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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

Diving procedures

Diving procedures are standardised methods of doing things that are commonly useful while diving that are known to work effectively and acceptably safely. Due to the inherent risks of the environment and the necessity to operate the equipment correctly, both under normal conditions and during incidents where failure to respond appropriately and quickly can have fatal consequences, a set of standard procedures are used in preparation of the equipment, preparation to dive, during the dive if all goes according to plan, after the dive, and in the event of a reasonably foreseeable contingency. Standard procedures are not necessarily the only courses of action that produce a satisfactory outcome, but they are generally those procedures that experiment and experience show to work well and reliably in response to given circumstances.[1] All formal diver training is based on the learning of standard skills and procedures, and in many cases the over-learning of the skills until the procedures can be performed without hesitation even when distracting circumstances exist. Where reasonably practicable, checklists may be used to ensure that preparatory and maintenance procedures are carried out in the correct sequence and that no steps are inadvertently omitted.[2][3][4]

Some procedures are common to all manned modes of diving, but most are specific to the mode of diving and many are specific to the equipment in use.[5][6][4] Diving procedures are those directly relevant to diving safety and efficiency, but do not include task specific skills. Standard procedures are particularly helpful where communication is by hand or rope signal – the hand and line signals are examples of standard procedures themselves – as the communicating parties have a better idea of what the other is likely to do in response. Where voice communication is available, standardised communications protocol reduces both the time needed to convey necessary information and the error rate in transmission.[7]

Diving procedures generally involve the correct application of the appropriate diving skills in response to the current circumstances, and range from selecting and testing equipment to suit the diver and the dive plan, to the rescue of oneself or another diver in a life-threatening emergency. In many cases, what might be a life-threatening emergency to an untrained or inadequately skilled diver, is a mere annoyance and minor distraction to a skilled diver who applies the correct procedure without hesitation. Professional diving operations tend to adhere more rigidly to standard operating procedures than recreational divers, who are not legally or contractually obliged to follow them, but the prevalence of diving accidents is known to be strongly correlated to human error, which is more common in divers with less training and experience.[2] The Doing It Right philosophy of technical diving is strongly supportive of common standard procedures for all members of a dive team, and prescribe the procedures and equipment configuration that may affect procedures to the members of their organisations.[8]

The terms diving skills and diving procedures are largely interchangeable, but a procedure may require the ordered application of several skills, and is a broader term. A procedure may also conditionally branch or require repeated applications of a skill, depending on circumstances. Diver training is structured around the learning and practice of standard procedures until the diver is assessed as competent to apply them reliably in reasonably foreseeable circumstances, and the certification issued limits the diver to environments and equipment that are compatible with their training and assessed skill levels. The teaching and assessment of diving skills and procedures is often restricted to registered instructors, who have been assessed as competent to teach and assess those skills by the certification or registration agency, who take the responsibility of declaring the diver competent against their assessment criteria. The teaching and assessment of other task oriented skills does not generally require a diving instructor.[4] There is considerable difference in the diving procedures of professional divers, where a diving team with formally appointed members in specific roles and with recognised competence is required by law, and recreational diving, where in most jurisdictions the diver is not constrained by specific laws, and in many cases is not required by law to provide any evidence of competence.

Routine diving procedures

[edit]
Checking equipment function before use
Fitting a lightweight demand helmet
Pre-dive checks
Backward roll entry
stride entry from a low platform
Ladder entry
Descent on a diving stage
Hand signal communication during a training exercise
Compass navigation
Ladder exit
Checking the chamber BIBS
Monitoring the decompression chamber

These are the procedures that the diver uses during the course of a planned dive, where everything goes to plan, and there are no contingencies. Consequently, experienced divers tend to become expert in these procedures due to adequate practice. Some procedures may seldom be needed, or only be relevant to specific equipment, which is not often used, so refresher exercises are frequently required before dives using unfamiliar equipment, or when unusual tasks or unfamiliar conditions are expected.

Dive planning, the pre-dive briefing. and selection, inspection, preparation and pre-dive checking of diving equipment, may be considered diving procedures, as they are essential parts of the normal diving operation, though they are done before entering the water.[5][6]

In-water procedures in this grouping include entry to the water, surface swimming, descent, buoyancy and trim control, equalisation of pressure in air spaces, maneuvering in midwater and at the bottom, monitoring the dive profile, gas supply and decompression obligations, normal ascent, and exit from the water. For some divers, gas switching, deployment of a decompression buoy and staged decompression may be added, or navigation under an overhead. Communications procedures depend on equipment and mode of diving, but are also in this group.[5][6]

After-dive maintenance and storage of equipment, debriefing, and logging the dive are also procedural parts of the normal diving operation.[5][6]

Scuba

[edit]

Clearing a flooded demand valve is both a routine procedure and an emergency procedure. It is an emergency procedure because if the DV is not cleared, the diver could aspirate water and choke, but it can easily happen, and will happen when a diver switches to a different gas supply delivered through a different DV, and there are two easy ways to deal with it, so it should not be a problem on a dive which runs according to plan.

Routine scuba diving procedures (order may vary slightly, and some are also relevant to surface supplied diving, though details may vary):

  • Dive planning – Process of planning an underwater diving operation.
  • Selection of equipment – A diver is expected to be able select appropriate equipment and check it for fit and function.
  • Preparation of equipment – Assembly and function checks of personal diving equipment.
  • Site inspection and setup.
  • Pre-dive briefing – Meeting of the dive team to discuss details before the diving operation.
  • Kit-up/dressing in the diver – Dressing into the diving suit, breathing apparatus, harness and accessories.
    • Pre-dive checks – Check that all necessary equipment is correctly fitted and functioning.
  • Entering the water – Use of an appropriate water entry technique.
  • Surface checks – Final function checks and reports before descent.
  • Breathing from the demand valve – The pattern of breathing can affect work of breathing and effective dead space, both of which must be limited, and preferably minimised. Mouthpieces must seal against the lips when used to prevent aspiration of water.
  • Demand valve clearing – Expelling water from the interior of the demand valve.
  • Descent – A generally consistent increase in depth until the operational depth is reached.
    • Equalisation – Balancing pressures in air spaces with the ambient pressure.
      • Equalise dry suit squeeze – Injecting sufficient gas into the dry suit for comfort and insulation.
      • Ear clearing – Equalising of pressure in the middle ears.
    • Buoyancy control – Adjustment of the gas content in buoyancy compensator and dry suit to achieve appropriate buoyancy.
    • Trim control – Control of attitude in the water to suit the circumstances.
    • Depth monitoring and control – Observation of current depth and ensuring it is appropriate.
  • Standard dive activities:
    • Communications – Methods used by underwater divers to communicate.
    • Mask clearing and demisting – Discharge of water from the mask, and rinsing off condensation from the inner surface.
    • Maneuvering and mobility – Self-propulsion in the water column.
    • Monitoring decompression status – Keeping track of personal decompression obligation.
    • Monitoring breathing gas supply – Ensuring that the remaining gas supply is sufficient to complete the dive safely.
    • Balancing cylinder usage – ensuring that enough gas to safely finish the dive remains if any one cylinder loses all remaining gas.
    • Stage-drops – depositing stage cylinders at predetermined positions or when the pressure reaches a planned level along a route, usually a route marked by a guideline, usually for use on the return sector of the dive.
    • Stage retrieval – retrieving a drop tank on the return stage and using it for the next stage according to plan.
  • Rebreather diving – Underwater diving using self contained breathing gas recycling apparatus.
  • Use of auxiliary equipment – Useful equipment, not needed on all dives.
  • Planned diving activities – These are mostly considered underwater work, with a few exceptions and borderline cases.
  • Ascent – A generally consistent decrease in depth until the surface is reached.
    • Decompression – The reduction in ambient pressure experienced during ascent from depth, and the process of elimination of dissolved inert gases from the diver's body tissues.
    • No-stop diving – Diving which limits tissue inert gas concentrations to those which allow acceptably safe surfacing without decompression stops.
    • Repetitive diving – Diving again while some tissues have not reached equilibrium with surface saturation.
    • Staged decompression – Decompression at fixed depth intervals, a practise which allows use of decompression tables.
      • Gas switching – Changing between breathing gases during a dive to a gas suited to the current depth, to limit oxygen toxicity or nitrogen narcosis, or to accelerate decompression.
      • Management of multiple cylinders – Managing additional cylinders with different gas mixtures.
      • Accelerated decompression – Use of oxygen enriched gas mixtures to accelerate inert gas elimination.
      • Oxygen decompression – Use of pure oxygen to accelerate inert gas elimination.
      • Monitoring decompression using a planned schedule, depth measurement and elapsed time.
      • Monitoring decompression using a dive computer – Instrument to calculate decompression status in real time.
    • Surfacing – The final stage of ascent.
  • Return to exit point – Getting from the position of surfacing to a place where the diver can safely exit the water, usually by finning at the surface.
  • Exit from water.
  • Un-kit (dressing out) – Removal of diving equipment worn and carried by the diver.
  • Debriefing – Report back and review on a project or mission after completion.
  • Log dive – Recording specific details about the dive in a diver's logbook (paper or electronic database).
  • Clean, inspect and store equipment – Basic daily user maintenance.
  • Pack up site (demobilise) – The dismantling, packing and transport back to storage of the dive spread.

Surface supplied diving

[edit]

Routine Surface-supplied diving procedures:

Wet bell

[edit]

Routine wet bell procedures (some of these procedures also apply to closed bell operations, though details will differ):

Closed bell

[edit]

Routine closed bell procedures:

Emergency procedures

[edit]

These are the procedures that the diver is expected to be able to follow in the event of a reasonably foreseeable contingency. Some occur quite often such as the loss of grip on the mouthpiece in scuba diving, and are therefore usually well practiced. Others, like bailing out to emergency gas supply, should never happen if the equipment does not fail and the dive is carried out according to a good plan, and must be practiced as an exercise to maintain the skill or as part of pre-dive checks to ensure that the equipment is functioning correctly, as failure to perform correctly could be fatal.[9][6]

Emergency procedures are procedures to recover from a contingency that could be life-threatening if not responded to promptly and correctly. Some are trivially easy for a skilled diver. They include regulator recovery, clearing a flooded mask or helmet, bailout to emergency gas supply, emergency swimming ascent (for scuba), bell abandonment, shedding of weights (scuba), breathing off the pneumofathometer hose (SSDE), and switching over to onboard gas (bell diving).[5][9][6] In cave or wreck diving, finding a lost guideline and finding the other part of a broken line are also emergency procedures.

Scuba emergency procedures

[edit]

Surface-supplied diving emergency procedures

[edit]

Surface supplied diving emergency procedures:

Wet bell emergency procedures

[edit]

Closed bell emergency procedures

[edit]

Rescue procedures

[edit]
Simulated rescue of an unconscious diver
Demonstration of oxygen administration for diver first aid

These are procedures that the professional standby diver must execute when deployed to go to the assistance of the working diver in an emergency, or the buddy or dive-team member in a recreational or technical dive should use if another member of the team is unable to manage an emergency themselves. They are also emergency procedures, but for another person's benefit. It is fairly common for a diver never to need to apply one of these procedures for real, and they too should be practiced to maintain skill levels. Professional diving organisations typically require periodical emergency exercises as specified in their operations manual to maintain these skills.[5][9][6]

Rescue procedures include following the umbilical or lifeline to the distressed diver, providing emergency breathing gas, recovering the casualty to the bell or surface, releasing a snagged umbilical, umbilical changeout at depth, providing the supervisor with continuous updates.[5][9][6] Rescues may be needed in unexpected circumstances, and seldom follow the text-book example, so the rescue diver may have to modify the learned response to suit reality.

Scuba rescue procedures

[edit]

Scuba diving rescue procedures:

Surface-supplied diver rescue procedures

[edit]

See also

[edit]

References

[edit]
  1. ^ Larn, Richard; Whistler, Rex (1993). "8: Scuba Diving Procedures". Commercial Diving Manual (3rd ed.). Newton Abbott, UK: David and Charles. ISBN 0-7153-0100-4.
  2. ^ a b Ranapurwala, Shabbar I; Denoble, Petar J; Poole, Charles; Kucera, Kristen L; Marshall, Stephen W; Wing, Steve (2016). "The effect of using a pre-dive checklist on the incidence of diving mishaps in recreational scuba diving: a cluster-randomized trial". International Journal of Epidemiology. 45 (1). Oxford University Press on behalf of the International Epidemiological Association: 223–231. doi:10.1093/ije/dyv292. PMID 26534948.
  3. ^ Ranapurwala, Shabbar I. (Winter 2013). "Checklists". Divers Alert Network. Retrieved 3 October 2018.
  4. ^ a b c International consensus standards for commercial diving and underwater operations (Sixth (R6.2) ed.). Houston, Texas: Association of Diving Contractors International, Inc. 2016.
  5. ^ a b c d e f g Class IV Training Standard (Revision 5 ed.). South African Department of Labour. October 2007.
  6. ^ a b c d e f g h i j k l m n o Class II Training Standard (Revision 5 ed.). South African Department of Labour. October 2007.
  7. ^ Bevan, John, ed. (2005). "Section 6.2 Diver Voice Communications". The Professional Divers's Handbook (second ed.). Gosport, Hampshire: Submex Ltd. pp. 250–251. ISBN 978-0-9508242-6-0.
  8. ^ Jablonski, Jarrod (2006). "4: DIR Philosophy". Doing It Right: The Fundamentals of Better Diving. High Springs, Florida: Global Underwater Explorers. pp. 53–54. ISBN 0-9713267-0-3.
  9. ^ a b c d Class III Training Standard (Revision 5 ed.). South African Department of Labour. October 2007.
  10. ^ a b c d e f g Guidance for diving supervisors IMCA D 022 (Revision 1 ed.). London, UK: International Marine Contractors Association. August 2016.
  11. ^ a b c d e f g Jameson, Grant. New Commercial Air Diving Manual. Durban, South Africa: Professional Diving Centre.
  12. ^ a b c d Guidance for diving supervisors IMCA D 022, chpt. 13 Closed bell diving, sect. 10 Emergency and contingency plans

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

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Wikipedia

Diving procedures

Diving procedures are standardised methods of doing things that are commonly useful while diving that are known to work effectively and acceptably safely. Due to the inherent risks of the environment and the necessity to operate the equipment correctly, both under normal conditions and during incidents where failure to respond appropriately and quickly can have fatal consequences, a set of standard procedures are used in preparation of the equipment, preparation to dive, during the dive if all goes according to plan, after the dive, and in the event of a reasonably foreseeable contingency. Standard procedures are not necessarily the only courses of action that produce a satisfactory outcome, but they are generally those procedures that experiment and experience show to work well and reliably in response to given circumstances. All formal diver training is based on the learning of standard skills and procedures, and in many cases the over-learning of the skills until the procedures can be performed without hesitation even when distracting circumstances exist. Where reasonably practicable, checklists may be used to ensure that preparatory and maintenance procedures are carried out in the correct sequence and that no steps are inadvertently omitted. Some procedures are common to all manned modes of diving, but most are specific to the mode of diving and many are specific to the equipment in use. Diving procedures are those directly relevant to diving safety and efficiency, but do not include task specific skills. Standard procedures are particularly helpful where communication is by hand or rope signal – the hand and line signals are examples of standard procedures themselves – as the communicating parties have a better idea of what the other is likely to do in response. Where voice communication is available, standardised communications protocol reduces both the time needed to convey necessary information and the error rate in transmission. Diving procedures generally involve the correct application of the appropriate diving skills in response to the current circumstances, and range from selecting and testing equipment to suit the diver and the dive plan, to the rescue of oneself or another diver in a life-threatening emergency. In many cases, what might be a life-threatening emergency to an untrained or inadequately skilled diver, is a mere annoyance and minor distraction to a skilled diver who applies the correct procedure without hesitation. Professional diving operations tend to adhere more rigidly to standard operating procedures than recreational divers, who are not legally or contractually obliged to follow them, but the prevalence of diving accidents is known to be strongly correlated to human error, which is more common in divers with less training and experience. The Doing It Right philosophy of technical diving is strongly supportive of common standard procedures for all members of a dive team, and prescribe the procedures and equipment configuration that may affect procedures to the members of their organisations. The terms diving skills and diving procedures are largely interchangeable, but a procedure may require the ordered application of several skills, and is a broader term. A procedure may also conditionally branch or require repeated applications of a skill, depending on circumstances. Diver training is structured around the learning and practice of standard procedures until the diver is assessed as competent to apply them reliably in reasonably foreseeable circumstances, and the certification issued limits the diver to environments and equipment that are compatible with their training and assessed skill levels. The teaching and assessment of diving skills and procedures is often restricted to registered instructors, who have been assessed as competent to teach and assess those skills by the certification or registration agency, who take the responsibility of declaring the diver competent against their assessment criteria. The teaching and assessment of other task oriented skills does not generally require a diving instructor. There is considerable difference in the diving procedures of professional divers, where a diving team with formally appointed members in specific roles and with recognised competence is required by law, and recreational diving, where in most jurisdictions the diver is not constrained by specific laws, and in many cases is not required by law to provide any evidence of competence.

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Wikipedia

Saturation diving

Saturation diving is an ambient pressure diving technique which allows a diver to remain at working depth for extended periods during which the body tissues become saturated with metabolically inert gas from the breathing gas mixture. Once saturated, the time required for decompression to surface pressure will not increase with longer exposure. The diver undergoes a single decompression to surface pressure at the end of the exposure of several days to weeks duration. The ratio of productive working time at depth to unproductive decompression time is thereby increased, and the health risk to the diver incurred by decompression is minimised. Unlike other ambient pressure diving, the saturation diver is only exposed to external ambient pressure while at diving depth. The extreme exposures common in saturation diving make the physiological effects of ambient pressure diving more pronounced, and they tend to have more significant effects on the divers' safety, health, and general well-being. Several short and long term physiological effects of ambient pressure diving must be managed, including decompression stress, high pressure nervous syndrome (HPNS), compression arthralgia, dysbaric osteonecrosis, oxygen toxicity, inert gas narcosis, high work of breathing, and disruption of thermal balance. Most saturation diving procedures are common to all surface-supplied diving, but there are some which are specific to the use of a closed bell, the restrictions of excursion limits, and the use of saturation decompression. Surface saturation systems transport the divers to the worksite in a closed bell, use surface-supplied diving equipment, and are usually installed on an offshore platform or dynamically positioned diving support vessel. Divers operating from underwater habitats may use surface-supplied equipment from the habitat or scuba equipment, and access the water through a wet porch, but will usually have to surface in a closed bell, unless the habitat includes a decompression chamber. The life support systems provide breathing gas, climate control, and sanitation for the personnel under pressure, in the accommodation and in the bell and the water. There are also communications, fire suppression and other emergency services. Bell services are provided via the bell umbilical and distributed to divers through excursion umbilicals. Life support systems for emergency evacuation are independent of the accommodation system as they must travel with the evacuation module. Saturation diving is a specialized mode of diving; of the 3,300 commercial divers employed in the United States in 2015, 336 were saturation divers. Special training and certification is required, as the activity is inherently hazardous, and a set of standard operating procedures, emergency procedures, and a range of specialised equipment is used to control the risk, that require consistently correct performance by all the members of an extended diving team. The combination of relatively large skilled personnel requirements, complex engineering, and bulky, heavy equipment required to support a saturation diving project make it an expensive diving mode, but it allows direct human intervention at places that would not otherwise be practical, and where it is applied, it is generally more economically viable than other options, if such exist.

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Wikipedia

Diving team

A diving team is a group of people who work together to conduct a diving operation. A characteristic of professional diving is the specification for minimum personnel for the diving support team. This typically specifies the minimum number of support team members and their appointed responsibilities in the team based on the circumstances and mode of diving, and the minimum qualifications for specified members of the diving support team. The minimum team requirements may be specified by regulation or code of practice. Some specific appointments within a professional dive team have defined competences and registration may be required. There is considerable difference in the diving procedures of professional divers, where a diving team with formally appointed members in specific roles and with recognised competence is required by law, and recreational diving, where in most jurisdictions the diver is not constrained by specific laws, and in many cases is not required to provide any evidence of competence. In recreational diving there may be no team at all for a solo diver, a dive buddy is the default arrangement, a three diver team is fairly common for technical diving, and a major technical dive or expedition may have a fairly complex team including surface support personnel made up to suit the requirements of the dive plan. Recreational diving instructors often use an assistant to increase the number of learners they can safely manage in the water, and dive guides may use an assistant to help keep the group together and assist the customers in an emergency. The members of a diving team are part of a larger class of diving support personnel, which includes diving instructors, equipment maintenance technicians, operators of equipment and vessels used in support of a diving operation, and specialised medical staff.

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Wikipedia

Technical diving

Technical diving (also referred to as tec diving or tech diving) is scuba diving that exceeds the agency-specified limits of recreational diving for non-professional purposes. Technical diving may expose the diver to hazards beyond those normally associated with recreational diving, and to a greater risk of serious injury or death. Risk may be reduced by using suitable equipment and procedures, which require appropriate knowledge and skills. The required knowledge and skills are preferably developed through specialised training, adequate practice, and experience. The equipment involves breathing gases other than air or standard nitrox mixtures, and multiple gas sources. Most technical diving is done within the limits of training and previous experience, but by its nature, technical diving includes diving which pushes the boundaries of recognised safe practice, and new equipment and procedures are developed and honed by technical divers in the field. Where these divers are sufficiently knowledgeable, skilled, prepared and lucky, they survive and eventually their experience is integrated into the body of recognised practice. The popularisation of the term technical diving has been credited to Michael Menduno, who was editor of the (now defunct) diving magazine aquaCorps Journal, but the concept and term, technical diving, go back at least as far as 1977, and divers have been engaging in what is now commonly referred to as technical diving for decades.

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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.