The Center for Houston’s Future will celebrate its first Top 25 Business/Civic Leadership Forum Alumni group all year, kicking off with an event this week. Photo via Getty Images

As part of its 25th anniversary celebrations, the Center for Houston’s Future has named its first-ever group of Top 25 Business/Civic Leadership Forum Alumni, including energy transition CEOs and legendary craft brewery founders.

The group was selected from among 1,400 alumni of the Center for Houston's Future's Leadership Forum, which hosts two cohorts per year, bringing together leaders from across industries to focus on issues critical to the long-term success of Greater Houston.

The individuals will be honored throughout the year, starting with an event this Thursday, March 20, at the Junior League of Houston called Leaders for Houston’s Future: Women Who Stand Apart, and culminating in the signature Dinner & Conversation event this fall.

Earlier this year, the organization selected an honor roll of 75 Leaders Who Stand Apart before naming the list of 25. See the honor roll here.

“Both our Top 25 and the honor roll of 75 Leaders are a testament to the amazing group of leaders working for the good of our region every day,” David Gow, the center’s CEO and president, said in a statement. “They are also a reflection of the Center’s historical and ongoing commitment to develop, inspire and connect leaders across all facets of our region.

Gow is the founder and chairman of Gow Media, InnovationMap's parent company.

The Top 25 Business/Civic Leadership Forum Alumni list includes:

  • Laura Bellows, president and board chairman, W.S. Bellows Construction
  • Richard Campo, chairman and CEO, Camden Property Trust
  • Anne Chao, co-founder, Houston Asian American Archive
  • Donna Cole, founder, president and CEO, Cole Chemical & Distributing
  • Suzan Deison, CEO, president and founder, Greater Houston Women's Chamber of Commerce
  • Amanda Edwards, principal, The Community Based Solutions Firm
  • Bob Eury, retired president and CEO, Central Houston, Inc.
  • Sidney Evans II, senior advisor, business affairs, Reliant Energy
  • Roland Garcia, shareholder, Greenberg Traurig LLP
  • Cullen Geiselman, board chair, Houston Parks Board
  • Bernard Harris Jr., former NASA astronaut
  • Winell Herron, senior vice president of public affairs, diversity and environmental affairs, H-E-B
  • Paul Hobby, founder and managing director, Genesis Park
  • Laura Jaramillo, executive director, LISC
  • Melanie Johnson, president and CEO, Collaborative for Children
  • Laura Murillo, president and CEO, Houston Hispanic Chamber of Commerce
  • Wilhelmina "Beth" Robertson, president, Cockspur, Inc. and Westview Development Inc.
  • Judson Robinson III, president and CEO, Houston Area Urban League
  • Kimberly Sterling, principal, Sterling for Good
  • Y. Ping Sun, of counsel, Yetter Coleman LLP
  • Bobby Tudor, founder and CEO, Artemis Energy Partners
  • Brock Wagner, founder, Saint Arnold Brewing Company
  • Barron Wallace, public finance partner and practice group co-Head, Bracewell LLP
  • Marc Watts, president, The Friedkin Group
  • Beth Wolff, founder and chairman, Beth Wolff Realtors

Eury, Sun and Wolff serve on the center’s board of directors.

“I’m grateful to be included on the Top 25,” Wolff said in the release. “I cannot stress enough what an extraordinary opportunity it is to participate in the Leadership Forum and focus on Houston’s future. Fellow cohort members become friends and colleagues working together in service of the community.”

This week's panel will feature Cole, Geiselman and Herron. They will be joined by Lharissa Jacobs, executive director of Fit Houston, who made the top 75 list. Frances Castañeda Dyess, president of the Houston East End Chamber of Commerce, will moderate.

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How Houston innovators played a role in the historic Artemis II splashdown

safe landing

Research from Rice University played a critical role in the safe return of U.S. astronauts aboard NASA’s Artemis II mission this month.

Rice mechanical engineer Tayfun E. Tezduyar and longtime collaborator Kenji Takizawa developed a key computational parachute fluid-structure interaction (FSI) analysis system that proved vital in NASA’s Orion capsule’s descent into the Pacific Ocean. The FSI system, originally developed in 2013 alongside NASA Johnson Space Center, was critical in Orion’s three-parachute design, which slowed the capsule as it returned to Earth, according to Rice.

The model helped ensure that the parachute design was large enough to slow the capsule for a safe landing while also being stable enough to prevent the capsule from oscillating as it descended.

“You cannot separate the aerodynamics from the structural dynamics,” Tezduyar said in a news release. “They influence each other continuously and even more so for large spacecraft parachutes, so the analysis must capture that interaction in a robustly coupled way.”

The end result was a final parachute system, refined through NASA drop tests and Rice’s computational FSI analysis, that eliminated fluctuations and produced a stable descent profile.

Apart from the dynamic challenges in design, modeling Orion’s parachutes also required solving complex equations that considered airflow and fabric deformation and accounted for features like ringsail canopy construction and aerodynamic interactions among multiple parachutes in a cluster.

“Essentially, my entire group was dedicated to that work, because I considered it a national priority,” Tezduyar added in the release. “Kenji and I were personally involved in every computer simulation. Some of the best graduate students and research associates I met in my career worked on the project, creating unique, first-of-its-kind parachute computer simulations, one after the other.”

Current Intuitive Machines engineer Mario Romero also worked on Orion during his time at NASA. From 2018 to 2021, Romero was a member of the Orion Crew Capsule Recovery Team, which focused on creating likely scenarios that crewmembers could encounter in Orion.

The team trained in NASA’s 6.2-million-gallon pool, using wave machines to replicate a range of sea conditions. They also simulated worst-case scenarios by cutting the lights, blasting high-powered fans and tipping a mock capsule to mimic distress situations. In some drills, mock crew members were treated as “injured,” requiring the team to practice safe, controlled egress procedures.

“It’s hard to find the appropriate descriptors that can fully encapsulate the feeling of getting to witness all the work we, and everyone else, did being put into action,” Romero tells InnovationMap. “I loved seeing the reactions of everyone, but especially of the Houston communities—that brought me a real sense of gratitude and joy.”

Intuitive Machines was also selected to support the Artemis II mission using its Space Data Network and ground station infrastructure. The company monitored radio signals sent from the Orion spacecraft and used Doppler measurements to help determine the spacecraft's precise position and speed.

Tim Crain, Chief Technology Officer at Intuitive Machines, wrote about the experience last week.

"I specialized in orbital mechanics and deep space navigation in graduate school,” Crain shared. “But seeing the theory behind tracking spacecraft come to life as they thread through planetary gravity fields on ultra-precise trajectories still seems like magic."

UH breakthrough moves superconductivity closer to real-world use

Energy Breakthrough

University of Houston researchers have set a new benchmark in the field of superconductivity.

Researchers from the UH physics department and the Texas Center for Superconductivity (TcSUH) have broken the transition temperature record for superconductivity at ambient pressure. The accomplishment could lead to more efficient ways to generate, transmit and store energy, which researchers believe could improve power grids, medical technologies and energy systems by enabling electricity to flow without resistance, according to a release from UH.

To break the record, UH researchers achieved a transition temperature 151 Kelvin, which is the highest ever recorded at ambient pressure since the discovery of superconductivity in 1911.

The transition temperature represents the point just before a material becomes superconducting, where electricity can flow through it without resistance. Scientists have been working for decades to push transition temperature closer to room temperature, which would make superconducting technologies more practical and affordable.

Currently, most superconductors must be cooled to extremely low temperatures, making them more expensive and difficult to operate.

UH physicists Ching-Wu Chu and Liangzi Deng published the research in the Proceedings of the National Academy of Sciences earlier this month. It was funded by Intellectual Ventures and the state of Texas via TcSUH and other foundations. Chu, founding director and chief scientist at TcSUH, previously made the breakthrough discovery that the material YBCO reaches superconductivity at minus 93 K in 1987. This helped begin a global competition to develop high-temperature superconductors.

“Transmitting electricity in the grid loses about 8% of the electricity,” Chu, who’s also a professor of physics at UH and the paper’s senior author, said in a news release. “If we conserve that energy, that’s billions of dollars of savings and it also saves us lots of effort and reduces environmental impacts.”

Chu and his team used a technique known as pressure quenching, which has been adapted from techniques used to create diamonds. With pressure quenching, researchers first apply intense pressure to the material to enhance its superconducting properties and raise its transition temperature.

Next, researchers are targeting ambient-pressure, room-temperature superconductivity of around 300 K. In a companion PNAS paper, Chu and Deng point to pressure quenching as a promising approach to help bridge the gap between current results and that goal.

“Room-temperature superconductivity has been seen as a ‘holy grail’ by scientists for over a century,” Rohit Prasankumar, director of superconductivity research at Intellectual Ventures, said in the release. “The UH team’s result shows that this goal is closer than ever before. However, the distance between the new record set in this study and room temperature is still about 140 C. Closing this gap will require concerted, intentional efforts by the broader scientific community, including materials scientists, chemists, and engineers, as well as physicists.”

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This article originally appeared on EnergyCapitalHTX.com.