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Remote Building Energy Modeling Jobs in Texas (NOW HIRING)

Senior Energy Engineer

Houston, TX ยท On-site +1

$140K - $150K/yr

Their expertise spans HVAC system design, electrical upgrades, building automation systems ... Remote employees must report to the company's Middleburg Heights headquarters at least once per ...

Practice Leader - Power & Energy Systems

Houston, TX ยท On-site +1

$200K - $275K/yr

Practice Leader - Power & Energy Systems KBR Consulting is a leading global provider of ... The role will be based in Houston, working in a hybrid model. Other remote locations will be ...

Energy Risk Engineering Consultant

Houston, TX ยท On-site +1

$113K - $170K/yr

... building trust, long-term value, and sustainable advantages for both our customers and our ... This role offers a remote work arrangement but requires the candidate to reside in Houston, TX to ...

Showing results 21-40

Remote Building Energy Modeling information

What is remote building energy modeling?

Remote building energy modeling is the process of analyzing and simulating a building's energy usage and performance using specialized software, all conducted from an off-site location. Professionals in this field use digital building plans, utility data, and sometimes remote sensing tools to create detailed models that predict energy consumption, identify efficiency opportunities, and support sustainability goals. This approach allows for collaboration across distances and can reduce costs and time compared to traditional, on-site modeling. It is commonly used in both new construction and retrofitting projects to optimize energy systems and comply with regulatory standards.

What are the key skills and qualifications needed to thrive as a remote building energy modeler?

To thrive as a Remote Building Energy Modeler, you need expertise in building science, energy analysis, and a background in engineering or architecture, often supported by certifications like LEED or BEMP. Proficiency in specialized software such as EnergyPlus, eQUEST, IES VE, or OpenStudio is typically required. Strong analytical thinking, attention to detail, and effective communication skills help you interpret results and collaborate with remote teams and clients. These skills are critical for producing accurate models, optimizing building performance, and ensuring compliance with energy codes and sustainability goals.

What are the typical daily responsibilities of a remote building energy modeler?

Professionals in remote building energy modeling typically spend their days analyzing architectural drawings, inputting data into energy modeling software, and running simulations to forecast building performance. They often collaborate with architects, engineers, and project managers via virtual meetings to ensure the accuracy of their models and provide energy efficiency recommendations. Additionally, they prepare detailed reports summarizing findings and may assist with compliance documentation for green building certifications. Adapting to remote workflows and clear digital communication are important aspects of this role.

What is the difference between Remote Building Energy Modeling vs Remote HVAC Design?

AspectRemote Building Energy ModelingRemote HVAC Design
CredentialsLEED AP, Certified Energy Manager (CEM)PE License, HVAC Certifications
Work EnvironmentSoftware analysis, data modeling, project collaborationSystem design, calculations, software drafting
Industry UsageBuilding performance, sustainability projectsHeating, ventilation, air conditioning systems
Search IntentEnergy modeling jobs, sustainability rolesHVAC design roles, system engineering

Remote Building Energy Modeling involves analyzing building performance and sustainability using specialized software, focusing on energy efficiency. Remote HVAC Design centers on designing heating, ventilation, and air conditioning systems, requiring technical system knowledge. While both roles require technical credentials and often work in the building industry, they focus on different aspects of building systems. Understanding these differences helps job seekers find the right role aligned with their skills and certifications.

What are the most commonly searched types of Building Energy Modeling jobs in Texas?

The most popular types of Building Energy Modeling jobs in Texas are:

What are popular job titles related to Remote Building Energy Modeling jobs in Texas?

For Remote Building Energy Modeling jobs in Texas, the most frequently searched job titles are:

What job categories do people searching Remote Building Energy Modeling jobs in Texas look for?

The top searched job categories for Remote Building Energy Modeling jobs in Texas are:

What cities in Texas are hiring for Remote Building Energy Modeling jobs?

Cities in Texas with the most Remote Building Energy Modeling job openings:

Power Systems, Smart Grid and Energy Storage Specialist - Remote

Axyde Analytics

Houston, TX โ€ข On-site, Remote

$150 - $285/hr

Full-time

Posted 14 days ago


Job description

Power Systems, Smart Grid and Energy Storage Specialist

Opportunity track: SEA / GLOBAL / MENA-EE
Engagement: Contingent individual consultant; engagement may be direct or through an eligible U.S. consulting firm
Location: Remote — United States, with possible international travel
Primary promotion location: Houston, Texas 77002
Anticipated consulting fee: $150–$285 per hour, or a negotiated fixed price by work package

The opportunity

Axyde is building a senior expert bench for anticipated U.S. government-funded project-scoping assignments involving electric generation, transmission, distribution, interconnection, smart grids, microgrids, utility modernization, and energy storage across the Indo-Pacific, Africa and the Middle East, Europe and Eurasia, Latin America, and other global markets.

Projects may include national or regional power infrastructure as well as systems serving mines, mineral-processing facilities, industrial plants, data centers, cities, remote communities, and other energy-intensive users. The selected specialist will help Axyde determine whether proposed projects have a credible technical basis, realistic regulatory and commercial assumptions, an implementable development pathway, and an appropriately designed next-stage feasibility study, technical-assistance assignment, or pilot.

Axyde welcomes specialists whose principal strength is generation, transmission planning, distribution, utility operations, grid modernization, microgrids, or storage. Applicants are not expected to be equally expert in every power-system discipline.

Potential responsibilities
  • Assess demand forecasts, load profiles, supply adequacy, reserve requirements, reliability, resilience, power quality, and energy-security needs.
  • Evaluate generation portfolios and technologies, including thermal, renewable, hybrid, distributed, captive, and behind-the-meter systems, as applicable.
  • Review transmission, distribution, substation, interconnection, cross-border, and evacuation-infrastructure concepts.
  • Assess the need for load-flow, short-circuit, protection, transient or dynamic-stability, production-cost, reliability, hosting-capacity, or other specialized studies.
  • Evaluate smart-grid, advanced-metering, distribution-automation, SCADA, demand-response, virtual-power-plant, microgrid, and utility-modernization proposals.
  • Evaluate battery, pumped-storage hydro, thermal, mechanical, and other storage applications, including sizing, duty cycle, degradation, safety, operating strategy, and revenue or avoided-cost assumptions.
  • Assess renewable integration, curtailment, flexibility, ancillary-service, black-start, islanding, and grid-forming requirements.
  • Evaluate power-supply options and electrical infrastructure for mines, processing facilities, data centers, industrial users, islands, remote sites, and constrained grids.
  • Identify utility, regulatory, tariff, market-design, interconnection, land, permitting, environmental, fuel-supply, cybersecurity, and implementation dependencies.
  • Develop or independently review preliminary capacity, energy, loss, CAPEX, OPEX, schedule, implementation, and commercial assumptions at a level appropriate to the available information.
  • Develop or review technical tasks, required qualifications, deliverables, schedules, and budgets for feasibility studies, technical assistance, pilots, grid studies, and utility-modernization programs.
  • Compare technical alternatives and identify material data gaps, decision criteria, modeling requirements, risk mitigations, and stage-gate recommendations.
  • Participate in sponsor interviews, technical-diligence calls, and occasional site visits involving utilities, regulators, system operators, project sponsors, host-country stakeholders, financiers, and prospective U.S. suppliers.
  • Contribute to concept consultations, initial assessments, project reports, presentations, and power-sector deep dives.
  • Clearly distinguish source data, modeling results, professional judgments, assumptions, limitations, and matters requiring validation by a Professional Engineer, system operator, utility, regulator, or other appropriate authority.
Required qualifications
  • Degree in electrical engineering, power-systems engineering, energy systems, or a closely related discipline.
  • At least 10 years of directly relevant utility, power-system planning, generation, transmission, distribution, storage, operations, engineering, or consulting experience.
  • Demonstrated experience evaluating, planning, designing, developing, or operating grid, generation, interconnection, microgrid, storage, or utility-modernization projects.
  • Experience translating technical and regulatory findings into practical development plans, scopes of work, schedules, budgets, decision criteria, and risk-mitigation measures.
  • Ability to integrate engineering, utility, regulatory, economic, commercial, environmental, and implementation considerations without overstating the accuracy of early-stage information.
  • Strong analytical writing skills and the ability to work under compressed schedules.
  • Contract-required status: The individual performing the work must be either a U.S. citizen or a lawful permanent resident of the United States (green-card holder). Other forms of U.S. work authorization do not satisfy the stated requirements of the anticipated contracts. A consultant engaged directly as an individual must maintain a principal place of business in the United States. A consultant proposed through a firm must be employed or engaged through an entity that independently satisfies the solicitation’s U.S.-firm requirements.
Preferred qualifications
  • Professional Engineer registration or another directly relevant professional credential.
  • Experience with utility-integrated resource planning, transmission or distribution planning, interconnection studies, grid-code compliance, storage economics, or energy-intensive industrial loads.
  • Experience with emerging-market power systems, island systems, weak grids, cross-border interconnections, or utilities undergoing modernization or restructuring.
  • Familiarity with power-system analysis and production-cost tools and the ability to review model inputs, outputs, and limitations.
  • Experience preparing or independently reviewing feasibility-study, technical-assistance, pilot, or specialized engineering-study scopes and budgets.
  • Familiarity with lender or investor technical due diligence and the engineering and commercial inputs required for project economic and financial analysis.
  • Experience evaluating U.S.-supplied equipment, software, services, or technologies for international power projects.
  • Familiarity with international project sponsors, host-country governments, U.S. government agencies, multilateral development banks, or development-finance institutions.
Engagement conditions

This is a contingent consulting opportunity, not an offer of full-time employment. No award, assignment, minimum number of hours, or minimum compensation is guaranteed. Engagement depends on contract award, assignment fit, eligibility, conflicts, availability, successful completion of Axyde’s due diligence, and agreement on scope and pricing. The stated fee range is an anticipated range; the final rate or fixed price will depend on experience, role, work-package requirements, and applicable cost-reasonableness requirements.

Some assignments may require rapid turnaround, irregular coordination across time zones, or international travel. Travel requirements, approvals, insurance, and reimbursable costs will be addressed in the applicable consulting agreement or work order.

Participation in a U.S. Trade and Development Agency project-scoping assignment may make the participating consultant or subcontracting entity ineligible to compete—whether as a prime contractor, subcontractor, or otherwise—for certain USTDA-funded follow-on activities resulting from that assignment, unless USTDA grants a waiver. Axyde will disclose the applicable restriction and obtain written acceptance before issuing a work order.

Selected specialists may be asked for written permission to include their name, qualifications, and resume in a proposal. Applying does not by itself authorize Axyde to represent that an applicant has committed to a proposal or assignment.

Work performed under an awarded contract will be subject to applicable confidentiality, data-rights, information-security, professional-responsibility, and conflict-of-interest requirements. Any background intellectual property, proprietary models, datasets, or licensed software should be identified before an assignment begins.

How to apply

Apply through Axyde’s online application form using the heading SEA/GLOBAL/MENA-EE – Power Systems, Smart Grid and Energy Storage Specialist. Please provide:

  • A resume or CV of no more than three pages.
  • Two or three concise, directly relevant project examples identifying your role, jurisdiction, system or facility type, capacity or voltage level where disclosable, project stage, principal questions, and the resulting work product or decision.
  • Your principal specialty or specialties: generation, transmission, distribution, utility planning, smart grid, microgrids, energy storage, industrial power systems, or another clearly identified area.
  • Your U.S. location, travel availability, availability during the anticipated performance period, and proposed hourly rate or fixed-price basis.
  • A self-attestation that you are either a U.S. citizen or a lawful permanent resident and, if you would contract directly as an individual, that your principal place of business is in the United States. Applicants proposing engagement through a firm should identify the firm and confirm that it meets the applicable solicitation definition of a U.S. firm.
  • Any relevant professional licenses, technical credentials, or power-system software experience.
  • Any known organizational conflicts, current client restrictions, or planned pursuits of potentially related USTDA-funded work.

Do not submit a passport, green card, Social Security number, or other identity document with the initial application. Do not include classified, export-controlled, critical-energy-infrastructure information, proprietary, source-selection-sensitive, or client-confidential information in project examples; anonymized descriptions are acceptable. Axyde will request only the documentation needed at the appropriate stage of selection and engagement.

Axyde considers qualified applicants without regard to any status protected by applicable law. The citizenship or permanent-residence limitation above applies solely to work covered by the stated U.S. government contract requirements.

Files:

  • [Markdown version](/Users/danwhalen/Documents/Codex/2026-08-16/bid/outputs/axyde-expert-opportunities/05-power-systems-grid-storage.md)
  • [Plain-text version](/Users/danwhalen/Documents/Codex/2026-08-16/bid/outputs/axyde-expert-opportunities/plain-text/05-power-systems-grid-storage.txt)