q2K BHP
Black History Portal
THE BHP WIRE —
HIDDEN TRUTHS
What's New!
THE JOURNEY THROUGH TIME

Explore Black History

Explore the people, places, events, achievements, struggles and stories that shaped our journey.

✊🏾

Civil Rights

Movements, leaders, victories and the continuing fight for equality.

⚙️

Black Inventors

Innovation, patents, science, technology and world-changing contributions.

🏆

Sports

Pioneers, champions, Negro Leagues, records, activism and excellence.

♟️

People

Meet the people whose lives, choices and achievements shaped the journey.

📍

Places

Black towns, communities, institutions and places where history happened.

📜

Events

Moments that changed communities, movements, institutions and the nation.

Enter a person, place, event, or topic.
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.

MORE →
BLACK FACTS
The Truths They Never Taught You...

Wilmington 1898 — An American Coup

Wilmington, North Carolina once had a thriving Black middle class and an elected interracial government. In 1898 white supremacists used violence to overthrow that government, kill Black residents and drive many others from the city.

MORE →
BHP gathered finds from its connected research sources. Showing the 4 strongest Black History matches.
← BACK TO RESULTS
Wikipedia

Progress (spacecraft)

Progress
Progress MS-11 spacecraft in space
ManufacturerEnergia
Country of originSoviet Union / Russia
OperatorRoscosmos
ApplicationsSpace station cargo resupply
Specifications
Spacecraft typeCargo
Launch mass7,440 kg (16,400 lb)
Payload capacity
  • Launch: 2,600 kg (5,700 lb)
  • Disposal: 2,140 kg (4,720 lb)
Volume7 m3 (250 cu ft) in cargo section
RegimeLow Earth orbit
Design life
Dimensions
Length7.4 m (24 ft)
Diameter2.7 m (8 ft 10 in)
Solar array span10.7 m (35 ft)
Production
Built186 (as of 22 March 2026)
Operational2 (MS-32, MS-33)
Retired181
Lost3 (M-12M, M-27M, MS‑04)
Configuration

All specifications are for Progress MS version

Progress (Russian: Прогресс) is a Russian expendable cargo spacecraft. Originally developed for the Soviet space program and derived from the crewed Soyuz spacecraft, Progress has been instrumental in maintaining long-duration space missions by providing consumables like food, water, and air, as well as maintenance equipment. Since its maiden flight in 1978, Progress has supported various space stations, including Salyut 6, Salyut 7, and Mir, and remains a key resupply vehicle for the International Space Station (ISS).

Each Progress mission delivers thousands of kilograms of supplies in its pressurized module. It also carries water, fuel, and gases to replenish the station's resources and sustain its onboard atmosphere. Beyond resupply duties, a docked Progress can maneuver or reboost the station, countering atmospheric drag and maintaining its operational altitude. When a Progress spacecraft nears the end of its design life, it is loaded with waste, undocked, and deorbited to safely make a destructive reentry in Earth's atmosphere.

As of November 2024, there have been 182 Progress flights, with only three failures, all occurring between 2011 and 2016. Typically, three to four Progress flights are launched to the ISS each year. Due to the variation in Progress vehicles flown to the ISS, NASA uses its own nomenclature where "ISS 1P" means the first Progress spacecraft to ISS.

Design

[edit]

The Progress spacecraft shares much of its design with the crewed Soyuz spacecraft but with several modifications to make it better suited to cargo transport. It consists of three distinct sections:[1]

  • Cargo section: Based on the Soyuz orbital module, this pressurized section carries supplies for the crew, including maintenance items, prepackaged and fresh food, scientific equipment, and clothing. Its docking drogue is similar to that of Soyuz, but with additional ducting that enables the automated transfer of fuel, water, and gases.
  • Tanker section: Replacing the Soyuz reentry module, this unpressurized compartment houses tanks used to transport unsymmetrical dimethylhydrazine (UDMH) fuel, dinitrogen tetroxide (N2O4) oxidizer, drinking water, and atmospheric gases. Ducts connect the tanks to transfer lines routed along the exterior of the pressurized module to connectors at the docking port, enabling automated transfer. The design is intended to prevent leaks of propellants from entering the station atmosphere. The water and gases supplement supplies generated by the station's life-support system.
  • Instrumentation/propulsion section: Largely derived from the Soyuz instrumentation/propulsion module, this unpressurized compartment is slightly elongated to accommodate avionics normally housed in the Soyuz descent module. It contains engines used for attitude control and automated docking, and is also used to reboost the station's orbit once docked.

Unlike Soyuz, the Progress spacecraft does not require a life support system, heat shields, parachutes, or crew escape systems and cannot be separated into multiple modules. The elimination of these systems significantly reduces the spacecraft's mass, allowing for increased cargo capacity. After completing its mission, the spacecraft is typically filled with waste, undocks, performs a controlled deorbit burn, and burns up during reentry into Earth's atmosphere

Versions

[edit]

Five major variants of the Progress spacecraft have been flown so far: Progress 7K-TG (1978–1990), Progress M (1989–2009), Progress M1 (2000–2004), Progress M-M (2008–2015) and Progress MS (since 2015).

In addition, three custom Progress M variants were launched to deliver ISS modules Pirs in 2001, Poisk in 2009 and Prichal in 2021.

Progress 7K-TG (1978–1990)

[edit]
Progress logistics resupply spacecraft. It consists of the dry cargo module (left); the tanker compartment (center); and a stretched service module (right).

There were 42 spacecraft built using the initial Progress design, the last one being launched in May 1990.

The bureau in charge of designing the freighter was TsKBEM (now RKK Energia). They began work on the design in mid-1973, assigning Progress the GRAU index 11F615A15. The design was complete by February 1974, and the first production model was ready for launch in November 1977. Progress 1 launched on 20 January 1978 aboard the same rocket used to launch the Soyuz. It still featured the same launch shroud as the Soyuz, though this was purely for aerodynamic purposes as the launch escape system had been deactivated.

This first version of Progress had a mass of 7,020 kg (15,480 lb) and carried 2,300 kg (5,100 lb) of cargo, or 30% of its launch mass. It had the same diameter as the Soyuz at 2.2 m (7 ft 3 in), but was 8 m (26 ft) in length – slightly longer. The autonomous flight time was 3 days, the same time as that of the Soyuz ferry. It could spend 30 days docked. Progress always docked to the aft port of the station it was resupplying (the aft being where the main rocket engines of the station and their tankage, for refueling by the Progress, are located).

  • Launch mass: 7,020–7,249 kg (15,476–15,981 lb)
  • Mass of cargo:
    • ~2,300 kg (5,100 lb) (before Progress-24)
    • ~2,500 kg (5,500 lb) (from Progress-24)
  • Length: 7.94 m (26.0 ft)
  • Diameter of cargo modules: 2.2 m (7 ft 3 in)
  • Maximum diameter: 2.72 m (8 ft 11 in)
  • Volume of cargo compartment: 6.6 m3 (230 cu ft)

Progress M (1989–2009)

[edit]
Diagram of exterior of the Progress M
Diagram of interior of the Progress M

The upgraded Progress M (GRAU: 11F615A55, manufacturer's designation: 7K-TGM) was first launched in August 1989. The first 43 flights all went to Mir; following Mir's re-entry, Progress was used as the resupply vehicle for the International Space Station. As of December 2020, there have been over 80 flights (over different configurations) to the ISS and more are scheduled.[2]

The Progress M is essentially the same spacecraft as the Progress, but it features improvements based on the Soyuz-T and Soyuz-TM designs. It can spend up to 30 days in autonomous flight and is able to carry 100 kg (220 lb) more. Also, unlike the old Progress crafts, it can return items to Earth. This is accomplished by using the VBK-Raduga capsule, which can carry up to 150 kg (330 lb) of cargo. It is 1.5 m (4 ft 11 in) long and 60 cm (24 in) in diameter and has a "dry mass" of 350 kg (770 lb). Progress M can also dock to the forward port of the station and still transfer fuel. It uses the same rendezvous system as the Soyuz, and it features solar panels for the first time.

  • Launch mass: 7,130 kg (15,720 lb)
  • Cargo mass: 2,600 kg (5,700 lb)
  • Dry cargo mass: 1,500 kg (3,300 lb)
  • Liquid cargo mass: 1,540 kg (3,400 lb)
  • Length: 7.23 m (23.7 ft)
  • Diameter of cargo modules: 2.2 m (7 ft 3 in)
  • Maximum diameter: 2.72 m (8 ft 11 in)
  • Dry cargo compartment volume: 7.6 m3 (270 cu ft)
  • Solar array span: 10.6 m (35 ft)

In addition to the traditional Progress-M spacecraft, three modified "space tug" versions were built to deliver modules to the ISS. These variants lacked a pressurized cargo section and had a heavily modified tanker section. Progress DC-1 delivered Pirs in 2001, Progress M-MIM2 delivered Poisk in 2009 and Progress M-UM delivered Prichal in 2021.

Progress M-M (2008–2015)

[edit]
Interior of a Progress cargo section

A new modification of the Progress spacecraft, with new TsVM-101 digital flight computer and MBITS digital telemetry system,[3] was first launched on 26 November 2008, at 12:38 UTC from the Kazakhstan's Baikonur Cosmodrome spaceport aboard a Russian Soyuz rocket. The first spacecraft of this series was Progress M-01M.

The spacecraft belongs to the so-called 400 series (GRAU: 11F615A60), and all modifications applied to it were subsequently used in the production of new Soyuz TMA-01M[4] crewed spacecraft.

Progress M-27M was launched on 28 April 2015, but communication with the vessel was lost soon after, and it was destroyed as it re-entered the atmosphere on 8 May 2015.[5] The last launch was Progress M-29M.

Progress M1 (2000–2004)

[edit]

Progress M1 is another variant, capable of carrying more propellant (but less total cargo) to the ISS. There have been 11 of these flights.

  • Mass: 7,150 kg (15,760 lb)
  • Capacity cargo: 2,230 kg (4,920 lb)
  • Capacity dry cargo: 1,800 kg (4,000 lb)
  • Capacity propellant: 1,950 kg (4,300 lb)

Progress M2

[edit]

Progress M2 was a planned variant, which was a proposed design for the proposed Mir-2 space station, but was dropped due to financial issues. The M2 variant would have a larger service module for larger cargo or space station modules and would have been launched on a Zenit rocket as the spacecraft is bigger.

Progress MS (2015–present)

[edit]

Progress MS (Modernized Systems) is an improved variant, largely focused on replacing pieces of outdated analogue equipment, many of which were no longer in production, with new digital systems. Key updates include a new flight control system, the new Kurs-NA rendezvous system, a new communications and telemetry system, additional micro-meteoroid protection, an improved docking mechanism, a digital camera system, and a CubeSat deployment platform. The first Progress MS flight launched on 21 December 2015.[6]

Current status

[edit]

Progress spacecraft are used to resupply the International Space Station (ISS) as of 2021. Between 1 February 2003 and 26 July 2005, they were the only spacecraft available to transport large quantities of supplies to the station, as the Space Shuttle fleet was grounded after the breakup of Columbia at the end of STS-107. For ISS missions, the Progress M1 variant is used, which moves the water tanks from the propellant and refueling module to the pressurized section, and as a result is able to carry more propellant. Progress M-UM, the final flight of a Progress-M spacecraft, was launched 24 November 2021 on a Soyuz 2.1b. As of 7/1/2021, there have been 170 Progress flights to the ISS.

On 9 July 2018, Progress MS-09 broke a previous record by reaching the ISS in 3 hours and 48 minutes, carrying about 2,450 kg (5,400 lb) of cargo and supplies. It delivered food, fuel and supplies, including 705 kg of propellant, 50 kg (110 lb) of oxygen and air, 420 kg (930 lb) of water.

The European Space Agency (ESA) operated its own type of robotic supply freighter, the Automated Transfer Vehicle (ATV). The first of these, named Jules Verne, was launched at 04:03 UTC on 9 March 2008. ATVs can carry up to 8.85 tonnes of cargo into space, roughly three times as much as the Progress, and were launched annually by Ariane 5 rockets from 2011 to 2014 as part of ESA contribution to ISS upkeep. The design is adopted as the Service Module of the Orion spacecraft.

NASA's planned Orion spacecraft was initially designed to have an uncrewed variant of the Crew module similar to Progress; however, this capability was removed in 2009.[7] As of 2023, SpaceX's Dragon spacecraft and Northrop Grumman's Cygnus spacecraft handle American logistics to the International Space Station.

Proposed replacement

[edit]

Energia completed the design of a new cargo spacecraft, codenamed TGK PG, intended to take advantage of the increased payload capacity of the Soyuz-2.1b rocket. The design was a clean-sheet development and not based on either the Soyuz or Progress spacecraft. It was designed to transport approximately 2,400 kilograms (5,300 lb) of cargo in 18 square metres (190 sq ft), about 600 kilograms (1,300 lb) and 11 square metres (120 sq ft) more than Progress. In contrast to the Progress design, which uses separate refuelling and propulsion modules, the spacecraft would have used a shared propellant tank system, reducing weight and allowing a greater proportion of propellant to be transferred.[8] The project did not progress beyond the preliminary design phase due to a lack of funding from Roscosmos.[9]

See also

[edit]

References

[edit]
  1. ^ "Progress cargo ship". www.russianspaceweb.com. Retrieved 23 November 2024.
  2. ^ "NASA Launch Schedule and NASA". Public Domain This article incorporates text from this source, which is in the public domain.
  3. ^ Krebs, Gunter. "Progress M-01M – 25M (11F615A60, 7KTGM)". Gunter's Space Page. Retrieved 29 March 2013.
  4. ^ Krebs, Gunter. "Soyuz-TMA 01M – 16M (7K-STMA, 11F747)". Gunter's Space Page. Retrieved 29 March 2013.
  5. ^ "РОСКОСМОС: ТГК "ПРОГРЕСС М-27М" ПРЕКРАТИЛ СУЩЕСТВОВАНИЕ". Federal Space. 8 May 2015. Archived from the original on 8 May 2015. Retrieved 15 December 2015.
  6. ^ Zak, Anatoly (16 November 2018). "Progress-MS". RussianSpaceWeb.com. Retrieved 4 June 2019.
  7. ^ Chris Bergin (4 July 2009). "Constellation battle numerous Top Risks – Orion loses unmanned capability". NASASpaceFlight.com. Retrieved 29 March 2013.
  8. ^ Zak, Anatoly (22 August 2016). "A First Peek at Russia's New Space Cargo Ship". Popular Mechanics. Retrieved 31 March 2026.
  9. ^ Zak, Anatoly (7 October 2019). "New-generation cargo ship design is ready". RussianSpaceWeb.com. Retrieved 31 March 2026.
[edit]

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

Wikipedia

Qadirpur gas field

Qadirpur gas field is one of the major gas reserves of Pakistan. The field is located at a distance of 8 kilometres (5.0 mi) from Ghotki in Sindh Province. Discovered in March 1990, it is a joint venture between Oil & Gas Development Company, KUFPEC Pakistan B.V., PKP Exploration Ltd (Premier Oil), PKP2 Exploration Ltd (KUFPEC) and Petroleum Pakistan Limited, each holding 75%, 8.5%, 4.75%, 4.75% and 7% respectively. The Qadirpur gas field is currently one of OGDCL largest operated gas producing fields, accounting for 34%, 32% and 29% of OGDCL net gas production for 2012, 2013 and 2014, respectively. The field is located 8 km from Ghotki, 70 km northeast of Sukkur and 100 km east of Jacobabad in Sindh province.its it is located from main (90 km, sadiqabad = karachi, 540 km) highway road stop ahmed ki, 4 km away inside. Gas production on this field commenced in September 1995 by Prime Minister Benazir Bhutto after the installation of gas gathering facilities and processing plants. Of the 70 wells that have been drilled at this field, 57 are currently producing wells. Six have been abandoned, five are shut-in and two are water disposal wells. For FY 2015–16, average net daily production at this field was 250.56 million cubic feet (7.10 million cubic metres) per day at standard conditions of purified gas with 67 million ft3 (1.9 million m3) per day of permeate gas. The field's main customers are Sui Northern Gas Pipelines Limited, Engro Powergen Qadirpur Limited near Ghotki and Liberty Power Limited Daharki (320 mW power supply generating). A gas processing facility of 600 million ft3 (17 million m3) per day at standard conditions was installed at Qadirpur during 2006–7. In order to address declining reservoir pressures, gas compression facilities were being installed at the field to maintain sales gas supply at contractual delivery pressures. The natural gas is purified by a membrane separation process that removes water vapor and carbon dioxide. The processing equipment was supplied by Honeywell’s UOP Separex™ Membrane Systems division. The process consists of ten trains of membrane skids, each containing many spiral-wound membrane elements. During the second quarter of 2009–10, average daily sales from Qadirpur was 430 million ft3 (12 million m3) per day at standard conditions purified gas and 25 million ft3 (710 thousand m3) per day dehydrated gas, which was sold to SNGPL, 45 million ft3 (1.3 million m3) per day raw gas sold to Liberty Power and 970 barrels (154 m3) of condensate. The field was developed in three phases, increasing its capacity from 235 to 500 million ft3 (6.7 to 14.2 million m3) per day at standard conditions. A project was completed in December 2007, to enhance sales 500 to 600 million ft3 (14 to 17 million m3) per day. Development drilling at Qadirpur is continuing to maintain the gas supply to Southern Natural Gas PL. In 2009, gas flow was declined from 600 to 380 million ft3 (17 to 11 million m3) per day at standard conditions. Thus a front end compression project was initiated to maintain the pressure of extracted gas and completed in 2011. As a part of project, 14 Waukesha engine driven Reciprocating compressors were installed by Valerus company. Later, 3 solar turbine driven centrifugal compressors were also installed which were previously working at Pirkoh gas field (Balochistan). These compressors increase the pressure of gas from 320 to 750 pounds per square inch (2,200 to 5,200 kPa). Later in 2010, Qadirpur gas field started supplying 67 million ft3 (1.9 million m3) per day at standard conditions of permeate gas to Engro powergen (previously Engro power limited), which is generating 270 MW supply With the passage of time, field is depleting and gas flow has been further declined to 320 million ft3 (9.1 million m3) per day in 2017, In 2021-22 solar turbines provided retrofit of existing solarturbines with new compressor for changing pressure conditions, the commissioning is still under progress. Ownership group led by: Oil & Gas Development Company; Location: Qadirpur, Ghotki, Sindh, Pakistan Completion Date: August 1995

MORE →
Wikipedia

Progress (spacecraft)

Progress (Russian: Прогресс) is a Russian expendable cargo spacecraft. Originally developed for the Soviet space program and derived from the crewed Soyuz spacecraft, Progress has been instrumental in maintaining long-duration space missions by providing consumables like food, water, and air, as well as maintenance equipment. Since its maiden flight in 1978, Progress has supported various space stations, including Salyut 6, Salyut 7, and Mir, and remains a key resupply vehicle for the International Space Station (ISS). Each Progress mission delivers thousands of kilograms of supplies in its pressurized module. It also carries water, fuel, and gases to replenish the station's resources and sustain its onboard atmosphere. Beyond resupply duties, a docked Progress can maneuver or reboost the station, countering atmospheric drag and maintaining its operational altitude. When a Progress spacecraft nears the end of its design life, it is loaded with waste, undocked, and deorbited to safely make a destructive reentry in Earth's atmosphere. As of November 2024, there have been 182 Progress flights, with only three failures, all occurring between 2011 and 2016. Typically, three to four Progress flights are launched to the ISS each year. Due to the variation in Progress vehicles flown to the ISS, NASA uses its own nomenclature where "ISS 1P" means the first Progress spacecraft to ISS.

MORE →
Wikipedia

Muscarinic acetylcholine receptor M3

The muscarinic acetylcholine receptor, also known as cholinergic/acetylcholine receptor M3, or the muscarinic 3, is a muscarinic acetylcholine receptor encoded by the human gene CHRM3. The M3 muscarinic receptors are located at many places in the body, e.g., smooth muscles, the bladder, the endocrine glands, the exocrine glands, lungs, pancreas and the brain. In the CNS, they induce emesis. Muscarinic M3 receptors are expressed in regions of the brain that regulate insulin homeostasis, such as the hypothalamus and dorsal vagal complex of the brainstem. These receptors are highly expressed on pancreatic beta cells and are critical regulators of glucose homoestasis by modulating insulin secretion. In general, they cause smooth muscle contraction and increased glandular secretions. They are unresponsive to PTX and CTX.

MORE →
Wikipedia

Progress-M

Progress M (Russian: Прогресс М, GRAU: 11F615A55), also known as Progress 7K-TGM, is a Russian (formerly Soviet) uncrewed cargo spacecraft used to resupply space stations. It is a variant of the Progress series, developed in the late 1980s as a modernized version of the Progress 7K-TG spacecraft. Progress-M incorporated improved systems derived from the Soyuz T and Soyuz TM crewed spacecraft. The Progress M-M (GRAU: 11F615A60) introduced further upgrades, including digital flight control systems replacing earlier analog systems. The first 43 Progress M spacecraft supported Mir, with later missions servicing the International Space Station (ISS). A total of 87 spacecraft were launched, including 67 of the Progress M variant and 30 of the upgraded Progress M-M. Two spacecraft were lost: Progress M-12M in a launch failure in August 2011, and Progress M-27M, which lost control after reaching orbit in April 2015 and reentered the atmosphere. The Progress M1 was a derivative of the Progress M optimized to carry more propellant at the expense of dry cargo and water. This reflected operational needs of the ISS, where the Space Shuttle provided large-capacity delivery of dry cargo and water, but could not transport the hypergolic propellants required for the station's propulsion system. The Progress M1 entered service in 2000 and was retired in 2004. A further upgraded M1-M variant incorporating improvements from the Progress M-M was planned but canceled before entering service. The final flight of the Progress M variant was Progress M-67 in July 2009, while the final Progress M-M mission was Progress M-29M in October 2015. It was succeeded by the upgraded Progress MS, which first flew in December 2015. Several Progress M spacecraft were modified as "space tugs" to deliver station modules. Progress M-14 and M-38 delivered VDU attitude control systems to Mir in 1992 and 1998, respectively. Later missions supported the ISS: Progress DC-1 delivered Pirs in 2001, M-MIM2 delivered Poisk in 2009, and M-UM delivered Prichal in 2021.

MORE →
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.

MORE →
TRIVIA QUESTION OF THE DAY

Who became the first Black woman to travel into space?

Mae Jemison, aboard Space Shuttle Endeavour in 1992.