Premier Multi-User Spaceport is Home to Diverse Activities

Premier Multi-User Spaceport is Home to Diverse Activities

Becoming the World’s Premier Multi-User Spaceport – Part 3

By Bob Granath

On Aug. 14, 2017, a SpaceX Dragon spacecraft was launched atop a Falcon 9 rocket from Launch Complex 39A at NASA’s Kennedy Space Center. It was a commercial resupply mission delivering supplies to the International Space Station. Four days later, the agency’s Tracking and Data Relay Satellite-M lifted off on a United Launch Alliance (ULA) Atlas V from Space Launch Complex 41 at Cape Canaveral Space Force Station.

Two Launches in One Week: On Aug. 14, 2017, a Falcon 9 launch vehicle lifts off Launch Complex 39A at NASA's Kennedy Space Center in the photo on the left. It was carrying a Dragon resupply spacecraft to the International Space Station. In the image on the right, a United Launch Alliance Atlas V rocket lifts off Space Launch Complex 41 at Cape Canaveral Space Force Station on Aug.18, 2017 placing in orbit a NASA Tracking and Data Relay Satellite.
Two Launches in One Week: On Aug. 14, 2017, a Falcon 9 launch vehicle lifts off Launch Complex 39A at NASA’s Kennedy Space Center in the photo on the left. It was carrying a Dragon resupply spacecraft to the International Space Station. In the image on the right, a United Launch Alliance Atlas V rocket lifts off Space Launch Complex 41 at Cape Canaveral Space Force Station on Aug.18, 2017 placing in orbit a NASA Tracking and Data Relay Satellite. Photo credits: NASA/Tony Gray and Sandra Joseph

This kind of diverse activity is typical at a multi-user spaceport.

For nearly half a century, Kennedy operated as a NASA-only space center. Originally constructed to support the Apollo Program, facilities were built to prepare rockets and spacecraft for the lunar landing effort. In the mid-1970s, many buildings were converted for the Space Shuttle Program and new ones added.

As the shuttle program came to an end and Kennedy began preparing to support NASA’s Space Launch System (SLS) rocket and Orion spacecraft, it became apparent NASA would no longer need some of the existing facilities. But the anticipation of an emerging commercial space industry resulted in center leadership developing an innovative concept of a multi-user spaceport to change focus from a big government, NASA-only space center to the agency partnering with other organizations.

In 2015, Kennedy met then Center Director Bob Cabana’s objective of becoming a premier, multi-user spaceport. However, in an Oct. 29, 2021 news conference he pointed to Janet Petro, his deputy center director at the time, for being instrumental in lining up 93 agreements with various space companies who now work at the Florida spaceport.

“I’ve got to give a great deal of credit to Janet,” said Cabana, now NASA’s associate administrator. “She was instrumental in helping us get a lot the agreements in place that were needed to commercialize Kennedy and make it more user friendly.”

Petro succeeded Cabana as center director at Kennedy in June 2021.

Click here to read more about Kennedy Space Center becoming a premier multi-user spaceport.

Working Side-by-Side

According to Tom Engler, director of Center Planning and Development at Kennedy, the impact of having multiple partners working together at Kennedy is the result of creating an environment where both commercial and governmental space processing and launch activities are able to operate side by side.

During August 2017, NASA F-18 jets flew from the Shuttle Landing Facility at NASA's Kennedy Space Center to measure the effects of sonic booms. On Aug. 31, 2017, SpaceX was planning a 3.5-second static firing of the engines on a Falcon 9 rocket at Launch Complex 39A. Official with Kennedy's Customer Service and Integration Branch of Spaceport Integration and Services put those conducting the flights in touch with SpaceX to work out any conflicts.
During August 2017, NASA F-18 jets flew from the Shuttle Landing Facility at NASA’s Kennedy Space Center to measure the effects of sonic booms. On Aug. 31, 2017, SpaceX was planning a 3.5-second static firing of the engines on a Falcon 9 rocket at Launch Complex 39A. Official with Kennedy’s Customer Service and Integration Branch of Spaceport Integration and Services put those conducting the flights in touch with SpaceX to work out any conflicts. Photo credit: NASA/Bill White

“This only serves to enhance the overall success of all entities here at Kennedy because of the ability to cooperate and help each other out,” he said. “With four separate and distinct human spaceflight development activities occurring at the same time, it has created an environment that is unparalleled anywhere in the world.”

The spaceflight development activities include not only the Orion spacecraft and SLS rocket, but also Commercial Crew Program spacecraft — Boeing’s CST-100 Starliner and the SpaceX Crew Dragon as well as the development of Blue Origin’s New Glenn rocket.

The Center Planning and Development team took a lead role in implementing the concept of a multi-user spaceport along with Spaceport Integration and Services, Chief Counsel, Chief Financial Officer and Safety and Mission Assurance. The result completely changed the way business is done at the center. Making the best use of taxpayer-funded resources has been a key objective, from reorganizing the spaceport’s management structure to providing optimum utilization of available assets.

“It’s real — Kennedy is a multi-user spaceport,” said Greg Gaddis, the center’s master integrator. “Our job is to make sure everyone is successful.”

The Customer Service and Integration Branch of Spaceport Integration and Services helps ensure success through situational awareness into the diverse organizations’ daily activities.

Coordinating Services

According to Gaddis, a key element of coordination is a way to maintain situational awareness.

In the Hangar AE Launch Vehicle Data Center, NASA and contractor managers and engineers monitor countdown progress for launch of eight Cyclone Global Navigation Satellite System, or CYGNSS, spacecraft aboard a Pegasus XL rocket on Dec.‎ ‎15‎, ‎2016. During launches, the facility provides real-time data, video and voice information for vehicle checkout and operations, and it can be reprogrammed to support any rocket.
In the Hangar AE Launch Vehicle Data Center, NASA and contractor managers and engineers monitor countdown progress for launch of eight Cyclone Global Navigation Satellite System, or CYGNSS, spacecraft aboard a Pegasus XL rocket on Dec.‎ ‎15‎, ‎2016. During launches, the facility provides real-time data, video and voice information for vehicle checkout and operations, and it can be reprogrammed to support any rocket. Photo credit: NASA/Kim Shiflett

“We created SIMS – the Spaceport Integrated Master Schedule, a process tool,” he said. “It helps us coordinate activities on a day-to-day basis.”

According to the SIMS document, it establishes processes and supporting products in planning operations and activities for all spaceport partners, ensuring efficient use of resources and providing insight into one activity getting in the way of another.

“Spaceport Integration has people who watch for potential conflicts,” Gaddis said.

An example took place in the summer of 2017.

A team from NASA’s Armstrong Flight Research Center in California and Langley Research Center in Virginia were flying agency F-18 jets from the Shuttle Landing Facility (SLF). In 2015, the center signed a 30-year property agreement with Space Florida for the operations and management of the SLF. In August, NASA researchers were measuring the effects of low-altitude turbulence on sonic booms.

Technicians place Boeing’s CST-100 Starliner crew module on top of the service module in the Commercial Crew and Cargo Processing Facility at NASA’s Kennedy Space Center on Jan. 14, 2021. The work was performed inside what was Bay 3 of the Space Shuttle era's Orbiter Processing Facility.
Technicians place Boeing’s CST-100 Starliner crew module on top of the service module in the Commercial Crew and Cargo Processing Facility at NASA’s Kennedy Space Center on Jan. 14, 2021. The work was performed inside what was Bay 3 of the Space Shuttle era’s Orbiter Processing Facility. Photo credit: Boeing/John Proferes

On Aug. 31, 2017, SpaceX was planning a 3.5-second static firing of the engines on a Falcon 9 rocket at Launch Complex 39A. NASA signed a property agreement with SpaceX to operate the former Apollo and Space Shuttle Program site where the company now is launching its Falcon 9 rockets.

The payload launched for the Department of Defense (DOD) on Sept. 7, 2017, was the X-37 Orbital Test Vehicle 5, processed by Boeing in what was bay 1 of the shuttle era’s Orbiter Processing Facility.

“SpaceX was concerned about possible sonic booms during critical moments of the countdown for the static test,” Gaddis said. “We got the Armstrong and Langley people in touch with SpaceX to work out any conflicts. That’s our job, preventing one customer’s operations from impacting operations or safety of another.”

Diverse Operations

Multiple partners means multiple programs with diverse operations.

When NASA’s Launch Services Program (LSP) launched TDRS-M Aug. 18, 2017, Hangar AE at Cape Canaveral served as their communication center. During launches, the facility provides real-time data, video and voice information for vehicle checkout and operations and it can be reprogrammed to support any rocket.

At the same time LSP teams in Hangar AE were launching TDRS-M, they were demonstrating Kennedy’s role as a multi-user spaceport by simultaneously supporting Orbital ATK (now Northrop Grumman), the launch provider for a Pentagon spacecraft called Operationally Responsive Space number 5, or ORS-5. The program focuses on providing quick-response tactical space-based capabilities to DOD using smaller satellites. A Minotaur rocket launched ORS-5 on from Space Launch Complex-46 at the Cape a week after TDRS-M.

The sprawling Blue Origin complex is located in Exploration Park just outside the gates of NASA's Kennedy Space Center. The company will build its New Glenn heavy-lift launch vehicle capable of carrying people and payloads routinely to Earth orbit and beyond.
The sprawling Blue Origin complex is located in Exploration Park just outside the gates of NASA’s Kennedy Space Center. The company will build its New Glenn heavy-lift launch vehicle capable of carrying people and payloads routinely to Earth orbit and beyond. Photo credit: Blue Origin

“Orbital ATK used Hangar AE as their launch control room for ORS-5 providing a prime example of Kennedy’s role as a multi-user spaceport supporting multiple spacecraft and launch providers concurrently,” said Reed Divertie, chief of the Ground Systems Integration Branch of LSP.

Other locations, not needed by NASA for the immediate future, have been turned over to industry partners. OPF Bay 3 now is the Commercial Crew and Cargo Processing Facility where Boeing is preparing its CST-100 Starliner spacecraft, which is one of two commercial partners that will carry astronauts to the International Space Station from U.S. soil once again.

“We’re not done yet,” Gaddis said. “We will continue to grow. For example, Blue Origin will be coming on line soon.”

The impact of the Blue Origin partnership with Spaceport Florida is already evident with the development of the company’s manufacturing facilities in Exploration Park just outside Kennedy’s industrial area and the re-development of Space Launch Complex 36 at Cape Canaveral.

Terran Orbital recently announced that it will build a 660,000 square foot facility near the Launch and Landing Facility at NASA’s Kennedy Space Center. Plans are to build nanosatellites and CubeSats in the world’s largest, most advanced space vehicle manufacturing complex.
Terran Orbital recently announced that it will be constructing a 660,000 square foot facility near the Launch and Landing Facility at NASA’s Kennedy Space Center. Plans are to build nanosatellites and CubeSats in the world’s largest, most advanced space vehicle manufacturing complex. Photo credit: Terran Orbital

Additionally, Terran Orbital recently announced plans to build a 660,000 square foot Commercial Spacecraft and Constellation Facility at Kennedy near the center’s Launch and Landing Facility. The company will produce thousands of different types of space vehicles and electro-mechanical devices.

“The newest entrant to Kennedy’s multi-user spaceport is already beginning to manufacture rocket components,” Engler said. “According to the approved Kennedy Master Plan and the Notice of Availability that is currently open, we have significant acreage available for partners, both commercial and governmental.”

These land uses include, among others, spacecraft launch and landing, spacecraft processing, aerospace research and technology and clean energy.

“We are excited to have the partners that currently reside here at Kennedy and are looking to include more partners into the family,” Engler said.

“More growth will require more integration,” Gaddis said. “It’s all about living and working at a multi-user spaceport.”

No copyright claimed for this feature that appeared in its original form on NASA.gov on April 25, 2018 at:

https://www.nasa.gov/feature/multi-user-spaceport-is-home-to-diverse-activities

EDITOR’S NOTE: This is the final feature in a series of articles on NASA Kennedy Space Center’s transition to a premier, multi-user spaceport. If you missed any of the earlier stories in this series, click on the links below.

Part 1: Visionaries Sparked Economic Resurgence on Space Coast

Part 2: Vision Ignited Commercial Revolution at Florida’s Spaceport

Leave a Reply

Your email address will not be published. Required fields are marked *