Offshore Diving Contractors (AODC) and endorsed by the Diving Medical Advisory Council (DMAC) in 1981, on the assumption that if the diver does not make it back into the bell on the bailout gas, or loses consciousness to acute oxygen toxicity, the chances of successful resuscitation will be better than in the case of hypoxia.[14] This strategy only holds when bailout is at constant pressure, the diver's airway is secured by a helmet, and there is a bellman to assist, as the risk of losing consciousness is relatively high.

Scuba divers cannot accept a high risk of oxygen toxicity convulsions and would usually consider an oxygen partial pressure of 1.6 bar to be the upper limit, though exposure at this pressure is likely to be of very short duration if an immediate ascent is started. It is common practice to use a non-optimised gas, as emergencies are not expected, and the same cylinder with the same gas may be carried on several dives, as long as the remaining quantity is sufficient. It must mainly be acceptably safe to breathe at the depths where it may be used.

The Diving Medical Advisory Council has more recently (2016) made a more conservative recommendation of an oxygen partial pressure for open circuit bailout for saturation divers of between 1.4 and 0.4 bar.[15]

Alternatives

[edit]

Alternatives to a bailout cylinder include:

  • A bailout rebreather, which must be ready for use at all times, and the diver must be competent to make the switch and secure the malfunctioning equipment to retain neutral buoyancy.[16]
  • Team gas redundancy, as in buddy diving, where each diver in the team relies on the other divers to share gas in an emergency. This requires strict discipline and situational awareness from all members of the team to ensure that they are immediately available and competent to share gas if one of them has an out-of-gas emergency. In penetration diving using the rule of thirds and stage cylinders, team gas redundancy is applied.[11][17][18]
  • Emergency ascent is practicable and may be acceptable as the planned contingency procedure when the total time to surface is short enough that the diver can do it on their last breath before the gas supply was cut off. This implies that no decompression stops are needed, and the distance to the free surface is short enough and clear of obstacles, and that the diver will not be required to exert themself much during the ascent to counteract negative buoyancy. For a fit and skilled diver this could be as deep as 30 m, but it is a decision a recreational diver must be competent to make for themself.[19] A professional diver would not usually be allowed to dive to this depth without some form of emergency gas supply, as the risk is relatively high and there are reasonably practicable measures available to significantly reduce the risk.[5]

See also

[edit]

References

[edit]
  1. ^ Larn, Richard; Whistler, Rex (1993). Commercial Diving Manual (3rd ed.). Newton Abbott, UK: David and Charles. ISBN 0-7153-0100-4.
  2. ^ a b c Powell, Mark (8 April 2013). "What Bailout is Best for You? Rebreathers". TDI diver news. www.trisdi.com. Archived from the original on 9 April 2017. Retrieved 8 April 2017.
  3. ^ a b c "Rebreather Safety & Bailout Procedures". www.apdiving.com. AP Diving. Archived from the original on 9 April 2017. Retrieved 8 April 2017.
  4. ^ Tamburri, Christine (2 January 2023). "Decompression, Stage, and Bailout Cylinders". www.dansa.org. Archived from the original on 5 October 2023. Retrieved 1 September 2025.
  5. ^ a b c "Diving Regulations 2009". Occupational Health and Safety Act 85 of 1993 – Regulations and Notices – Government Notice R41. Pretoria: Government Printer. Archived from the original on 4 November 2016. Retrieved 3 November 2016 – via Southern African Legal Information Institute.
  6. ^ a b Sheldrake, S; Pedersen, R; Schulze, C; Donohue, S; Humphrey, A (2011). "Use of Tethered Scuba for Scientific Diving". In: Pollock NW, ed. Diving for Science 2011. Proceedings of the American Academy of Underwater Sciences 30th Symposium.
  7. ^ "Bailout Bottle". scuba-info.com. Archived from the original on 15 July 2010. Retrieved 28 April 2010.
  8. ^ a b c "Bailout Bottles". Scuba Diving. Bonnier Corporation. October 18, 2006. Archived from the original on 11 January 2010. Retrieved 28 April 2010. – Publishers of Scuba Diving magazine.
  9. ^ a b "10 - General diving procedures". Guidance for diving supervisors IMCA D 022 (Revision 1 ed.). London, UK: International Marine Contractors Association. August 2016. pp. 10–6.
  10. ^ Cadieux, Christian (September 2021). Saturation diving handbook: Book 3 of 4 - Bell procedures. Phitsanulock - Thailand: Diving & ROV specialists.
  11. ^ a b Heinerth, Jill (1 November 2023). "Air and a Spare". dan.org. Archived from the original on 16 March 2025. Retrieved 24 April 2024.
  12. ^ US Navy (1 December 2016). U.S. Navy Diving Manual Revision 7 SS521-AG-PRO-010 0910-LP-115-1921 (PDF). Washington, DC.: US Naval Sea Systems Command. Archived (PDF) from the original on 2024-05-07. Retrieved 2025-04-17.
  13. ^ IMCA D014 International Code of Practice for Offshore Diving (PDF) (Revision 2 ed.). London, UK: International Marine Contractors Association. February 2014. Retrieved 30 January 2016.[permanent dead link]
  14. ^ Partial Pressure of O2 in Bail-Out Bottles. DMAC 04 (Report). Diving Medical Advisory Council. January 1981.
  15. ^ Oxygen content in open circuit bailout bottles for heliox saturation diving. DMAC 04 revision 2 (Report). Diving Medical Advisory Council. May 2016.
  16. ^ Šimánek, Jakub (10 June 2020). "Using a Bailout Rebreather". www.tdisdi.com. Archived from the original on 20 September 2022. Retrieved 17 September 2022.
  17. ^ Jablonski, Jarrod (2006). Doing it Right: The Fundamentals of Better Diving. High Springs, Florida: Global Underwater Explorers. ISBN 0-9713267-0-3.
  18. ^ Beresford, Michael (2001). Trimix Diver: A guide to the use of Trimix for technical diving. Pretoria, South Africa: CMAS Instructors South Africa.
  19. ^ Samson, R.L.; Miller, J.W., eds. (1979). Emergency Ascent Training. 15th Undersea and Hyperbaric Medical Society Workshop. (Report). Vol. UHMS Publication Number 32WS(EAT)10-31-79.

Source: Wikipedia. Article content is retrieved live through the MediaWiki API.

Wikipedia

Bailout bottle

A bailout bottle (BoB) or, more formally, bailout cylinder is a scuba cylinder carried by an underwater diver for use as an emergency supply of breathing gas in the event of a primary gas supply failure. A bailout cylinder may be carried by a scuba diver in addition to the primary scuba set, or by a surface supplied diver using either free-flow or demand systems. The bailout gas is not intended for use during the dive except in an emergency. The term may refer to just the cylinder, or the bailout set or emergency gas supply (EGS), which is the cylinder with the gas delivery system attached. The bailout set or bailout system is the combination of the emergency gas cylinder with the gas delivery system to the diver, which includes a diving regulator with either a demand valve, a bailout block, or a bailout valve (BOV). In solo diving, a buddy bottle is a bailout cylinder carried as a substitute for an emergency gas supply from a diving buddy. A bailout cylinder for recreational scuba diving is often a small cylinder, known as a pony bottle, with a normal scuba regulator set, or a smaller cylinder with a combined first and second stage integrated with the cylinder valve, known as "Spare air", after a well known example of the type. Rebreathers also have bailout systems, often including an open-circuit bailout bottle.

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Wikipedia

Bailout valve

A Bailout valve in underwater diving is a valve switching the breathing gas supply from the primary source to an emergency source. Rebreather diving#Bailout valve, a rebreather bailout valve is a valve in the mouthpiece that switches from closed to open circuit. Surface-supplied diving#Bailout gas supply, in surface-supplied diving, a bailout valve is a valve on the helmet, full-face mask or bailout block on the diving harness that switches from surface-supplied gas to scuba gas.

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Wikipedia

Diving cylinder

A diving cylinder or diving gas cylinder is a gas cylinder used to store and transport high-pressure gas used in diving operations. This may be breathing gas used with a scuba set, in which case the cylinder may also be referred to as a scuba cylinder, scuba tank or diving tank. When used for an emergency gas supply for surface-supplied diving or scuba, it may be referred to as a bailout cylinder or bailout bottle. It may also be used for surface-supplied diving or as decompression gas. A diving cylinder may also be used to supply inflation gas for a dry suit, buoyancy compensator, decompression buoy, or lifting bag. Cylinders provide breathing gas to the diver by free-flow or through the demand valve of a diving regulator, or via the breathing loop of a diving rebreather. Diving cylinders are usually manufactured from aluminum or steel alloys, and when used on a scuba set are normally fitted with one of two common types of scuba cylinder valve for filling and connection to the regulator. Other accessories such as manifolds, cylinder bands, protective nets and boots and carrying handles may be provided. Various configurations of harness may be used by the diver to carry a cylinder or cylinders while diving, depending on the application. Cylinders used for scuba typically have an internal volume (known as water capacity) of between 3 and 18 litres (0.11 and 0.64 ft3) and a maximum working pressure rating from 184 to 300 bars (2,670 to 4,350 psi). Cylinders are also available in smaller sizes, such as 0.5, 1.5 and 2 litres; however these are usually used for purposes such as inflation of surface marker buoys, dry suits, and buoyancy compensators rather than breathing. Scuba divers may dive with a single cylinder, a pair of similar cylinders, or a main cylinder and a smaller "pony" cylinder, carried on the diver's back or clipped onto the harness at the side. Paired cylinders may be manifolded together or independent. In technical diving, more than two scuba cylinders may be needed to carry different gases. Larger cylinders, typically up to 50 litre capacity, are used as on-board emergency gas supply on diving bells. Large cylinders are also used for surface supply through a diver's umbilical, and may be manifolded together on a frame for transportation. The selection of an appropriate set of scuba cylinders for a diving operation is based on the estimated amount of gas required to safely complete the dive. Diving cylinders are most commonly filled with air, but because the main components of air can cause problems when breathed underwater at higher ambient pressure, divers may choose to breathe from cylinders filled with mixtures of gases other than air. Many jurisdictions have regulations that govern the filling, recording of contents, and labeling for diving cylinders. Periodic testing and inspection of diving cylinders is often obligatory to ensure the safety of operators of filling stations. Pressurized diving cylinders are considered dangerous goods for commercial transportation, and regional and international standards for colouring and labeling may also apply.

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Wikipedia

Surface-supplied diving equipment

Surface-supplied diving equipment (SSDE) is the equipment required for surface-supplied diving. The essential aspect of surface-supplied diving is that breathing gas is supplied from the surface, either from a specialised diving compressor, high-pressure gas storage cylinders, or both. In commercial and military surface-supplied diving, a backup source of surface-supplied breathing gas should always be present in case the primary supply fails. The diver may also wear a bailout cylinder (emergency gas supply) which can provide self-contained breathing gas in an emergency. Thus, the surface-supplied diver is less likely to have an "out-of-air" emergency than a scuba diver using a single gas supply, as there are normally two alternative breathing gas sources available. Surface-supplied diving equipment usually includes communication capability with the surface, which improves the safety and efficiency of the working diver. The equipment needed for surface supplied diving can be broadly grouped as diving and support equipment, but the distinction is not always clear. Diving support equipment is equipment used to facilitate a diving operation. It is either not taken into the water during the dive, such as the gas panel and compressor, or is not integral to the actual diving, being there to make the dive easier or safer, such as a surface decompression chamber. Some equipment, like a diving stage, is not easily categorised as diving or support equipment, and may be considered as either. Equipment required only to do the planned underwater work is not usually considered diving or support equipment. Surface-supplied diving equipment is required for a large proportion of the commercial diving operations conducted in many countries, either by direct legislation, or by authorised codes of practice, as in the case of IMCA operations. Surface-supplied equipment is also required under the US Navy operational guidance for diving in harsh contaminated environments which was drawn up by the Navy Experimental Diving Unit.

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TOPIC OF THE DAY

Greenwood / Black Wall Street

Before the 1921 destruction of Tulsa’s Greenwood District, Black residents had created a remarkable center of business and community life. The district included stores, professional offices, entertainment venues and homes owned by Black citizens. Understanding Greenwood means learning what was built—not only what was burned.

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TRIVIA QUESTION OF THE DAY

What prosperous Tulsa district became widely known as “Black Wall Street”?

The Greenwood District.